fbpx
Wikipedia

Colorado River

The Colorado River (Spanish: Río Colorado) is one of the principal rivers (along with the Rio Grande) in the Southwestern United States and northern Mexico (not to be confused with the Colorado river in Texas). The 1,450-mile-long (2,330 km) river drains an expansive, arid watershed that encompasses parts of seven U.S. states and two Mexican states. The name Colorado derives from the Spanish language for "colored reddish" due to its heavy silt load. Starting in the central Rocky Mountains of Colorado, it flows generally southwest across the Colorado Plateau and through the Grand Canyon before reaching Lake Mead on the ArizonaNevada border, where it turns south toward the international border. After entering Mexico, the Colorado approaches the mostly dry Colorado River Delta at the tip of the Gulf of California between Baja California and Sonora.

Colorado River
The Colorado River at Horseshoe Bend, Arizona, a few miles below Glen Canyon Dam
Map of the Colorado River basin
Location
CountryUnited States, Mexico
States Colorado
Utah
Arizona
Nevada
California
Baja California
Sonora
CitiesGlenwood Springs, CO, Grand Junction, CO, Moab, UT, Page, AZ, Bullhead City, AZ, Lake Havasu City, AZ, Blythe, CA, Yuma, AZ, Las Vegas, NV, Laughlin, NV, San Luis Río Colorado, Son.
Physical characteristics
SourceLa Poudre Pass
 • locationRocky Mountains, Colorado, United States
 • coordinates40°28′20″N 105°49′34″W / 40.47222°N 105.82611°W / 40.47222; -105.82611[1]
 • elevation10,184 ft (3,104 m)
MouthGulf of California
 • location
Colorado River Delta, Baja CaliforniaSonora, Mexico
 • coordinates
31°54′00″N 114°57′03″W / 31.90000°N 114.95083°W / 31.90000; -114.95083Coordinates: 31°54′00″N 114°57′03″W / 31.90000°N 114.95083°W / 31.90000; -114.95083[1]
 • elevation
0 ft (0 m)
Length1,450 mi (2,330 km)[2]
Basin size246,000 sq mi (640,000 km2)[2]
Discharge 
 • locationmouth (average unimpaired flow), max and min at Topock, AZ, 300 mi (480 km) from the mouth[3]
 • average22,500 cu ft/s (640 m3/s)[3]
 • minimum422 cu ft/s (11.9 m3/s)[4]
 • maximum384,000 cu ft/s (10,900 m3/s)[5]
Basin features
Tributaries 
 • leftFraser River, Blue River, Eagle River, Roaring Fork River, Gunnison River, Dolores River, San Juan River, Little Colorado River, Bill Williams River, Gila River
 • rightGreen River, Dirty Devil River, Escalante River, Kanab River, Virgin River, Hardy River

Known for its dramatic canyons, whitewater rapids, and eleven U.S. National Parks, the Colorado River and its tributaries are a vital source of water for 40 million people.[6] An extensive system of dams, reservoirs, and aqueducts divert almost its entire flow for agricultural irrigation and urban water supply.[7][8][9] Its large flow and steep gradient are used to generate hydroelectricity, meeting peaking power demands in much of the Intermountain West. Intensive water consumption has dried up the lower 100 miles (160 km) of the river, which has rarely reached the sea since the 1960s.[7][10][11]

Native Americans have inhabited the Colorado River basin for at least 8,000 years. Starting around 1 AD, large agriculture-based societies were established, but a combination of drought and poor land use practices led to their collapse in the 1300s. Their descendants include tribes such as the Puebloans, while others including the Navajo settled in the Colorado Basin after the 1000s. In the 1500s, Spanish explorers began mapping and claiming the watershed, which became part of Mexico upon its independence in 1821. Even after most of the watershed became US territory in 1846, much of the river's course remained unknown. Several expeditions charted the Colorado in the mid-19th century—one of which, led by John Wesley Powell, was the first to run the rapids of the Grand Canyon. Large-scale settlement of the lower basin began in the mid- to late-1800s, with steamboats sailing from the Gulf of California to landings along the river that linked to wagon roads to the interior. Starting in the 1860s, gold and silver strikes drew prospectors to the upper Colorado River basin.

Large-scale river management began in the early 1900s, with major guidelines established in a series of international and US interstate treaties known as the "Law of the River". The US federal government constructed most of the major dams and aqueducts between 1910 and 1970; the largest, Hoover Dam, was completed in 1935. Numerous water projects have also involved state and local governments. With all of its water fully allocated, the Colorado is now considered among the most controlled and litigated rivers in the world.

The environmental movement in the American Southwest has opposed the damming and diversion of the Colorado River system due to negative effects on the ecology and natural beauty of the river and its tributaries. During the construction of Glen Canyon Dam (1956–66), environmental organizations[which?] vowed[clarification needed] to block any further development of the river, and a number of later dam and aqueduct proposals were defeated by citizen opposition. Since 2000, extended drought has conflicted with increasing demands for Colorado River water, and the level of human development and control of the river continues to generate controversy.

Course

 
Headwaters of the Colorado River in Rocky Mountain National Park, Colorado

The Colorado begins at La Poudre Pass in the Never Summer Mountains in Rocky Mountain National Park, 10,184 ft (3,104 m) above sea level.[12] After a short run south, the river turns west below Grand Lake, the largest natural lake in the state.[13] For the first 250 miles (400 km) of its course, the Colorado carves its way through the mountainous Western Slope, a sparsely populated region defined by the portion of the state west of the Continental Divide. As it flows southwest, it gains strength from many small tributaries, as well as larger ones including the Blue, Eagle and Roaring Fork rivers. After passing through De Beque Canyon, the Colorado emerges from the Rockies into the Grand Valley, a major farming and ranching region where it meets one of its largest tributaries, the Gunnison River, at Grand Junction. Most of the upper river is a swift whitewater stream ranging from 200 to 500 feet (60 to 150 m) wide, the depth ranging from 6 to 30 feet (2 to 9 m), with a few notable exceptions, such as the Blackrocks reach where the river is nearly 100 feet (30 m) deep.[14][15] In a few areas, such as the marshy Kawuneeche Valley near the headwaters[16] and the Grand Valley, it exhibits braided characteristics.[15]

From Grand Junction, the Colorado turns northwest before cutting southwest across the eponymous Colorado Plateau, a vast area of high desert centered at the Four Corners of the southwestern United States. Here, the climate becomes significantly drier than that in the Rocky Mountains, and the river becomes entrenched in progressively deeper gorges of bare rock, beginning with Ruby Canyon and then Westwater Canyon as it enters Utah, now once again heading southwest.[17] Farther downstream it receives the Dolores River and defines the southern border of Arches National Park, before passing Moab and flowing through "The Portal", where it exits the Moab Valley between a pair of 1,000-foot (300 m) sandstone cliffs.[18]

 
Colorado River in the Grand Canyon seen from Pima Point, near Hermit's Rest

In Utah, the Colorado flows primarily through the "slickrock" country, which is characterized by its narrow canyons and unique "folds" created by the tilting of sedimentary rock layers along faults. This is one of the most inaccessible regions of the continental United States.[19][20] Below the confluence with the Green River, its largest tributary, in Canyonlands National Park, the Colorado enters Cataract Canyon, named for its dangerous rapids,[21] and then Glen Canyon, known for its arches and erosion-sculpted Navajo sandstone formations.[22] Here, the San Juan River, carrying runoff from the southern slope of Colorado's San Juan Mountains, joins the Colorado from the east. The Colorado then enters northern Arizona, where since the 1960s Glen Canyon Dam near Page has flooded the Glen Canyon reach of the river, forming Lake Powell for hydroelectricity generation.[23][24]

In Arizona, the river passes Lee's Ferry, an important crossing for early explorers and settlers and since the early 20th century the principal point where Colorado River flows are measured for apportionment to the seven U.S. and two Mexican states in the basin.[25] Downstream, the river enters Marble Canyon, the beginning of the Grand Canyon, passing under the Navajo Bridges on a now southward course. Below the confluence with the Little Colorado River, the river swings west into Granite Gorge, the most dramatic portion of the Grand Canyon, where the river cuts up to one mile (1.6 km) into the Colorado Plateau, exposing some of the oldest visible rocks on Earth, dating as long ago as 2 billion years.[26] The 277 miles (446 km) of the river that flow through the Grand Canyon are largely encompassed by Grand Canyon National Park and are known for their difficult whitewater, separated by pools that reach up to 110 feet (34 m) in depth.[27]

At the lower end of Grand Canyon, the Colorado widens into Lake Mead, the largest reservoir in the continental United States, formed by Hoover Dam on the border of Arizona and Nevada. Situated southeast of metropolitan Las Vegas, the dam is an integral component for management of the Colorado River, controlling floods and storing water for farms and cities in the lower Colorado River basin.[28] Below the dam the river passes under the Mike O'Callaghan–Pat Tillman Memorial Bridge—which at nearly 900 feet (270 m) above the water is the highest concrete arch bridge in the Western Hemisphere[29]—and then turns due south towards Mexico, defining the Arizona–Nevada and Arizona–California borders.

 
Satellite view of the Colorado River valley near Yuma, Arizona; Interstate 8 runs from left to right just below center.

After leaving the confines of the Black Canyon, the river emerges from the Colorado Plateau into the Lower Colorado River Valley (LCRV), a desert region dependent on irrigation agriculture and tourism and also home to several major Indian reservations.[30] The river widens here to a broad, moderately deep waterway averaging 500 to 1,000 feet (150 to 300 m) wide and reaching up to 0.25 miles (400 m) across, with depths ranging from 8 to 60 feet (2 to 20 m).[31][32] Before channelization of the Colorado in the 20th century, the lower river was subject to frequent course changes caused by seasonal flow variations. Joseph C. Ives, who surveyed the lower river in 1861, wrote that "the shifting of the channel, the banks, the islands, the bars is so continual and rapid that a detailed description, derived from the experiences of one trip, would be found incorrect, not only during the subsequent year, but perhaps in the course of a week, or even a day."[33]

The LCRV is one of the most densely populated areas along the river, and there are numerous towns including Bullhead City, Arizona, Needles, California, and Lake Havasu City, Arizona. Here, several large diversions draw from the river, providing water for both local uses and distant regions including the Salt River Valley of Arizona and metropolitan Southern California.[34] The last major U.S. diversion is at Imperial Dam, where over 90 percent of the river's flow is moved into the Gila Gravity Canal and Yuma Area Project, and the much bigger All-American Canal to irrigate California's Imperial Valley, the most productive winter agricultural region in the United States.[35]

 
Colorado River as it exits the United States into Mexico beneath the San Luis Colorado-Colonia Miguel Aléman Bridge (September 2009)

Below Imperial Dam, only a small portion of the Colorado River makes it beyond Yuma, Arizona, and the confluence with the intermittent Gila River—which carries runoff from western New Mexico and most of Arizona–before defining about 24 miles (39 km) of the Mexico–United States border. At Morelos Dam, the entire remaining flow of the Colorado is diverted to irrigate the Mexicali Valley, among Mexico's most fertile agricultural lands.[36] Below San Luis Río Colorado, the Colorado passes entirely into Mexico, defining the Baja CaliforniaSonora border. Since 1960, the stretch of the Colorado between here and the Gulf of California has been dry or a trickle formed by irrigation return flows. The Hardy River provides most of the flow into the Colorado River Delta, a vast alluvial floodplain covering about 3,000 square miles (7,800 km2) of northwestern Mexico.[37] A large estuary is formed here before the Colorado empties into the Gulf about 75 miles (120 km) south of Yuma. Occasionally the International Boundary and Water Commission allows a springtime pulse flow to recharge the delta.[38]

Before 20th-century development dewatered the lower Colorado, a major tidal bore was present in the delta and estuary; the first historical record was made by the Croatian missionary in Spanish service Father Ferdinand Konščak on July 18, 1746.[39] During spring tide conditions, the tidal bore—locally called El Burro—formed in the estuary about Montague Island in Baja California and propagated upstream.[40]

Major tributaries

 
The San Juan River near Mexican Hat, Utah
 
The Green River at Mineral Bottom, just north of Canyonlands National Park

The Colorado is joined by over 25 significant tributaries, of which the Green River is the largest by both length and discharge. The Green River takes drainage from the Wind River Range of west-central Wyoming, from Utah's Uinta Mountains, and from the Rockies of northwestern Colorado.[41] The Gila River is the second longest and drains a greater area than the Green,[42] but has a significantly lower flow because of a more arid climate and larger diversions for irrigation and cities.[43] Both the Gunnison and San Juan rivers, which derive most of their water from Rocky Mountains snowmelt, contribute more water than the Gila contributed naturally.[44]

Statistics of the Colorado's longest tributaries
Name State Length Watershed Discharge References
mi km mi2 km2 cfs m3/s
Green River Utah 730 1,170 48,100 125,000 6,048 171.3 [42][45][46][n 1]
Gila River Arizona 649 1,044 58,200 151,000 247 7.0 [2][42][47][n 2]
San Juan River Utah 383 616 24,600 64,000 2,192 62.1 [42][48][49][n 3]
Little Colorado River Arizona 356 573 26,500 69,000 424 12.0 [42][50][51]
Dolores River Utah 250 400 4,574 11,850 633 17.9 [42][52][53]
Gunnison River Colorado 164 264 7,930 20,500 2,570 73 [42][48][54]
Virgin River Nevada 160 260 13,020 33,700 239 6.8 [42][55][56][n 4]

Discharge

In its natural state, the Colorado River poured about 16.3 million acre-feet (20.1 km3) into the Gulf of California each year, equaling an average discharge of 22,500 cubic feet per second (640 m3/s)[disputed ].[3] Its flow regime was not at all steady – indeed, "prior to the construction of federal dams and reservoirs, the Colorado was a river of extremes like no other in the United States."[57] Summer peak flows often exceeded 100,000 cubic feet per second (2,800 m3/s), and winter flows fell as low as 2,500 cubic feet per second (71 m3/s).[57] At Topock, Arizona (about 300 miles (480 km) upstream from the Gulf) a maximum historical discharge of 384,000 cubic feet per second (10,900 m3/s) was recorded in 1884, and a minimum of 422 cubic feet per second (11.9 m3/s) was recorded in 1935.[4][5][58][59] Since the construction of Hoover Dam, the lower Colorado rarely exceeds 35,000 cubic feet per second (990 m3/s) or drops below 4,000 cubic feet per second (110 m3/s).[60] Annual runoff volume also varies widely, from a high of 22.2 million acre-feet (27.4 km3) in 1984 to a low of 3.8 million acre-feet (4.7 km3) in 2002, although in most years only a small portion of this flow – if any – reaches the Gulf.[61][62]

 
Annual Colorado River discharge volumes at Lee's Ferry between 1895 and 2004

About 85–90 percent of the Colorado River's discharge originates in melting snowpack from the Rocky Mountains of Colorado and Wyoming.[61] The three major upper tributaries of the Colorado – the snow-fed Gunnison, Green, and San Juan – alone deliver almost 9 million acre-feet (11 km3) per year to the main stem.[63] The remaining 10 to 15 percent comes from a variety of sources, primarily groundwater and summer monsoon storms.[61] Tributaries in the Lower Basin are prone to monsoon–caused flash floods, but these storms do not often contribute significant volumes of runoff.[61][64] Annual runoff follows snowmelt, which typically begins in April, peaking in May and June before exhausting in July or August.[65]

Due to water diversions, flows at the mouth of the river have steadily declined since the early 1900s. Since 1960, the Colorado has typically dried up before reaching the sea, with the exception of a few wet years.[66] In addition to water consumption, flows have declined due to evaporation from reservoirs and warming temperatures that reduce winter snow accumulation.[67][68][69] Several of the Colorado's major tributaries, including the Gila River, also no longer reach the Colorado due to upstream diversions.[70]

The average flow rate of the Colorado River at the northernmost point of the Mexico–United States border (NIB, or Northerly International Boundary) is 3,869 cubic feet per second (109.6 m3/s), or 2.80 million acre-feet (3.45 km3) per year – about one-fifth of what the natural flow would be.[71] Below this location, the remaining flow is diverted to irrigate the Mexicali Valley, leaving a dry riverbed from Morelos Dam to the sea that is supplemented by intermittent flows of irrigation drainage water.[72] There have been exceptions, however, particularly in 1983–1987, when the Colorado once again reached the sea after consecutive seasons of record-breaking snowfall.[73] In 1984, 16.5 million acre-feet (20.4 km3) of excess runoff reached the ocean.[74]

The United States Geological Survey (USGS) operates or has operated 46 stream gauges to measure the discharge of the Colorado River, ranging from the headwaters near Grand Lake to the Mexico–U.S. border.[82] The tables at right list data associated with eight of these gauges. River flows as gauged at Lees Ferry, Arizona, about halfway along the length of the Colorado and 16 miles (26 km) below Glen Canyon Dam, are used to determine water allocations in the Colorado River basin.[83] The average discharge recorded there was approximately 14,600 cubic feet per second (410 m3/s), or 10.58 million acre-feet (13.05 km3) per year, from 1922 to 2020. This figure has been heavily affected by upstream diversions and reservoir evaporation, especially after the completion of the Colorado River Storage Project in the 1970s. Prior to the completion of Glen Canyon Dam in 1964, the average discharge recorded between 1912 and 1962 was 17,850 cubic feet per second (505 m3/s), or 12.93 million acre-feet (15.95 km3) per year.[78]

Drainage basin

 
Map showing the Upper and Lower Colorado River Basin, and adjacent areas supplied by Colorado River water.

The Colorado River Basin consists of 246,000 square miles (640,000 km2), making it the seventh largest drainage basin in North America.[2] About 238,600 square miles (618,000 km2), or 97 percent of the basin, is in the United States.[42] The basin extends into western Colorado and New Mexico, southwestern Wyoming, eastern and southern Utah, southeastern Nevada and California, and most of Arizona. The areas drained within Baja California and Sonora in Mexico are very small and do not contribute significant runoff.[84] Aside from the Colorado River Delta, the basin extends into Sonora at a few locations further east, including the headwaters of the Santa Cruz River and San Pedro River (both tributaries of the Gila River).[85] For hydrological management purposes, the Colorado River Basin is divided into the Upper Basin (the drainage area above Lees Ferry), and the Lower Basin. The Upper Basin covers only 45 percent of the land area of the Colorado River Basin, but contributes 92 percent of the runoff.[86]

The entire eastern boundary of the Colorado River Basin runs along the North American Continental Divide and is defined largely by the Rocky Mountains. The Wind River Range in Wyoming marks the northern extent of the basin, and is separated from the Colorado Rockies by the endorheic Great Divide Basin in southwestern Wyoming. Streams that are nearby the east side of the divide drain into the Mississippi River and Rio Grande, while nearby areas north of the Wind River Range drain into the Columbia River.[85] The western boundary of the Colorado River Basin is formed by various ranges and plateaus that border the Great Basin, including the Uinta Mountains and Wasatch Range. Major Great Basin watersheds bordering the Colorado River Basin are the Great Salt Lake and Sevier Lake watersheds.[85] To the south, the Colorado River Basin borders several watersheds in Mexico draining into the Gulf of California, including the Sonoyta, Concepción, and Yaqui rivers.[85][87] Much of the basin is at high elevation; the mean elevation is 5,500 feet (1,700 m).[84][88] Lees Ferry, more than halfway along the Colorado River from its source, is 3,150 feet (960 m) above sea level.[89] The highest point in the Colorado River Basin is 14,321-foot (4,365 m) Uncompahgre Peak in Colorado's San Juan Mountains, while some water from the river drains via irrigation run-off into California's Salton Sea, 236 feet (72 m) below sea level.[90]

 
The Black Suspension Bridge crosses the Colorado River in the Grand Canyon at Phantom Ranch, Arizona.

About 72 percent of the Colorado River Basin is classified as arid, with the Sonoran and Mojave deserts covering the southern portion and the Colorado Plateau encompassing much of the central portion.[91] The Colorado Plateau is home to most of the major canyon systems formed by the Colorado River and its tributaries, particularly those of the Green and San Juan rivers. About 23 percent of the basin is forest, with the largest area in the Rocky Mountains; other significant forested areas include the Kaibab, Aquarius, and Markagunt plateaus in southern Utah and northern Arizona, and the Mogollon Rim in central Arizona.[91] These high plateaus and escarpments, often exceeding 9,000 feet (2,700 m) in elevation, form the northern and southern edges of the Colorado Plateau geological province.[92][93] Developed land use in the basin is mostly irrigated agriculture, chiefly in the Grand Valley, the Lower Colorado River Valley, and the Salt River Valley, but the total area of crop and pasture land is only 2–3 percent of the entire basin.[91] Urban areas cover less than 1 percent.[91]

Climate in the Colorado River Basin ranges from subtropical hot desert at southern, lower elevations to alpine in the Rocky Mountains.[94] Mean monthly high temperatures are 25.3 °C (77.5 °F) in the Upper Basin and 33.4 °C (92.1 °F) in the Lower Basin, and lows average −3.6 and 8.9 °C (25.5 and 48.0 °F), respectively. Annual precipitation averages 6.5 inches (164 mm), ranging from over 60 inches (1,500 mm) in some areas of the Rockies to less than 4 inches (100 mm) in dry desert valleys.[86] The Upper Basin generally receives snow and rain during the winter and early spring, while precipitation in the Lower Basin falls mainly during intense but infrequent summer thunderstorms brought on by the North American Monsoon.[95] Precipitation is influenced by the El Niño-Southern Oscillation (ENSO) with El Niño being associated with wetter conditions and La Niña with drier conditions. The effect of ENSO is significantly more pronounced in the Lower Basin, where it has a strong impact on monsoonal rainfall.[86] Runoff patterns across the Colorado River Basin reflect this; most of the perennial tributaries originate in the Upper Basin, while tributaries in the Lower Basin are either ephemeral (such as the Little Colorado River) or highly seasonal (such as the Gila and Salt rivers).[86]

As of 2010, approximately 13 million people lived within the Colorado River basin,[n 6] while about 40 million people live in areas supplied by Colorado River water. Colorado River basin states are among the fastest-growing in the US; the population of Nevada alone increased by about 66 percent between 1990 and 2000 as Arizona grew by some 40 percent.[99] Phoenix, Arizona, Las Vegas, Nevada and Mexicali, Baja California are the largest cities by population within the Colorado River Basin. Other significant cities include Tucson, Arizona, St. George, Utah and Flagstaff, Arizona. Due to the rugged and inhospitable topography through which the river flows, there are only a few major towns along the Colorado River itself, including Grand Junction, Colorado and Yuma, Arizona.[84]

Geology

As recently as the Cretaceous period about 100 million years ago, much of western North America was still part of the Pacific Ocean. Tectonic forces from the collision of the Farallon Plate with the North American Plate pushed up the Rocky Mountains between 50 and 75 million years ago in a mountain-building episode known as the Laramide orogeny.[100] The Colorado River first formed as a west-flowing stream draining the southwestern portion of the range, and the uplift also diverted the Green River, once a tributary of the Mississippi River, west towards the Colorado. About 30 to 20 million years ago, volcanic activity related to the orogeny led to the Mid-Tertiary ignimbrite flare-up, which created smaller formations such as the Chiricahua Mountains in Arizona and deposited massive amounts of volcanic ash and debris over the watershed.[101] The Colorado Plateau first began to rise during the Eocene, between about 55 and 34 million years ago, but did not attain its present height until about 5 million years ago, about when the Colorado River established its present course into the Gulf of California.[102]

The time scale and sequence over which the river's present course and the Grand Canyon were formed is uncertain. Before the Gulf of California was formed around 12 to 5 million years ago by faulting processes along the boundary of the North American and Pacific plates,[103] the Colorado flowed west to an outlet on the Pacific Ocean—possibly Monterey Bay on the Central California coast, and may have played a role in the formation of the Monterey submarine canyon. Crustal extension in the Basin and Range Province began about 20 million years ago and the modern Sierra Nevada began forming about 10 million years ago, eventually diverting the Colorado southwards towards the Gulf.[104] As the Colorado Plateau continued to rise between 5 and 2.5 million years ago, the river maintained its ancestral course (as an antecedent stream) and began to cut the Grand Canyon. Antecedence played a major part in shaping other peculiar geographic features in the watershed, including the Dolores River's bisection of Paradox Valley in Colorado and the Green River's cut through the Uinta Mountains in Utah.[105]

 
Remnants of basalt flows from the Uinkaret volcanic field are seen here descending into the Grand Canyon, where they dammed the Colorado over 10 times in the past 2 million years.

Sediments carried from the plateau by the Colorado River created a vast delta made of more than 10,000 cubic miles (42,000 km3) of material that walled off the northernmost part of the gulf in approximately 1 million years. Cut off from the ocean, the portion of the gulf north of the delta eventually evaporated and formed the Salton Sink, which reached about 260 feet (79 m) below sea level.[106][107] Since then the river has changed course into the Salton Sink at least three times, transforming it into Lake Cahuilla, which at maximum size flooded up the valley to present-day Indio, California. The lake took about 50 years to evaporate after the Colorado resumed flowing to the Gulf. The present-day Salton Sea can be considered the most recent incarnation of Lake Cahuilla, though on a much smaller scale.[108]

Between 1.8 million and 10,000 years ago, massive flows of basalt from the Uinkaret volcanic field in northern Arizona dammed the Colorado River within the Grand Canyon. At least 13 lava dams were formed, the largest of which was more than 2,300 feet (700 m) high, backing the river up for nearly 500 miles (800 km) to present-day Moab, Utah.[109] The lack of associated sediment deposits along this stretch of the Colorado River, which would have accumulated in the impounded lakes over time, suggests that most of these dams did not survive for more than a few decades before collapsing or being washed away. Failure of the lava dams caused by erosion, leaks and cavitation caused catastrophic floods, which may have been some of the largest ever to occur in North America, rivaling the late-Pleistocene Missoula Floods of the northwestern United States.[110] Mapping of flood deposits indicate that crests as high as 700 feet (210 m) passed through the Grand Canyon,[111] reaching peak discharges as great as 17 million cubic feet per second (480,000 m3/s).[112]

History

Indigenous peoples

 
Navajo woman and child, photographed by Ansel Adams, c. 1944
 
Pueblos and cliff dwellings such as this one in New Mexico were inhabited by people of the Colorado River basin between 2,000 and 700 years ago.

The first humans of the Colorado River basin were likely Paleo-Indians of the Clovis and Folsom cultures, who first arrived on the Colorado Plateau about 12,000 years ago. Very little human activity occurred in the watershed until the rise of the Desert Archaic Culture, which from 8,000 to 2,000 years ago constituted most of the region's human population. These prehistoric inhabitants led a generally nomadic lifestyle, gathering plants and hunting small animals (though some of the earliest peoples hunted larger mammals that became extinct in North America after the end of the Pleistocene epoch).[113] Another notable early group was the Fremont culture, whose peoples inhabited the Colorado Plateau from 2,000 to 700 years ago. The Fremont were likely the first peoples of the Colorado River basin to domesticate crops and construct masonry dwellings; they also left behind a large amount of rock art and petroglyphs, many of which have survived to the present day.[114][115]

Beginning in the early centuries A.D., Colorado River basin peoples began to form large agriculture-based societies, some of which lasted hundreds of years and grew into well-organized civilizations encompassing tens of thousands of inhabitants. The Ancient Puebloan (also known as Anasazi or Hisatsinom) people of the Four Corners region were descended from the Desert Archaic culture.[116] The Puebloan people developed a complex distribution system to supply drinking and irrigation water in Chaco Canyon in northwestern New Mexico.[117]

The Puebloans dominated the basin of the San Juan River, and the center of their civilization was in Chaco Canyon.[118] In Chaco Canyon and the surrounding lands, they built more than 150 multi-story pueblos or "great houses", the largest of which, Pueblo Bonito, is composed of more than 600 rooms.[119][120] The Hohokam culture was present along the middle Gila River beginning around 1 A.D. Between 600 and 700 A.D. they began to employ irrigation on a large scale, and did so more prolifically than any other native group in the Colorado River basin.[121] An extensive system of irrigation canals was constructed on the Gila and Salt rivers, with various estimates of a total length ranging from 180 to 300 miles (290 to 480 km) and capable of irrigating 25,000 to 250,000 acres (10,000 to 101,000 ha). Both civilizations supported large populations at their height; the Chaco Canyon Puebloans numbered between 6,000 and 15,000[122] and estimates for the Hohokam range between 30,000 and 200,000.[123]

Megadrought in 14th century

These sedentary peoples heavily exploited their surroundings, practicing logging and harvesting of other resources on a large scale. The construction of irrigation canals may have led to a significant change in the morphology of many waterways in the Colorado River basin. Prior to human contact, rivers such as the Gila, Salt and Chaco were shallow perennial streams with low, vegetated banks and large floodplains. In time, flash floods caused significant downcutting on irrigation canals, which in turn led to the entrenchment of the original streams into arroyos, making agriculture difficult.[124] A variety of methods were employed to combat these problems, including the construction of large dams, but when a megadrought hit the region in the 14th century A.D. the ancient civilizations of the Colorado River basin abruptly collapsed.[124][125] Some Puebloans migrated to the Rio Grande Valley of central New Mexico and south-central Colorado, becoming the predecessors of the Hopi, Zuni, Laguna and Acoma people in western New Mexico.[113] Many of the tribes that inhabited the Colorado River basin at the time of European contact were descended from Puebloan and Hohokam survivors, while others already had a long history of living in the region or migrated in from bordering lands.[113][126]

Native American names for the Colorado River
Hopi: Pisisvayu[127]
Maricopa: 'Xakxwet[128]
Mohave: 'Aha Kwahwat[129]
Navajo: Tó Ntsʼósíkooh
Havasupai: Ha Ŧay Gʼam /
Sil Gsvgov[130]
Yavapai: ʼHakhwata[131]

The Navajo were an Athabaskan people who migrated from the north into the Colorado River basin around 1025 A.D.[132] They soon established themselves as the dominant Native American tribe in the Colorado River basin, and their territory stretched over parts of present-day Arizona, New Mexico, Utah and Colorado – in the original homelands of the Puebloans. In fact, the Navajo acquired agricultural skills from the Puebloans before the collapse of the Pueblo civilization in the 14th century.[133] A profusion of other tribes have made a continued, lasting presence along the Colorado River. The Mohave have lived along the rich bottomlands of the lower Colorado below Black Canyon since 1200 A.D. They were fishermen—navigating the river on rafts made of reeds to catch Gila trout and Colorado pikeminnow— and farmers, relying on the annual floods of the river rather than irrigation to water their crops.[134] Ute peoples have inhabited the northern Colorado River basin, mainly in present-day Colorado, Wyoming and Utah, for at least 2,000 years, but did not become well established in the Four Corners area until 1500 A.D.[135][136] The Apache, Cocopah, Halchidhoma, Havasupai, Hualapai, Maricopa, Pima, and Quechan are among many other groups that live along or had territories bordering on the Colorado River and its tributaries.[113][137]

Europeans arrive

Beginning in the 17th century, contact with Europeans brought significant changes to the lifestyles of Native Americans in the Colorado River basin. Missionaries sought to convert indigenous peoples to Christianity – an effort sometimes successful, such as in Father Eusebio Francisco Kino's 1694 encounter with the "docile Pimas of the Gila Valley [who] readily accepted Kino and his Christian teachings".[137] From 1694 to 1702 Kino would explore the Gila and Colorado Rivers to determine if California was an island or peninsula. The Spanish introduced sheep and goats to the Navajo, who came to rely heavily on them for meat, milk and wool.[132] By the mid-16th century, the Utes, having acquired horses from the Spanish, introduced them to the Colorado River basin. The use of horses spread through the basin via trade between the various tribes and greatly facilitated hunting, communications, travel and warfare for indigenous peoples. The more aggressive tribes, such as the Utes and Navajos, often used horses to their advantage in raids against tribes that were slower to adopt them, such as the Goshutes and Southern Paiutes.[138]

 
Two Mohave warriors beside the Colorado River in 1871

The gradual influx of European and American explorers, fortune seekers and settlers into the region eventually led to conflicts that forced many Native Americans off their traditional lands. After the acquisition of the Colorado River basin from Mexico in the Mexican–American War in 1846, U.S. military forces commanded by Kit Carson forced more than 8,000 Navajo men, women and children from their homes after a series of unsuccessful attempts to confine their territory, many of which were met with violent resistance. In what is now known as the Long Walk of the Navajo, the captives were marched from Arizona to Fort Sumner in New Mexico, and many died along the route. Four years later, the Navajo signed a treaty that moved them onto a reservation in the Four Corners region that is now known as the Navajo Nation. It is the largest Native American reservation in the United States, encompassing 27,000 square miles (70,000 km2) with a population of over 180,000 as of 2000.[139][140][141]

Mohave expelled

The Mohave were expelled from their territory after a series of minor skirmishes and raids on wagon trains passing through the area in the late 1850s, culminating in an 1859 battle with American forces that concluded the Mohave War.[142] In 1870, the Mohave were relocated to a reservation at Fort Mojave, which spans the borders of Arizona, California and Nevada.[143] Some Mohave were also moved to the 432-square-mile (1,120 km2) Colorado River Indian Reservation on the Arizona–California border, originally established for the Mohave and Chemehuevi people in 1865.[144] In the 1940s, some Hopi and Navajo people were also relocated to this reservation.[145] The four tribes now form a geopolitical body known as the Colorado River Indian Tribes.[144]

Water rights of Native Americans in the Colorado River basin were largely ignored during the extensive water resources development carried out on the river and its tributaries in the 19th and 20th centuries. The construction of dams has often had negative impacts on tribal peoples, such as the Chemehuevi when their riverside lands were flooded after the completion of Parker Dam in 1938. Ten Native American tribes in the basin now hold or continue to claim water rights to the Colorado River.[146] The U.S. government has taken some actions to help quantify and develop the water resources of Native American reservations. The first federally funded irrigation project in the U.S. was the construction of an irrigation canal on the Colorado River Indian Reservation in 1867.[147] Other water projects include the Navajo Indian Irrigation Project, authorized in 1962 for the irrigation of lands in part of the Navajo Nation in north-central New Mexico.[148] The Navajo continue to seek expansion of their water rights because of difficulties with the water supply on their reservation; about 40 percent of its inhabitants must haul water by truck many miles to their homes. In the 21st century, they have filed legal claims against the governments of Arizona, New Mexico and Utah for increased water rights. Some of these claims have been successful for the Navajo, such as a 2004 settlement in which they received a 326,000-acre-foot (402,000 ML) allotment from New Mexico.[149]

Early explorers

 
La conquista del Colorado (2017), by Augusto Ferrer-Dalmau, depicts Francisco Vázquez de Coronado's 1540–1542 expedition. García López de Cárdenas can be seen overlooking the Grand Canyon.

During the 16th century, the Spanish began to explore and colonize western North America. An early motive was the search for the Seven Cities of Gold, or "Cibola", rumored to have been built by Native Americans somewhere in the desert Southwest. According to a United States Geological Survey publication, it is likely that Francisco de Ulloa was the first European to see the Colorado River when in 1536 he sailed to the head of the Gulf of California.[150] Francisco Vásquez de Coronado's 1540–1542 expedition began as a search for the fabled Cities of Gold, but after learning from natives in New Mexico of a large river to the west, he sent García López de Cárdenas to lead a small contingent to find it. With the guidance of Hopi Indians, Cárdenas and his men became the first outsiders to see the Grand Canyon.[151] Cárdenas was reportedly unimpressed with the canyon, assuming the width of the Colorado River at 6 feet (1.8 m) and estimating 300-foot (91 m)-tall rock formations to be the size of a man. After failing at an attempt to descend to the river, they left the area, defeated by the difficult terrain and torrid weather.[152]

 
Coronado Sets Out to the North, by Frederic Remington, c. 1905

In 1540, Hernando de Alarcón and his fleet reached the mouth of the river, intending to provide additional supplies to Coronado's expedition. Alarcón may have sailed the Colorado as far upstream as the present-day California–Arizona border. Coronado never reached the Gulf of California, and Alarcón eventually gave up and left. Melchior Díaz reached the delta in the same year, intending to establish contact with Alarcón, but the latter was already gone by the time of Díaz's arrival. Díaz named the Colorado River Rio del Tizon ("Firebrand River") after seeing a practice used by the local natives for warming themselves.[153] The name Tizon lasted for the next 200 years. The name Rio Colorado ("Red River") was first applied to the Colorado by Father Eusebio Francisco Kino in his maps and written reports resulting from his explorations to the Colorado River Delta and his discovery that California was not an island but a peninsula (1700–1702). Kino's 1701 map, "Paso por Tierra a la California," is the first known map to label the river as the Colorado.[154]

During the 18th and early 19th centuries, many Americans and Spanish believed in the existence of the Buenaventura River, purported to run from the Rocky Mountains in Utah or Colorado to the Pacific Ocean.[155] The name Buenaventura was given to the Green River by Silvestre Vélez de Escalante as early as 1776, but Escalante did not know that the Green drained to the Colorado. Many later maps showed the headwaters of the Green and Colorado rivers connecting with the Sevier River (Rio San Ysabel) and Utah Lake (Lake Timpanogos) before flowing west through the Sierra Nevada into California. Mountain man Jedediah Smith reached the lower Colorado by way of the Virgin River canyon in 1826. Smith called the Colorado the "Seedskeedee", as the Green River in Wyoming was known to fur trappers, correctly believing it to be a continuation of the Green and not a separate river as others believed under the Buenaventura myth.[156] John C. Frémont's 1843 Great Basin expedition proved that no river traversed the Great Basin and Sierra Nevada, officially debunking the Buenaventura myth.[157]

Exploration and navigation below Fort Yuma, 1850–1854

Between 1850 and 1854 the U. S. Army explored the lower reach of the Colorado River from the Gulf of California, looking for the river to provide a less expensive route to supply the remote post of Fort Yuma. First in November 1850 to January 1851, by its transport schooner, Invincible under Captain Alfred H. Wilcox and then by its longboat commanded by Lieutenant George Derby. Later Lieutenant Derby, in his expedition report, recommended that a shallow draft sternwheel steamboat would be the way to send supplies up river to the fort.[158]

The next contractors George Alonzo Johnson with his partner Benjamin M. Hartshorne, brought two barges and 250 tons of supplies arriving at the river's mouth in February 1852, on the United States transport schooner Sierra Nevada under Captain Wilcox. Poling the barges up the Colorado, the first barge sank with its cargo a total loss. The second was finally, after a long struggle poled up to Fort Yuma, but what little it carried was soon consumed by the garrison. Subsequently, wagons again were sent from the fort to haul the balance of the supplies overland from the estuary through the marshes and woodlands of the Delta.[159]: 5–9 

At last Derby's recommendation was heeded and in November 1852, the Uncle Sam, a 65-foot-long side-wheel paddle steamer, built by Domingo Marcucci, became the first steamboat on the Colorado River.[160]: 15  It was brought by the schooner Capacity from San Francisco to the delta by the next contractor to supply the fort, Captain James Turnbull. It was assembled and launched in the estuary, 30 miles above the mouth of the Colorado River. Equipped with only a 20-horsepower engine, the Uncle Sam could only carry 35 tons of supplies, taking 15 days to make the first 120-mile trip. It made many trips up and down the river, taking four months to finish carrying the supplies for the fort, improving its time up river to 12 days. Negligence caused it to sink at its dock below Fort Yuma, and was then washed away before it could be raised, in the spring flood of 1853. Turnbull in financial difficulty, disappeared. Nevertheless, he had shown the worth of steamboats to solve Fort Yuma's supply problem.[159]: 10–11 

George Alonzo Johnson with his partner Hartshorne and a new partner Captain Alfred H. Wilcox (formerly of the Invincible and Sierra Nevada), formed George A. Johnson & Company and obtained the next contract to supply the fort. Johnson and his partners, all having learned lessons from their failed attempts ascending the Colorado and with the example of the Uncle Sam, brought the parts of a more powerful side-wheel steamboat, the General Jesup, with them to the mouth of the Colorado from San Francisco. There it was reassembled at a landing in the upper tidewater of the river and reached Fort Yuma, January 18, 1854. This new boat, capable of carrying 50 tons of cargo, was very successful making round trips from the estuary to the fort in only four or five days. Costs were cut from $200 to $75 per ton.[159]: 11–12 [161]: 34 

Exploration and navigation above Fort Yuma, 1851–1887

 
Lithograph of Fort Yuma, c. 1875

Lorenzo Sitgreaves led the first Corps of Topographical Engineers mission across northern Arizona to the Colorado River (near modern Bullhead City, Arizona), and down its east bank to the river crossings of the Southern Immigrant Trail at Fort Yuma in 1851.[162][163]

The second Corps of Topographical Engineers expedition passed along and crossed the Colorado was the 1853–1854 Pacific Railroad Survey expedition along the 35th parallel north from Oklahoma to Los Angeles, led by Lt. Amiel Weeks Whipple.[164]

George A. Johnson was instrumental in getting the support for Congressional funding a military expedition up the river. With those funds Johnson expected to provide the transportation for the expedition but was angry and disappointed when the commander of the expedition Lt. Joseph Christmas Ives rejected his offer of one of his steamboats. Before Ives could finish reassembling his steamer in the delta, George A. Johnson set off from Fort Yuma on December 31, 1857, conducting his own exploration of the river above the fort in his steamboat General Jesup. He ascended the river in twenty one days as far as the first rapids in Pyramid Canyon, over 300 miles (480 km) above Fort Yuma and 8 miles (13 km) above the modern site of Davis Dam. Running low on food he turned back.[159]: 16–17, 19 [165] As he returned he encountered Lieutenant Ives, Whipple's assistant, who was leading an expedition to explore the feasibility of using the Colorado River as a navigation route in the Southwest. Ives and his men used a specially built steamboat, the shallow-draft U.S.S. Explorer, and traveled up the river as far as Black Canyon. He then took a small boat up beyond the canyon to Fortification Rock and Las Vegas Wash.[166]: Part 1, 85–87  After experiencing numerous groundings and accidents and having been inhibited by low water in the river, Ives declared: "Ours has been the first, and will doubtless be the last, party of whites to visit this profitless locality. It seems intended by nature that the Colorado River, along the greater portion of its lonely and majestic way, shall be forever unvisited and undisturbed."[167][168]

Until 1866, El Dorado Canyon was the actual head of navigation on the Colorado River. In that year Captain Robert T. Rogers, commanding the steamer Esmeralda with a barge and ninety tons of freight, reached Callville, Nevada, on October 8, 1866.[159]: 49  Callville remained the head of navigation on the river until July 7, 1879, when Captain J. A. Mellon in the Gila left El Dorado Canyon landing, steamed up through the rapids in Black Canyon, making record time to Callville and tied up overnight. Next morning he to steamed up through the rapids in Boulder Canyon to reach the mouth of the Virgin River at Rioville July 8, 1879. From 1879 to 1887, Rioville, Nevada was the high water Head of Navigation for the steamboats and the mining company sloop Sou'Wester that carried the salt needed for the reduction of silver ore from there to the mills at El Dorado Canyon.[159]: 78 

Powell's expeditions, 1869–1871

Up until the mid-19th century, long stretches of the Colorado and Green rivers between Wyoming and Nevada remained largely unexplored due to their remote location and dangers of navigation. Because of the dramatic drop in elevation of the two rivers, there were rumors of huge waterfalls and violent rapids, and Native American tales strengthened their credibility.[169] In 1869, one-armed Civil War veteran John Wesley Powell led an expedition from Green River Station in Wyoming, aiming to run the two rivers all the way down to St. Thomas, Nevada, near present-day Hoover Dam.[170] Powell and nine men – none of whom had prior whitewater experience – set out in May. After braving the rapids of the Gates of Lodore, Cataract Canyon and other gorges along the Colorado, the party arrived at the mouth of the Little Colorado River, where Powell noted down arguably the most famous words ever written about the Grand Canyon of the Colorado:[171]

 
Marble Canyon, one of the many gorges that Powell's expedition traversed

We are now ready to start on our way down the Great Unknown. Our boats, tied to a common stake, are chafing each other, as they are tossed by the fretful river. They ride high and buoyant, for their loads are lighter than we could desire. We have but a month's rations remaining. The flour has been re-sifted through the mosquito net sieve; the spoiled bacon has been dried, and the worst of it boiled; the few pounds of dried apples have been spread in the sun, and re-shrunken to their normal bulk; the sugar has all melted, and gone on its way down the river; but we have a large sack of coffee. The lighting of the boats has this advantage: they will ride the waves better, and we shall have little to carry when we make a portage.

We are three-quarters of a mile in the depths of the earth, and the great river shrinks into insignificance, as it dashes its angry waves against the walls and cliffs, that rise to the world above; they are but puny ripples, and we but pigmies, running up and down the sands, or lost among the boulders.

We have an unknown distance yet to run; an unknown river yet to explore. What falls there are, we know not; what rocks beset the channel, we know not; what walls rise over the river, we know not; Ah, well! we may conjecture many things. The men talk as cheerfully as ever; jests are bandied about freely this morning; but to me the cheer is somber and the jests are ghastly.

— John Wesley Powell's journal, August 1869[171]

On August 28, 1869, three men deserted the expedition, convinced that they could not possibly survive the trip through the Grand Canyon. They were allegedly killed by Native Americans after making it to the rim of the canyon; two days later, the expedition ran the last of the Grand Canyon rapids and reached St. Thomas.[172] Powell led a second expedition in 1871, this time with financial backing from the U.S. government.[173] The explorers named many features along the Colorado and Green rivers, including Glen Canyon, the Dirty Devil River, Flaming Gorge, and the Gates of Lodore. In what is perhaps a twist of irony, modern-day Lake Powell, which floods Glen Canyon, is also named for their leader.[174]

American settlement

 
The steamboat Mohave No. 2 at Yuma, c. 1876

Starting in the latter half of the 19th century, the lower Colorado below Black Canyon became an important waterway for steamboat commerce. In 1852, the Uncle Sam was launched to provide supplies to the U.S. Army outpost at Fort Yuma. Although this vessel accidentally foundered and sank early in its career, commercial traffic quickly proliferated because river transport was much cheaper than hauling freight over land.[175] Navigation on the Colorado River was dangerous because of the shallow channel and flow variations, so the first sternwheeler on the river, the Colorado of 1855, was designed to carry 60 short tons (54 t) while drawing less than 2 feet (0.6 m) of water.[176] The tidal bore of the lower Colorado also presented a major hazard; in 1922, a 15-foot (4.6 m)-high wave swamped a ship bound for Yuma, killing between 86 and 130 people.[177][178] Steamboats quickly became the principal source of communication and trade along the river until competition from railroads began in the 1870s, and finally the construction of dams along the lower river in 1909, none of which had locks to allow the passage of ships.[179]

During the Manifest Destiny era of the mid-19th century, American pioneers settled many western states but generally avoided the Colorado River basin until the 1850s. Under Brigham Young's grand vision for a "vast empire in the desert",[180] (the State of Deseret) Mormon settlers were among the first whites to establish a permanent presence in the watershed, Fort Clara or Fort Santa Clara, in the winter of 1855–1856 along the Santa Clara River, tributary of the Virgin River. In the lower Colorado mining was the primary spur to economic development, copper mining in southwestern New Mexico Territory the 1850s then the Mohave War and a gold rush on the Gila River in 1859, the El Dorado Canyon Rush in 1860 and Colorado River Gold Rush in 1862.

In 1860, anticipating the American Civil War, the Mormons established a number of settlements to grow cotton along the Virgin River in Washington County, Utah. From 1863 to 1865, Mormon colonists founded St. Thomas and other colonies on the Muddy and Virgin rivers in northwestern Arizona Territory, (now Clark County, Nevada). Stone's Ferry was established by these colonists on the Colorado at the mouth of the Virgin River to carry their produce on a wagon road to the mining districts of Mohave County, Arizona to the south. Also, in 1866, a steamboat landing was established at Callville, intended as an outlet to the Pacific Ocean via the Colorado River, for Mormon settlements in the Great Basin. These settlements reached a peak population of about 600 before being abandoned in 1871, and for nearly a decade these valleys became a haven for outlaws and cattle rustlers.[181] One Mormon settler Daniel Bonelli, remained, operating the ferry and began mining salt in nearby mines, bring it in barges, down river to El Dorado Canyon where it was used to process silver ore. From 1879 to 1887, Colorado Steam Navigation Company steamboats carried the salt, operating up river in the high spring flood waters, through Boulder Canyon, to the landing at Rioville at the mouth of the Virgin River. From 1879 to 1882 the Southwestern Mining Company, largest in El Dorado Canyon, brought in a 56-foot sloop the Sou'Wester that sailed up and down river carrying the salt in the low water time of year until it was wrecked in the Quick and Dirty Rapids of Black Canyon.[159]: 78 

 
John D. Lee established a permanent ferry across the Colorado.

Mormons founded settlements along the Duchesne River Valley in the 1870s, and populated the Little Colorado River valley later in the century, settling in towns such as St. Johns, Arizona.[136] They also established settlements along the Gila River in central Arizona beginning in 1871. These early settlers were impressed by the extensive ruins of the Hohokam civilization that previously occupied the Gila River valley, and are said to have "envisioned their new agricultural civilization rising as the mythical phoenix bird from the ashes of Hohokam society".[121] The Mormons were the first whites to develop the water resources of the basin on a large scale, and built complex networks of dams and canals to irrigate wheat, oats and barley in addition to establishing extensive sheep and cattle ranches.[180]

One of the main reasons the Mormons were able to colonize Arizona was the existence of Jacob Hamblin's ferry across the Colorado at Lee's Ferry (then known as Pahreah Crossing), which began running in March 1864.[182] This location was the only section of river for hundreds of miles in both directions where the canyon walls dropped away, allowing for the development of a transport route. John Doyle Lee established a more permanent ferry system at the site in 1870. One reason Lee chose to run the ferry was to flee from Mormon leaders who held him responsible for the Mountain Meadows massacre, in which 120 emigrants in a wagon train were killed by a local militia disguised as Native Americans. Even though it was located along a major travel route, Lee's Ferry was very isolated, and there Lee and his family established the aptly named Lonely Dell Ranch.[182] In 1928, the ferry sank, resulting in the deaths of three men. Later that year, the Navajo Bridge was completed at a point 5 miles (8 km) downstream, rendering the ferry obsolete.[183]

Gold strikes from the mid-19th to early 20th centuries played a major role in attracting settlers to the upper Colorado River basin. In 1859, a group of adventurers from Georgia discovered gold along the Blue River in Colorado and established the mining boomtown of Breckenridge.[184] During 1875, even bigger strikes were made along the Uncompahgre and San Miguel rivers, also in Colorado, and these led to the creation of Ouray and Telluride, respectively.[185][186] Because most gold deposits along the upper Colorado River and its tributaries occur in lode deposits, extensive mining systems and heavy machinery were required to extract them. Mining remains a substantial contributor to the economy of the upper basin and has led to acid mine drainage problems in some regional streams and rivers.[187][188]

 
Harrison Gray Otis, president of the Colorado River Land Company

The Colorado River region in Mexico became favored place for Americans to invest in agriculture in the late nineteenth century when Mexico President Porfirio Díaz welcomed foreign capital to develop the country. The Colorado River Land Company, formed by Los Angeles Times publisher Harry Chandler, his father-in-law Harrison Gray Otis, and others, developed the Mexicali Valley in Baja California as a thriving land company. The company headquarters was nominally based in Mexico, but its real headquarters was in Los Angeles, California. Land was leased mainly to Americans who were required to develop it. Colorado River was used to irrigate the rich soil. The company largely escaped the turmoil of the Mexican Revolution (1910–20), but in the postrevolutionary period, the Mexican government expropriated the company's land to satisfy the demand for land reform.[189][190][191]

Naming of the upper Colorado River and controversy

Prior to 1921, the upper Colorado River above the confluence with the Green River in Utah had assumed various names. Fathers Dominguez and Escalante named it Rio San Rafael in 1776. Through the mid-1800s, the river between Green River and the Gunnison River was most commonly known as the Grand River. The river above the junction with the Gunnison River, however, was known variously as the Bunkara River, the North Fork of the Grand River, the Blue River, and the Grand River. The latter name did not become consistently applied until the 1870s.[192]

In 1921, U.S. Representative Edward T. Taylor of Colorado petitioned the Congressional Committee on Interstate and Foreign Commerce to rename the Grand River as the Colorado River. Taylor saw the fact that the Colorado River started outside the border of his state as an "abomination".[193] On July 25, the name change was made official in House Joint Resolution 460 of the 66th Congress, over the objections of representatives from Wyoming, Utah, and the USGS, which noted that the Green River was much longer and had a larger drainage basin above its confluence with the Grand River, although the Grand contributed a greater flow of water.[192][194][n 7]

Engineering and development

 
Hoover Dam releasing water in 1998

About 40 million people depend on the Colorado River's water for agricultural, industrial and domestic needs.[196] The Colorado irrigates 5.5 million acres (2.2 million hectares) of farmland,[196] and its hydroelectric plants produce 12 billion kilowatt hours (KWh) of hydroelectricity each year.[197] Hydroelectricity from the Colorado is a key supplier of peaking power on the Southwest electric grid.[198][199] Often called "America's Nile",[200] the Colorado is so intensively managed that each drop of its water is used an average of 17 times in a single year.[201][202] Southern Nevada Water Authority has called the Colorado River one of the "most controlled, controversial and litigated rivers in the world".[203]

Colorado River water allocations, in millions of acre-feet[204][205][206]
User Amount Share
United States 15.0 90.9%
California 4.4 26.7%
Colorado 3.88 23.5%
Arizona 2.8 17.0%
Utah 1.72 10.4%
Wyoming 1.05 6.4%
New Mexico 0.84 5.1%
Nevada 0.3 1.8%
Mexico 1.5 9.1%
Total 16.5 100%

In 1922, six U.S. states signed the Colorado River Compact, which divided half of the river's flow to both the Upper Basin (the drainage area above Lee's Ferry, comprising parts of Colorado, New Mexico, Utah, and Wyoming and a small portion of Arizona) and the Lower Basin (Arizona, California, Nevada, and parts of New Mexico and Utah). The Upper and Lower Basin were each allocated 7.5 million acre-feet (9.3 km3) of water per year, a figure believed to represent half of the river's annual flow at Lee's Ferry.[204] The allotments operated under the premise that approximately 17.5 million acre-feet of water flowed through the river annually.[207]

Arizona initially refused to ratify the compact because it feared that California would take too much of the lower basin allotment. In 1944 a compromise was reached in which Arizona was allocated 2.8 million acre-feet (3.5 km3), but with the caveat that California's 4.4-million-acre-foot (5.4 km3) allocation was prioritized during drought years.[208] These and nine other decisions, compacts, federal acts and agreements made between 1922 and 1973 constitute what is now known as the Law of the River.[208][209]

In 1944, a treaty between the U.S. and Mexico allocated 1.5 million acre-feet (1.9 km3) of Colorado River water to Mexico each year.[205] Morelos Dam was constructed in 1950 to enable Mexico to utilize its share of the river. Water allocated to Mexico from the Colorado River is regulated by the International Boundary and Water Commission, which also apportions waters from the Rio Grande between the two countries.[210]

Transmountain diversions

Large-scale development of Colorado River water supplies started in the late 19th century, at the river's headwaters in La Poudre Pass. The Grand Ditch, directing runoff from the river's headwaters across the Continental Divide to arid eastern Colorado, was considered an engineering marvel when completed in 1890.[211] This was the first of twenty-four "transmountain diversions" constructed to draw water across the Rocky Mountains as the Front Range corridor increased in population.[212] These diversions draw water from the upper Colorado and its tributaries into the South Platte River, Arkansas River and Rio Grande basins.[213] Today, about 80 percent of Colorado's population lives on the Eastern Slope of the Rockies, while 80 percent of precipitation falls on the Western Slope.[214]

 
The Grand Ditch, one of the earliest water diversions of the Colorado River, is still in use today.

While first planned at the same time as the Grand Ditch, construction on the Colorado-Big Thompson Project (C-BT) did not begin until the 1930s. Today, the C-BT is the largest of the transmountain diversions, delivering 230,000 acre-feet (280,000,000 m3) per year from the Colorado River to cities north of Denver.[215] Numerous other projects followed, with the largest including the Roberts Tunnel, which delivers water from the Blue River to the city of Denver,[216][217] and the Fryingpan–Arkansas Project, which diverts water from the Fryingpan River to the Arkansas River basin.[218]

Combined, the transmountain diversions draw about 580,000 acre-feet (720,000,000 m3) of water per year out of the Colorado River basin.[213] Historically, most of the water has been used for irrigation, although water usage is increasing for urban water supply and for recreational purposes such as snowmaking and increasing Eastern Slope streamflows for boating and fishing. Denver Water receives about 50 percent of its supply from the Colorado River basin. However, diversions have caused environmental harm to the upper Colorado River system by reducing streamflows in many tributaries.[213] A number of reservoirs have been built to offset the impact of transmountain diversions by storing water for dry season release on the Western Slope, including Williams Fork Reservoir in 1959[219] and Wolford Mountain Reservoir in 1996.[220]

The Imperial Valley disaster

In 1900, the California Development Company (CDC) envisioned irrigating the Imperial Valley, a then dry basin on the California–Mexico border, using water from the Colorado River. Due to the valley's location below sea level, water could be diverted and allowed to flow there entirely by gravity. Engineer George Chaffey was hired to design the Alamo Canal, which split from the Colorado near Pilot Knob, California and ran south into Mexico, where it joined the Alamo River, a dry arroyo which had historically carried overflowing floodwaters from the Colorado into the Salton Sink at the bottom of Imperial Valley. The scheme worked initially; by 1903, about four thousand people lived in the valley and more than 100,000 acres (40,000 ha) of farmland had been developed.[221][222]

The Alamo Canal experienced continual problems due to the Colorado's high sediment content and its varying water levels. During low flows, the river often dropped below the level of the canal intake, while high flows silted up the intake, forcing the repeated excavation of new cuts. In early 1905, flooding destroyed the intake gates and water began to flow uncontrolled down the canal towards the Salton Sink. By August, the breach had grown large enough to swallow the entire flow of the river, which began to flood the bottom of the valley. The Southern Pacific Railroad attempted to dam the flow in order to protect their tracks which ran through the valley, but was hampered by repeated flooding.[222] It took seven attempts, more than $3 million, and two years for the railroad, the CDC, and the federal government to permanently block the breach and restore the river's original course – but not before part of the Imperial Valley was flooded under a 45-mile-long (72 km) lake, today's Salton Sea. The Imperial Valley fiasco demonstrated that further economic development of the region would require a dam to control the Colorado's unpredictable flows.[223][224][225]

Boulder Canyon Project

 
Hoover Dam under construction, 1934
 
The Imperial Dam (bottom right) diverts water into the All-American Canal (center) running towards Imperial Valley.

A large dam on the Colorado River had been envisioned since the 1920s. In 1928, Congress authorized the Reclamation Service (today's U.S. Bureau of Reclamation, or USBR) to build the Boulder Canyon Project, whose key feature would be a dam on the Colorado in Black Canyon 30 miles (48 km) southeast of Las Vegas, Nevada. On September 30, 1935, Hoover Dam was completed, forming Lake Mead, capable of holding more than two years of the Colorado's flow. Lake Mead was, and still is, the largest artificial lake in the U.S. by storage capacity.[28][226] The construction of Hoover Dam stabilized the lower channel of the Colorado River, stored water for irrigation in times of drought, captured sediment and controlled floods. Hoover was the tallest dam in the world at the time of construction and also had the world's largest hydroelectric power plant.[227]

The Boulder Canyon Project Act also authorized the All-American Canal,[228] which was built as a permanent replacement for the Alamo Canal and follows a route entirely within the U.S. on its way to the Imperial Valley. The canal's intake is located at Imperial Dam, 20 miles (32 km) above Yuma, Arizona, which diverts the majority of the Colorado's flow with only a small portion continuing to Mexico. With a capacity of over 26,000 cubic feet per second (740 m3/s), the All-American Canal is the largest irrigation canal in the world.[229] Because the hot, sunny climate lends to a year-round growing season, the Imperial Valley has become one of the most productive farming regions in North America, providing much of the winter produce supply in the U.S.[8] The Imperial Irrigation District supplies water to 520,000 acres (210,000 ha) south of the Salton Sea.[230] The Coachella Canal, which branches northward from the All-American Canal, irrigates another 78,000 acres (32,000 ha) in the Coachella Valley.[231]

Parker Dam was initially built as the diversion point for the Colorado River Aqueduct, planned by the Metropolitan Water District of Southern California to supply water to Los Angeles.[232] The construction of the dam was opposed by Arizona, which feared that California would take too much water from the Colorado; at one point, Arizona sent members of its National Guard to stop work on the dam. Ultimately, a compromise was reached, with Arizona dropping its objections in exchange for the USBR constructing the Gila Project, which irrigates 110,000 acres (450 km2) on the Arizona side of the river.[233] By 1941, the 241-mile (388 km) long Colorado River Aqueduct was completed, delivering 1.2 million acre-feet (1.5 km3) of water west to Southern California. The aqueduct enabled the continued growth of Los Angeles and its suburbs, and provides water to about 10 million people today.[234] The San Diego Aqueduct, which branches off from the Colorado River Aqueduct in Riverside County, California, opened in stages between 1954–1971 and provides water to another 3 million people in the San Diego metro area.[235]

The Las Vegas Valley of Nevada experienced rapid growth after Hoover Dam, and by 1937 Las Vegas had tapped a pipeline into Lake Mead. Nevada officials, believing that groundwater resources in the southern part of the state were sufficient for future growth, were more concerned with securing a large amount of the dam's power supply than water from the Colorado; thus they settled for the smallest water allocation of all the states in the Colorado River Compact.[236] In 2018, due to declining water levels in Lake Mead, a second pipeline was completed with a lower intake elevation.

Colorado River Storage Project

In the first half of the 20th century, the Upper Basin states, with the exception of Colorado, had developed very little of their water allocations from the Colorado River Compact. By the 1950s, however, water demand was rapidly increasing in Utah's Wasatch Front (Salt Lake City metro area) and the Rio Grande Valley of New Mexico, which both began exploring ways to divert water from the Colorado Basin.[237] The Upper Basin states were concerned that they would not be able to use their full Compact allocations due to increasing water demands in the Lower Basin. The Compact requires the Upper Basin to deliver a minimum annual flow of 7.5 million acre-feet (9.3×109 m3) past Lee's Ferry (measured on a 10-year rolling average). Without additional reservoir storage, the Upper Basin states could not utilize their allocations without impacting water deliveries to the Lower Basin in dry years.[238]

 
Glen Canyon Dam, the largest dam of the Colorado River Storage Project

In 1956 Congress authorized the USBR to construct the Colorado River Storage Project (CRSP), which planned several large reservoirs on the upper Colorado, Green, Gunnison and San Juan Rivers.[238] The initial blueprints for the CRSP included two dams on the Green River within Echo Park Canyon in Dinosaur National Monument – a move criticized by both the National Park Service and environmental groups such as the Sierra Club. The controversy received nationwide media attention, and the USBR dropped its plans for the Dinosaur dams in exchange for increasing the size of a proposed dam at Glen Canyon.[239]

The controversy associated with Glen Canyon Dam did not build momentum until construction was well underway. Due to Glen Canyon's remote location, most of the American public did not even know of its existence; the few who did contended that it had much greater scenic value than Echo Park. Sierra Club leader David Brower fought the dam both during the construction and for many years afterwards until his death in 2000. Brower believed that he was personally responsible for the failure to prevent Glen Canyon's flooding, calling it his "greatest mistake, greatest sin".[240][241]

In addition to Glen Canyon Dam, the CRSP includes the Flaming Gorge Dam on the Green River, the Blue Mesa, Morrow Point and Crystal Dams on the Gunnison River, and the Navajo Dam on the San Juan River. A total of 22 "participating projects" (of which 16 have been constructed) were later authorized in order to develop local water supplies at various locations across the Upper Basin states.[238] These include the Central Utah Project, which delivers 102,000 acre-feet (126,000,000 m3) per year from the Green River basin to the Wasatch Front, and the San Juan–Chama Project, which diverts 110,000 acre-feet (140,000,000 m3) per year from the San Juan River to the Rio Grande Valley. Both are multi-purpose projects serving a variety of agricultural, municipal and industrial uses.[242][243]

Pacific Southwest Water Plan

 
The main canal of the Central Arizona Project, crossing the Sonoran Desert

By the middle of the 20th century, planners were concerned that continued growth in water demand would outstrip the available water supply from the Colorado River. After exploring a multitude of potential projects, the USBR published a study in January 1964 known as the Pacific Southwest Water Plan, which proposed diverting water from the northwestern United States into the Colorado River basin.[244] Arizona's water allocation was a significant focus of the plan, due to the growing concern that its water supply could be curtailed due to California's seniority of water rights. In addition, the plan would guarantee full water supplies to Nevada, California and Mexico, allowing the Upper Basin states to utilize their full allocations without risking reductions in the Lower Basin.[244] The project would cost an estimated $3.1 billion.[245]

The first stage of this plan would divert water from Northern California's Trinity, Klamath and Eel Rivers to Southern California, allowing more Colorado River water to be used, by exchange, in Arizona. A canal system, which ultimately would become the Central Arizona Project (CAP), would be constructed to deliver Arizona's Colorado River allocation to Phoenix and Tucson, both located far away from the Colorado River in the middle of the state. At this point, central Arizona was still entirely dependent on local water supplies, such as the 1911 Theodore Roosevelt Dam,[246] and was quickly running out of surplus water.[244]

In order to supply the massive amount of power required to pump Colorado River water to central Arizona, two hydroelectric dams were proposed in the Grand Canyon (Bridge Canyon Dam and Marble Canyon Dam), which while not directly located in Grand Canyon National Park, would greatly impact flows of the Colorado River through the park.[244] With the controversy over Glen Canyon Dam still ongoing, the public pressure against these dams was immense.[245] As a result, the two Grand Canyon dams were omitted from the final CAP authorization in 1968.[247] In addition, the boundaries of Grand Canyon National Park were redrawn to prevent future dam projects in the area. The pumping power was replaced by the building of the coal-fired Navajo Generating Station near Page, Arizona, in 1976.[248][249][250] In 2019, the Navajo Generating Station ceased operation.[251]

The CAP was constructed in stages from 1973 to 1993, ultimately extending 336 miles (541 km) from the Colorado River at Parker Dam to Tucson, Arizona. It delivers 1.4 million acre-feet (1.7 km3) of water per year, irrigates 830,000 acres (3,400 km2) of farmland and provides municipal water to about 5 million people.[248] Due to environmental concerns, most of the facilities proposed in the Pacific Southwest Water Plan were never built (though a smaller version of the Trinity River project was constructed as part of the unrelated Central Valley Project),[252] leaving Arizona and Nevada vulnerable to future water reductions under the Compact.[253]

Uncertain future

[The Colorado is] a 'deficit' river, as if the river were somehow at fault for its overuse.

When the Colorado River Compact was drafted in the 1920s, it was based on barely 30 years of streamflow records that suggested an average annual flow of 17.5 million acre-feet (21.6 km3) past Lee's Ferry.[255] Modern studies of tree rings revealed that those three decades were probably the wettest in the past 500 to 1,200 years and that the natural long-term annual flow past Lee's Ferry is probably closer to 13.5 million acre-feet (16.7 km3),[256][n 8] with a natural flow at the mouth around 16.3 million acre-feet (20.1 km3).[3] This has resulted in more water being allocated to river users than actually exists in the Colorado.[258] Droughts have exacerbated the issue of water over-allocation.[259][260]

 
Lake Mead in 2010, showing the "bathtub ring" left behind by low water levels

The most severe drought on record, the southwestern North American megadrought, began in the early 21st century, in which the river basin has produced above-average runoff in only five years between 2000 and 2021.[261] The region is experiencing a warming trend, which is accompanied by earlier snowmelt, lower precipitation and greater evapotranspiration. A 2004 study showed that a 1–6 percent decrease of precipitation would lead to runoff declining by as much as 18 percent by 2050.[262]

Since 2000, reservoir levels have fluctuated greatly from year to year, but have experienced a steady long-term decline.[263] The particularly dry spell between 2000 and 2004 brought Lake Powell to just a third of capacity in 2005, the lowest level on record since initial filling in 1969.[264] In late 2010, Lake Mead was approaching the "drought trigger" elevation of 1,075 feet (328 m), at which water supplies to Arizona and Nevada would be reduced in accordance with the Colorado River Compact.[265] Due to Arizona and Nevada's water rights being junior to California's, their allocations can legally be cut to zero before any reductions are made on the California side.[258][266]

A wet winter in 2011 temporarily raised lake levels,[267][268] but dry conditions returned in the next two years.[269] In 2014, the Bureau of Reclamation cut releases from Lake Powell by 10 percent —the first such reduction since the 1960s, when Lake Powell was being filled for the first time.[270] This resulted in Lake Mead dropping to its lowest recorded level since 1937, when it was first being filled.[271]

Water year 2018 had a much lower-than-average snowpack.[272][273] In July 2021, after two more extremely dry winters, Lake Powell fell below the previous low set in 2005. In response, the Bureau of Reclamation began releasing water from upstream reservoirs in order to keep Powell above the minimum level for hydropower generation.[274][275] Lake Mead fell below the 1,075-foot (328 m) level expected to trigger federally mandated cuts to Arizona and Nevada's water supplies for the first time in history, and is expected to continue declining into 2022.[276]

On August 16, 2021, the Bureau of Reclamation released the Colorado River Basin August 2021 24-Month Study, and for the first time declared a shortage and that because of "ongoing historic drought and low runoff conditions in the Colorado River Basin, downstream releases from Glen Canyon Dam and Hoover Dam will be reduced in 2022 due to declining reservoir levels."[277] The Lower Basin reductions will reduce the annual apportionments – Arizona's by 18 percent, Nevada's by 7 percent, and Mexico's by 5 percent.[278]

On June 14, 2022, Bureau of Reclamation Commissioner Camille Touton told the Senate Committee on Energy and Natural resources that additional cuts of 2-4 million acre-feet were required to stabilize reservoir levels in 2023. Touton warned that if states were unable to negotiate the requisite cuts the Interior department may use its legal authority to cut releases.[279] When the states were unable to come to an agreement about how to share the proposed cuts, Reclamation began the legal steps to unilaterally reduce releases from Hoover and Glen Canyon Dams in 2023.[280] As of December 2022 the lower basin states of Nevada, Arizona, and California had not agreed on how to reduce water use by the approximately 30% required to keep levels in lakes Mead and Powell from crashing.[281] The Bureau of Reclamation has projected that water levels at Lake Powell could fall low enough that by July 2023 Glen Canyon dam would no longer be able to generate any hydropower.[282]

Ecology

Wildlife and plants

 
Heavily forested banks of the Colorado River near Topock, Arizona

The Colorado River and its tributaries often nourish extensive corridors of riparian growth as they traverse the arid desert regions of the watershed. Although riparian zones represent a relatively small proportion of the basin and have been affected by engineering projects and river diversion in many places, they have the greatest biodiversity of any habitat in the basin.[283] The most prominent riparian zones along the river occur along the lower Colorado below Davis Dam,[284] especially in the Colorado River Delta, where riparian areas support 358 species of birds despite the reduction in freshwater flow and invasive plants such as tamarisk (salt cedar).[285] Reduction of the delta's size has also threatened animals such as jaguars and the vaquita porpoise, which is endemic to the gulf.[286] Human development of the Colorado River has also helped to create new riparian zones by smoothing the river's seasonal flow, notably through the Grand Canyon.[287]

More than 1,600 species of plants grow in the Colorado River watershed, ranging from the creosote bush, saguaro cactus, and Joshua trees of the Sonoran and Mojave Deserts to the forests of the Rocky Mountains and other uplands, composed mainly of ponderosa pine, subalpine fir, Douglas-fir and Engelmann spruce.[63] Before logging in the 19th century, forests were abundant in high elevations as far south as the Mexico–U.S. border, and runoff from these areas nourished abundant grassland communities in river valleys. Some arid regions of the watershed, such as the upper Green River valley in Wyoming, Canyonlands National Park in Utah and the San Pedro River valley in Arizona and Sonora, supported extensive reaches of grassland roamed by large mammals such as buffalo and antelope as late as the 1860s. Near Tucson, Arizona, "where now there is only powder-dry desert, the grass once reached as high as the head of a man on horse back".[288]

Rivers and streams in the Colorado basin were once home to 49 species of native fish, of which 42 were endemic. Engineering projects and river regulation have led to the extinction of four species and severe declines in the populations of 40 species.[289] Bonytail chub, razorback sucker, Colorado pikeminnow, and humpback chub are among those considered the most at risk; all are unique to the Colorado River system and well adapted to the river's natural silty conditions and flow variations. Clear, cold water released by dams has significantly changed characteristics of habitat for these and other Colorado River basin fishes.[290] A further 40 species that occur in the river today, notably the brown trout, were introduced during the 19th and 20th centuries, mainly for sport fishing.[291]

Environmental impacts

 
The Colorado was named for the reddish color caused by its natural sediment loads, but damming the river has caused it to acquire a clear green hue as seen here in lower Glen Canyon.

Historically, the Colorado transported from 85 to 100 million short tons (77,000,000 to 91,000,000 t) of sediment or silt to the Gulf of California each year – second only to the Mississippi among North American rivers.[292] This sediment nourished wetlands and riparian areas along the river's lower course, particularly in its 3,000-square-mile (7,800 km2) delta, once the largest desert estuary on the continent.[293] Currently, the majority of sediments carried by the Colorado River are deposited at the upper end of Lake Powell, and most of the remainder ends up in Lake Mead. Various estimates place the time it would take for Powell to completely fill with silt at 300 to 700 years. Dams trapping sediment not only pose damage to river habitat but also threaten future operations of the Colorado River reservoir system.[294]

Reduction in flow caused by dams, diversions, water for thermoelectric power stations,[295] and evaporation losses from reservoirs – the latter of which consumes more than 15 percent of the river's natural runoff[296]—has had severe ecological consequences in the Colorado River Delta and the Gulf of California. Historically, the delta with its large freshwater outflow and extensive salt marshes provided an important breeding ground for aquatic species in the Gulf. Today's desiccated delta, at only a fraction of its former size, no longer provides suitable habitat, and populations of fish, shrimp and sea mammals in the gulf have seen a dramatic decline.[197] Since 1963, the only times when the Colorado River has reached the ocean have been during El Niño events in the 1980s and 1990s.[297]

Reduced flows have led to increases in the concentration of certain substances in the lower river that have impacted water quality. Salinity is one of the major issues and also leads to the corrosion of pipelines in agricultural and urban areas.[298] The lower Colorado's salt content was about 50 parts per million (ppm) in its natural state,[197] but by the 1960s, it had increased to well over 2000 ppm.[299] By the early 1970s, there was also serious concern about salinity caused by salts leached from local soils by irrigation drainage water, which were estimated to add 10 million short tons (9,100,000 t) of excess salt to the river per year. The Colorado River Basin Salinity Control Act was passed in 1974, mandating conservation practices including the reduction of saline drainage. The program reduced the annual load by about 1.2 million short tons (1,100,000 t), but salinity remains an ongoing issue.[300] In 1997, the USBR estimated that saline irrigation water caused crop damages exceeding $500 million in the U.S. and $100 million in Mexico. Further efforts have been made to combat the salt issue in the lower Colorado, including the construction of a desalination plant at Yuma.[301] In 2011, the seven U.S. states agreed upon a "Plan of Implementation", which aims to reduce salinity by 644,000 short tons (584,000 t) per year by 2030.[300] In 2013, the Bureau of Reclamation estimated that around $32 million was spent each year to prevent around 1.2 million tons of salt from entering and damaging the Colorado River.[298]

Agricultural runoff containing pesticide residues has also been concentrated in the lower river in greater amounts. This has led to fish kills; six of these events were recorded between 1964 and 1968 alone.[302] The pesticide issue is even greater in streams and water bodies near agricultural lands irrigated by the Imperial Irrigation District with Colorado River water. In the Imperial Valley, Colorado River water used for irrigation overflows into the New and Alamo rivers and into the Salton Sea. Both rivers and the sea are among the most polluted bodies of water in the United States, posing dangers not only to aquatic life but to contact by humans and migrating birds.[303][304] Pollution from agricultural runoff is not limited to the lower river; the issue is also significant in upstream reaches such as Colorado's Grand Valley, also a major center of irrigated agriculture.[305]

Large dams such as Hoover and Glen Canyon typically release water from lower levels of their reservoirs, resulting in stable and relatively cold year-round temperatures in long reaches of the river. The Colorado's average temperature once ranged from 85 °F (29 °C) at the height of summer to near freezing in winter, but modern flows through the Grand Canyon, for example, rarely deviate significantly from 46 °F (8 °C).[306] Changes in temperature regime have caused declines of native fish populations, and stable flows have enabled increased vegetation growth, obstructing riverside habitat.[307] These flow patterns have also made the Colorado more dangerous to recreational boaters; people are more likely to die of hypothermia in the colder water, and the general lack of flooding allows rockslides to build up, making the river more difficult to navigate.[308]

Minute 319

In the 21st century, there has been renewed interest in restoring a limited water flow to the delta. In November 2012, the U.S. and Mexico reached an agreement, known as Minute 319, permitting Mexico storage of its water allotment in U.S. reservoirs during wet years, thus increasing the efficiency with which the water can be used. In addition to renovating irrigation canals in the Mexicali Valley to reduce leakage, this will make about 45,000 acre-feet (56,000,000 m3) per year available for release to the delta on average. The water will be used to provide both an annual base flow and a spring "pulse flow" to mimic the river's original snowmelt-driven regime.[309][310] The first pulse flow, an eight-week release of 105,000 acre-feet (130,000,000 m3), was initiated on March 21, 2014, with the aim of revitalising 2,350 acres (950 hectares) of wetland.[311] This pulse reached the sea on May 16, 2014, marking the first time in 16 years that any water from the Colorado flowed into the ocean, and was hailed as "an experiment of historic political and ecological significance" and a landmark in U.S.–Mexican cooperation in conservation.[11][312][313] The pulse will be followed by the steady release of 52,000 acre-feet (64,000,000 m3) over the following three years, just a small fraction of its average flow before damming.[311][needs update]

Recreation

 
A rafting party on the Colorado River

Famed for its dramatic rapids and canyons, the Colorado is one of the most desirable whitewater rivers in the United States, and its Grand Canyon section—run by more than 22,000 people annually[314]—has been called the "granddaddy of rafting trips".[315] Grand Canyon trips typically begin at Lee's Ferry and take out at Diamond Creek or Lake Mead; they range from one to eighteen days for commercial trips and from two to twenty-five days for private trips.[316] Private (noncommercial) trips are extremely difficult to arrange because the National Park Service limits river traffic for environmental purposes; people who desire such a trip often have to wait more than 10 years for the opportunity.[317]

Several other sections of the river and its tributaries are popular whitewater runs, and many of these are also served by commercial outfitters. The Colorado's Cataract Canyon and many reaches in the Colorado headwaters are even more heavily used than the Grand Canyon, and about 60,000 boaters run a single 4.5-mile (7.2 km) section above Radium, Colorado, each year.[318] The upper Colorado also includes many of the river's most challenging rapids, including those in Gore Canyon, which is considered so dangerous that "boating is not recommended".[318] Another section of the river above Moab, known as the Colorado "Daily" or "Fisher Towers Section", is the most visited whitewater run in Utah, with more than 77,000 visitors in 2011 alone.[319] The rapids of the Green River's Gray and Desolation Canyons[320] and the less difficult "Goosenecks" section of the lower San Juan River are also frequently traversed by boaters.[321]

Eleven U.S. national parks—Arches, Black Canyon of the Gunnison, Bryce Canyon, Canyonlands, Capitol Reef, Grand Canyon, Mesa Verde, Petrified Forest, Rocky Mountain, Saguaro, and Zion—are in the watershed, in addition to many national forests, state parks, and recreation areas.[322] Hiking, backpacking, camping, skiing, and fishing are among the multiple recreation opportunities offered by these areas. Fisheries have declined in many streams in the watershed, especially in the Rocky Mountains, because of polluted runoff from mining and agricultural activities.[323] The Colorado's major reservoirs are also heavily traveled summer destinations. Houseboating and water-skiing are popular activities on Lakes Mead, Powell, Havasu, and Mojave, as well as Flaming Gorge Reservoir in Utah and Wyoming, and Navajo Reservoir in New Mexico and Colorado. Lake Powell and surrounding Glen Canyon National Recreation Area received more than two million visitors per year in 2007,[324] while nearly 7.9 million people visited Lake Mead and the Lake Mead National Recreation Area in 2008.[325] Colorado River recreation employs some 250,000 people and contributes $26 billion each year to the Southwest economy.[326]

See also

Explanatory notes

  1. ^ Discharge data is for Green River, Utah, 117.6 miles (189.3 km) upstream from the mouth. The stream gauge here measures flow from an area of 44,850 square miles (116,200 km2), representing about 93.2 percent of the basin.[46]
  2. ^ Before large irrigation and municipal diversions, the Gila River discharged about 1.3 million acre-feet (1.6 km3) per year,[43] which equals a flow of nearly 2,000 cubic feet per second (57 m3/s).
  3. ^ Discharge data is for Bluff, Utah, located about 113.5 miles (182.7 km) above the confluence with the Colorado. The gauge measures flow from an area of 23,000 square miles (60,000 km2), about 93.5 percent of the basin.[49]
  4. ^ Discharge data is for Littlefield, Arizona, about 66 miles (106 km) from the confluence with the Colorado, and also upstream of the confluence with its major tributary, the Muddy River. The gauge measures flow from an area of 5,090 square miles (13,200 km2), about 39.1 percent of the total basin.[56]
  5. ^ NIB = "Northerly International Boundary", or the point at which the Colorado begins to form the Mexico–U.S. border, south of Yuma. Also note that the SIB ("Southerly International Boundary") is the point at which the Colorado ceases to form the border and passes entirely into Mexico.
  6. ^ American population (9.7 million) calculated from statistics from the U.S. Census Bureau[96] and the State of Colorado.[97] The population in Mexico is about 3 million.[98]
  7. ^ The average discharge of the Colorado (Grand) River at Cisco, Utah, about 97 miles (156 km) upstream from the Green River confluence, is 7,181 cubic feet per second (203.3 m3/s); between here and the confluence, only a few small, intermittent tributaries join the river.[77] The Green River has an average discharge of 6,048 cubic feet per second (171.3 m3/s) as measured at Green River, Utah, about 117.6 miles (189.3 km) above the confluence;[46] below here the only major tributary is the San Rafael River, which contributes an average of 131 cubic feet per second (3.7 m3/s), resulting in a total of 6,169 cubic feet per second (174.7 m3/s), still significantly lower than the discharge of the Colorado at their confluence.[195]
  8. ^ The discrepancy between the natural flow at Lee's Ferry (13.5 million acre-feet or 16.65 km3) and the gauged flow between 1922 and 2020 (10.58 million acre-feet or 13.05 km3)[83] is mostly due to water diversions above Lee's Ferry and evaporation from reservoirs, especially Lake Powell.[257]

Citations

  1. ^ a b "Colorado River". Geographic Names Information System. United States Geological Survey, United States Department of the Interior. February 8, 1980. Retrieved February 18, 2012.
  2. ^ a b c d Kammerer, J.C. (May 1990). "Largest Rivers in the United States". U.S. Geological Survey. Retrieved July 2, 2010.
  3. ^ a b c d Nowak, Kenneth C. (April 2, 2012). (PDF). Center for Advanced Decision Support for Water and Environmental Systems. University of Colorado. p. 114. Archived from the original (PDF) on May 1, 2014. Retrieved July 11, 2013.
  4. ^ a b "USGS Gage #09424000 on the Colorado River near Topock, AZ – Daily Data". National Water Information System. U.S. Geological Survey. February 14, 1935. Retrieved April 21, 2012.
  5. ^ a b Wiltshire, Gilbert & Rogers 2010, p. 102.
  6. ^ . Colorado River Streamflow: A Paleo Perspective. Western Water Assessment. Archived from the original on April 29, 2012.
  7. ^ a b Waterman, Jonathan (February 15, 2012). "Where the Colorado Runs Dry". The New York Times. Retrieved October 14, 2014.
  8. ^ a b "Imperial Valley". Encyclopædia Britannica. 1995.
  9. ^ "San Juan - Chama Project". Retrieved August 23, 2021.
  10. ^ Diaz, Henry F.; Anderson, Craig A. (November 28, 2003). . Impact of Climate Change and Land Use in the Southwestern United States. U.S. Geological Survey. Archived from the original on March 9, 2012.
  11. ^ a b Postel, Sandra (May 19, 2014). "A Sacred Reunion: The Colorado River Returns to the Sea". National Geographic. Retrieved May 19, 2021.
  12. ^ "La Poudre Pass". Geographic Names Information System. United States Geological Survey, United States Department of the Interior. October 13, 1978. Retrieved March 12, 2012.
  13. ^ Lindberg 2009, p. 38.
  14. ^ Benke & Cushing 2005, p. 490.
  15. ^ a b Pitlick, John; Cress, Robert (March 2000). (PDF). University of Colorado. Archived from the original (PDF) on December 4, 2012. Retrieved March 12, 2012.
  16. ^ U.S. Geological Survey. "United States Geological Survey Topographic Maps: Fall River Pass, Colorado quad". TopoQuest. Retrieved June 24, 2013.
  17. ^ U.S. Geological Survey. "United States Geological Survey Topographic Maps: Westwater, Utah quad". TopoQuest. Retrieved July 14, 2013.
  18. ^ (PDF). Remediation of the Moab Uranium Mill Tailings, Grand and San Juan Counties, Utah Final Environmental Impact Statement. Moab, Utah, UMTRA Project. p. 28. Archived from the original (PDF) on October 15, 2011.
  19. ^ Rigby, J. Keith; Hamblin, W. Kenneth; Matheny, Ray; Welsh, Stanley L. (1971). (PDF). Brigham Young University Geology Studies Volume 18 – Part 2. Brigham Young University. Archived from the original (PDF) on April 2, 2015. Retrieved July 14, 2013.
  20. ^ Hopkins 2002, p. 118.
  21. ^ Van Cott 1990, p. 70.
  22. ^ Van Cott 1990, p. 155.
  23. ^ "Rivers". Canyonlands National Park. U.S. National Park Service. June 17, 2011. Retrieved February 19, 2012.
  24. ^ . Colorado River Storage Project. U.S. Bureau of Reclamation. November 4, 2008. Archived from the original on September 21, 2012. Retrieved February 19, 2012.
  25. ^ Rusho, W.L. (1992). . Utah History Encyclopedia. University of Utah. Archived from the original on January 9, 2013. Retrieved February 19, 2012.
  26. ^ . U.S. National Park Service. Archived from the original on October 23, 2013. Retrieved July 14, 2013.
  27. ^ Leopold, Luna B. "The Rapids and the Pools – Grand Canyon" (PDF). Geological Survey Professional Paper 669–D. U.S. Geological Survey. p. 133. Retrieved November 2, 2013.
  28. ^ a b . U.S. Bureau of Reclamation. December 2008. Archived from the original on May 20, 2012. Retrieved February 19, 2012.
  29. ^ . American Society of Civil Engineers. Archived from the original on March 27, 2013. Retrieved July 14, 2013.
  30. ^ (PDF). Arizona Cooperative Extension. University of Arizona. August 2010. Archived from the original (PDF) on October 21, 2011. Retrieved July 14, 2013.
  31. ^ (PDF). Draft Environmental Impact Statement: Allocation of Water Supply and Long-Term Contract Execution, Central Arizona Project. U.S. Bureau of Reclamation. Archived from the original (PDF) on January 20, 2013. Retrieved April 4, 2012.
  32. ^ U.S. Geological Survey. "United States Geological Survey Topographic Maps: Blythe NE, California quad". TopoQuest. Retrieved July 14, 2013.
  33. ^ Gupta 2007, p. 204.
  34. ^ Alles, David L., ed. (October 28, 2011). "The Lower Colorado River" (PDF). Biology Department. Western Washington University. Retrieved July 14, 2013.
  35. ^ "Fighting For Water in Arid Imperial Valley". National Public Radio. February 10, 2011. Retrieved February 19, 2012.
  36. ^ "Border Water Source of Conflict and Cooperation: What Makes Management of Border Water Resources a Challenge?" (PDF). Arroyo. University of Arizona. 2012. Retrieved July 14, 2013.
  37. ^ Valdes-Casillas, Carlos; et al. (August 1998). "Information Database and Local Outreach Program for the Restoration of the Hardy River Wetlands, Lower Colorado River Delta, Baja California and Sonora, Mexico". San Diego State University. Retrieved February 19, 2012.
  38. ^ Brian Clark Howard (March 24, 2014). "Historic "Pulse Flow" Brings Water to Parched Colorado River Delta". National Geographic.
  39. ^ Chanson, Hubert (2009). Environmental, Ecological and Cultural Impacts of Tidal Bores, Benaks, Bonos and Burros. Proceedings of the International Workshop on Environmental Hydraulics IWEH09, Theoretical, Experimental and Computational Solutions. University of Queensland.
  40. ^ Felger & Broyles 2007, pp. 519–520.
  41. ^ . Wyoming State Water Plan. February 2001. Archived from the original on November 25, 2011. Retrieved February 25, 2012.
  42. ^ a b c d e f g h i "Boundary Descriptions and Names of Regions, Subregions, Accounting Units and Cataloging Units". U.S. Geological Survey. Retrieved February 19, 2012.
  43. ^ a b Benke & Cushing 2005, p. 514.
  44. ^ Benke & Cushing 2005, pp. 532–533.
  45. ^ . Utah Rivers Council. Archived from the original on May 14, 2012. Retrieved February 26, 2012.
  46. ^ a b c "USGS Gage #09315000 on the Green River at Green River, UT" (PDF). National Water Information System. U.S. Geological Survey. 1895–2010. Retrieved February 26, 2012.
  47. ^ "USGS Gage #09520000 on the Gila River near Dome, AZ" (PDF). National Water Information System. U.S. Geological Survey. 1905–2011. Retrieved February 26, 2012.
  48. ^ a b The National Map June 30, 2016, at the Wayback Machine. U.S. Geological Survey. Accessed February 25, 2012
  49. ^ a b "USGS Gage #09379000 on the San Juan River near Bluff, UT" (PDF). National Water Information System. U.S. Geological Survey. 1914–2010. Retrieved February 26, 2012.
  50. ^ (PDF). Arizona Navigable Stream Adjudication Commission. 2005. Archived from the original (PDF) on April 22, 2010. Retrieved February 26, 2012.
  51. ^ "USGS Gage #09402300 on the Little Colorado River Above the Mouth near Desert View, AZ" (PDF). National Water Information System. U.S. Geological Survey. 1990–2010. Retrieved February 26, 2012.
  52. ^ Fielder 2002, p. 403.
  53. ^ "USGS Gage #09180000 on the Dolores River near Cisco, UT" (PDF). National Water Information System. U.S. Geological Survey. 1950–2010. Retrieved February 26, 2012.
  54. ^ "USGS Gage #09152000 on the Gunnison River near Grand Junction, CO" (PDF). National Water Information System. U.S. Geological Survey. 1897–2010. Retrieved February 26, 2012.
  55. ^ Annerino 1999, p. 8.
  56. ^ a b "USGS Gage #09415000 on the Virgin River at Littlefield, AZ" (PDF). National Water Information System. U.S. Geological Survey. 1929–2010. Retrieved February 26, 2012.
  57. ^ a b Wiltshire, Gilbert & Rogers 2010, pp. 101–102.
  58. ^ Leopold 1994, p. 267.
  59. ^ Committee to Review the Glen Canyon Environmental Studies 1996, p. 51.
  60. ^ "USGS Gage #09421500 on the Colorado River below Hoover Dam". National Water Information System. U.S. Geological Survey. 1934–2011. Retrieved October 19, 2012.
  61. ^ a b c d "Climatic Fluctuations, Drought, and Flow in the Colorado River Basin". USGS Fact Sheet 2004-3062. U.S. Geological Survey. August 2004. Retrieved April 17, 2012.
  62. ^ "For A Few Weeks The Colorado River Reached The Ocean. Will It Happen Again?". KPBS Public Media. February 19, 2018. Retrieved February 27, 2022.
  63. ^ a b Benke & Cushing 2005, p. 488.
  64. ^ Preston, Ben (March 22, 2010). "The Risky Business of Slicing the Pie". Miller–McCune. Retrieved June 27, 2013.
  65. ^ Wahl, Kenneth L.; Collins, Dannie L.; Aldridge, Byron N. (PDF). Western Snow Conference. Archived from the original (PDF) on July 14, 2012.
  66. ^ Cohen, Michael J.; Henges-Jeck, Christine; Castillo-Moreno, Gerardo (2001). "A Preliminary Water Balance for the Colorado River Delta, 1992–1998" (PDF). Journal of Arid Environments. 49 (1): 35–48. Bibcode:2001JArEn..49...35C. doi:10.1006/jare.2001.0834. Retrieved June 27, 2013.
  67. ^ Zimmerman, Janet (October 6, 2010). . The Press-Enterprise. Riverside, California. Archived from the original on January 20, 2013. Retrieved February 18, 2012.
  68. ^ Stark, Mike (April 21, 2009). "Study: Shortages Likely on Colorado River by 2050". USA Today. Associated Press. Retrieved June 27, 2013.
  69. ^ Hoerling, Martin; Eischeid, Jon. (PDF). Western Water Assessment. Archived from the original (PDF) on June 9, 2010.
  70. ^ McKinnon, Shaun (August 9, 2006). "Mines, Farms Put Gila River on Life Support: Despite Lack of Regulation, Some Trying to Restore River to Its Natural Beauty and Wonder". Arizona Republic. Retrieved February 19, 2012.
  71. ^ a b "Water-Year Summary for Site USGS 09522000 Colorado River at Northerly International Boundary, above Morelos Dam, near Andrade, CA". National Water Information System. U.S. Geological Survey. 1950–2020. Retrieved May 17, 2021.
  72. ^ . Colorado River Water Users Association. Archived from the original on November 4, 2013. Retrieved November 2, 2013.
  73. ^ Christensen, Niklas S.; Wood, Andrew W.; Voisin, Nathalie; Lettenmaier, Dennis P.; Palmer, Richard N. (2004). (PDF). Climatic Change. 62 (337–363): 345. doi:10.1023/b:clim.0000013684.13621.1f. S2CID 53533021. Archived from the original (PDF) on May 1, 2014. Retrieved July 13, 2013.
  74. ^ "USGS Gage #09522200 on the Colorado River at NIB, Above Morelos Dam, AZ – Annual Statistics". National Water Information System. U.S. Geological Survey. 1951–1992. Retrieved April 27, 2012.
  75. ^ "Water-Year Summary for Site USGS 09010500 Colorado River below Baker Gulch near Grand Lake, CO". National Water Information System. U.S. Geological Survey. 1953–2020. Retrieved May 17, 2021.
  76. ^ "Water-Year Summary for Site USGS 09070500 Colorado River near Dotsero, CO". National Water Information System. U.S. Geological Survey. 1941–2020. Retrieved May 17, 2021.
  77. ^ a b "Water-Year Summary for Site USGS 09180500 Colorado River near Cisco, UT". National Water Information System. U.S. Geological Survey. 1914–2020. Retrieved May 17, 2021.
  78. ^ a b c "Water-Year Summary for Site USGS 09380000 Colorado River at Lees Ferry, AZ". National Water Information System. U.S. Geological Survey. 1922–2020. Retrieved May 17, 2021.
  79. ^ "Water-Year Summary for Site USGS 09423000 Colorado River below Davis Dam, AZ–NV". National Water Information System. U.S. Geological Survey. 1905–2020. Retrieved May 17, 2021.
  80. ^ "Water-Year Summary for Site USGS 09427520 Colorado River below Parker Dam, AZ–CA". National Water Information System. U.S. Geological Survey. 1935–2020. Retrieved May 17, 2021.
  81. ^ "Water-Year Summary for Site USGS 09429600 Colorado River below Laguna Dam, AZ–CA". National Water Information System. U.S. Geological Survey. 1972–2020. Retrieved May 17, 2021.
  82. ^ "USGS Surface-Water Annual Statistics for USA Grouped by Hydrologic Unit". National Water Information System. U.S. Geological Survey. Retrieved February 26, 2012.
  83. ^ a b "USGS Gage #09380000 on the Colorado River at Lee's Ferry, AZ". National Water Information System. U.S. Geological Survey. 1921–2010. Retrieved April 21, 2012.
  84. ^ a b c Benke & Cushing 2005, pp. 483–486.
  85. ^ a b c d "Watersheds (map)". Commission for Environmental Cooperation. 2006. Archived from the original on April 14, 2008.
  86. ^ a b c d "Current Understanding of Colorado River Basin Climate and Hydrology" (PDF). Western Water Assessment. April 2020. Retrieved May 24, 2022.
  87. ^ . University of Texas. 1975. Archived from the original on November 7, 2011. Retrieved February 19, 2012.
  88. ^ Fassnacht, S.R. (2004). (PDF). Eastern Snow Conference. Archived from the original (PDF) on June 23, 2012. Retrieved February 19, 2012.
  89. ^ "Lees Ferry (historical)". Geographic Names Information System. United States Geological Survey, United States Department of the Interior. February 8, 1980. Retrieved May 25, 2022.
  90. ^ "Annual Report on the Salton Sea Management Program" (PDF). California Natural Resources Agency. March 2021. Retrieved May 26, 2022.
  91. ^ a b c d Singh, Ramesh K.; Senay, Gabriel B.; Velpuri, Naga Manohar; Kagone, Stephanie (January 2014). "Actual Evapotranspiration (Water Use) Assessment of the Colorado River Basin at the Landsat Resolution Using the Operational Simplified Surface Energy Balance Model". Remote Sensing. 6 (1): 233–256. doi:10.3390/rs6010233.
  92. ^ Benke & Cushing 2005, pp. 483–489.
  93. ^ Baker Jr., Malchus B.; Ffolliott, Peter F. (2000). "Contributions of Watershed Management Research to Ecosystem-Based Management in the Colorado River Basin" (PDF). USDA Forest Service Proceedings RMRS–P–13. U.S. Forest Service. Retrieved June 24, 2013.
  94. ^ "Climate and Hydrology of the Colorado River Basin Region". National Academies Press. 2007. Retrieved May 23, 2022.
  95. ^ Features and Dynamics of Colorado River Basin Climate. Colorado River Basin Water Management: Evaluating and Adjusting to Hydroclimatic Variability. National Academies Press. 2007. doi:10.17226/11857. ISBN 978-0-309-10524-8. Retrieved February 19, 2012.
  96. ^ . U.S. Census Bureau. Archived from the original on March 4, 2012. Retrieved March 4, 2012.
  97. ^ . Colorado Data Book. State of Colorado. September 2007. Archived from the original (PDF) on January 20, 2013.
  98. ^ "Colorado River Basin Salinity Control Program". Natural Resources Conservation Service. U.S. Department of Agriculture. July 12, 2010. Retrieved March 4, 2012.
  99. ^ "Colorado River Basin Water Management: Evaluating and Adjusting to Hydroclimatic Variability (Report in Brief)" (PDF). Division on Earth & Life Studies. National Academies. February 2007. Retrieved February 19, 2012.
  100. ^ Prisciantelli 2002, p. 56.
  101. ^ Cannon, Eric (April 28, 2002). . University of Colorado, Boulder. Archived from the original on July 16, 2012. Retrieved February 19, 2012.
  102. ^ Foos, Annabelle. (PDF). U.S. National Park Service. Archived from the original (PDF) on September 8, 2015. Retrieved February 19, 2012.
  103. ^ Martin-Barajas, Arturo; et al. (July 2009). "The Tectonic Evolution of the Gulf of California". Division of Geological and Planetary Sciences. California Institute of Technology. Retrieved February 19, 2012.
  104. ^ Young & Spamer 2001, p. 193.
  105. ^ Davis, Jim (January 2009). "Why Does a River Run Through It?". Survey Notes. Utah Geological Survey. 41 (1). Retrieved February 19, 2012.
  106. ^ Prisciantelli 2002, p. 62.
  107. ^ Alles, David L., ed. (October 28, 2011). "Geology of the Salton Trough" (PDF). Western Washington University. Retrieved February 29, 2012.
  108. ^ Buckles, Joseph E.; Krantz, Timothy. . Salton Sea Database Program. ESRI. Archived from the original on November 27, 2011. Retrieved February 19, 2012.
  109. ^ Fenton, Cassie; Webb, Bob. . Grand Canyon River Guides. Archived from the original on June 23, 2012. Retrieved February 19, 2012.
  110. ^ Rugg, Scott H.; Austin, Steven A. (August 1998). (PDF). Institute for Creation Research. Archived from the original (PDF) on January 21, 2012. Retrieved February 19, 2012.
  111. ^ Fenton, Cassandra R.; Poreda, Robert J.; Nash, Barbara P.; Webb, Robert H.; Cerling, Thure E.; et al. (2004). "Geochemical Discrimination of Five Pleistocene Lava-Dam Outburst-Flood Deposits, Western Grand Canyon, Arizona" (PDF). Journal of Geology. 112 (1): 91–110. Bibcode:2004JG....112...91F. doi:10.1086/379694. S2CID 53339467. Retrieved February 19, 2012.
  112. ^ Fenton, Cassandra R.; Webb, Robert H; Cerling, Thure E. (May 6, 2005). (PDF). Quaternary Research. U.S. Geological Survey. 65 (2): 324. Bibcode:2006QuRes..65..324F. doi:10.1016/j.yqres.2005.09.006. S2CID 128533268. Archived from the original (PDF) on October 15, 2011. Retrieved February 19, 2012.
  113. ^ a b c d . Land Use History of North America. Northern Arizona University. Archived from the original on June 29, 2015. Retrieved April 9, 2012.
  114. ^ . U.S. Bureau of Land Management. August 31, 2009. Archived from the original on June 23, 2012. Retrieved April 9, 2012.
  115. ^ "Fremont Culture". Dinosaur National Monument. U.S. National Park Service. Retrieved April 9, 2012.
  116. ^ Vess, Deborah. . Georgia College and State University. Archived from the original on June 8, 2011.
  117. ^ . Land Use History of North America: Colorado Plateau. Northern Arizona University. p. 2. Archived from the original on February 14, 2015. Retrieved October 21, 2014.
  118. ^ Fisher, Richard D. (PDF). Grand Canyons of the Earth. Archived from the original (PDF) on May 12, 2013.
  119. ^ "History & Culture". Chaco Culture National Historic Park. U.S. National Park Service. Retrieved April 9, 2012.
  120. ^ . Evaluating Models of Chaco: A Virtual Conference. University of Colorado Boulder. Archived from the original on June 24, 2012. Retrieved April 9, 2012.
  121. ^ a b Howard, Jerry B. . WaterHistory.org. Archived from the original on January 24, 2012. Retrieved April 9, 2012.
  122. ^ Nobles 1998, p. 26.
  123. ^ Logan 2006, pp. 21–22.
  124. ^ a b . Tenthmil. Archived from the original on December 24, 2010.
  125. ^ Schwinning, Susan; Belnap, Jayne; Bowling, David R. & Ehleringer, James R. (2008). "Sensitivity of the Colorado Plateau to Change: Climate, Ecosystems and Society". Ecology and Society. 13 (2): 28. doi:10.5751/ES-02412-130228.
  126. ^ Andrews, John P.; Bostwick, Todd W. . Pueblo Grande Museum Archaeological Park. City of Phoenix. Archived from the original on May 8, 2012. Retrieved April 10, 2012.
  127. ^ Hopi Dictionary/Hopìikwa Lavàytutuveni:. Hopi-English Dictionary of the Third Mesa Dialect. The Hopi Dictionary Project. Tucson: University of Arizona Press, 1997.
  128. ^ Antone, Caroline. Piipayk m'iim. Salt River: Oʼodham Piipaash Language Program, 2000.
  129. ^ Gupta 2010, p. 362.
  130. ^ Hinton, Leanne (1984). A Dictionary of the Havasupai Language. Supai, Arizona: Havasupai Tribe. OCLC 12358778.
  131. ^ William Alan Shaterian (1983). Phonology and Dictionary of Yavapai (PhD dissertation). University of California, Berkeley. OCLC 13197420.
  132. ^ a b "Dine History and Facts". University of California, Irvine: Donald Bren School of Information and Computer Sciences. Archived from the original on December 11, 2012. Retrieved April 10, 2012.
  133. ^ "The Navajo: A Brief History" (PDF). The Navajo Nation Division of Economic Development. Retrieved April 10, 2012.
  134. ^ "California: Mohave". Southwest Indian Relief Council. Retrieved April 10, 2012.
  135. ^ . Land Use History of North America. Northern Arizona University. Archived from the original on February 5, 2012. Retrieved April 9, 2012.
  136. ^ a b Benke & Cushing 2005, p. 486.
  137. ^ a b Shaw, Anne Moore. . Salt River Pima-Maricopa Indian Community. Archived from the original on January 20, 2013. Retrieved April 10, 2012.
  138. ^ Pritzker 1998, p. 309.
  139. ^ "Navajo Nation". Indian Health Service. Retrieved April 10, 2012.
  140. ^ . Historic Documents. New Mexico State University. 1868. Archived from the original on March 11, 2002. Retrieved April 10, 2012.
  141. ^ "Navajo Nation – Facts at a Glance". The Navajo Nation. 2004. Retrieved April 10, 2012.
  142. ^ Kessel & Wooster 2005, p. 217.
  143. ^ . Tribal Library Census and Needs Assessment. California State University San Marcos. June 12, 2001. Archived from the original on May 14, 2013.
  144. ^ a b "About the Mohave, Chemehuevi, Hopi and Navajo Tribes". Colorado River Indian Tribes. 2009. Retrieved April 10, 2012.
  145. ^ (PDF). University of Arizona College of Agriculture and Life Sciences. Indian Country Extension. October 2008. Archived from the original (PDF) on January 20, 2013. Retrieved April 10, 2012.
  146. ^ . Colorado River Water Resources Association. Archived from the original on November 4, 2013. Retrieved November 2, 2013.
  147. ^ Voggesser, Garrit (2001). (PDF). Bureau of Reclamation History Program. U.S. Bureau of Reclamation. Archived from the original (PDF) on February 24, 2012. Retrieved April 10, 2012.
  148. ^ . U.S. Bureau of Reclamation. May 11, 2011. Archived from the original on September 25, 2012. Retrieved April 10, 2012.
  149. ^ Jenkins, Matt (February 21, 2011). "In Navajoland, a Contentious Water Deal Divides the Tribe". High Country News. Paonia, Colorado. Retrieved July 1, 2013.
  150. ^ . U.S. Geological Survey. March 28, 2006. Archived from the original on April 5, 2015. Retrieved February 19, 2012.
  151. ^ Axelrod & Phillips 2008, p. 4.
  152. ^ Lankford 2010, pp. 100–101.
  153. ^ Flint, Richard; Flint, Shirley Cushing. . New Mexico Office of the State Historian. Archived from the original on October 10, 2013.
  154. ^ Bolton 2017, pp. 440.
  155. ^ Gudde & Bright 2004, p. 50.
  156. ^ Dellenbaugh 1909, p. 60.
  157. ^ Rolle 1999, p. 54.
  158. ^ United States Army (August 11, 2005). "Report of the secretary of war, communicating ... a reconnoissance of the gulf of California and the Colorado river by Lieutenant Derby ..."
  159. ^ a b c d e f g Richard E. Lingenfelter (1978). (PDF). Tucson: University of Arizona Press. Archived from the original (PDF) on January 18, 2016.
  160. ^ "Overland Monthly and Out West Magazine". A. Roman and Company. August 11, 1895 – via Google Books.
  161. ^ Senate, United States Congress (August 11, 1854). Senate Documents, Otherwise Publ. as Public Documents and Executive Documents: 14th Congress, 1st Session-48th Congress, 2nd Session and Special Session – via Google Books.
  162. ^ Byrd H. Granger (1960). Arizona Place Names. University of Arizona Press. p. 21. Retrieved December 9, 2011.
  163. ^ "Report of an expedition down the Zuni and Colorado Rivers". Washington, B. Tucker, Senate Print. August 11, 1854 – via Internet Archive.
  164. ^ United States War Dept (August 11, 2005). "Reports of explorations and surveys, to ascertain the most practicable and economical route for a railroad from the Mississippi River to the Pacific Ocean".
  165. ^ "Autobiography and Reminiscence of George Alonzo Johnson, San Diego, 1901". oac.cdlib.org.
  166. ^ Ives, Joseph C. (August 11, 1861). "Report Upon the Colorado River of the West". U.S. Government Printing Office – via Google Books.
  167. ^ Dellenbaugh 1909, p. 170.
  168. ^ Schmidt 1993, p. 12.
  169. ^ Dolnick 2002, p. 5.
  170. ^ Leuchtenburg 2000, p. 360.
  171. ^ a b Dolnick 2002, p. 238.
  172. ^ "Three leave Powell's Grand Canyon expedition". This Day in History. History.com. Retrieved February 20, 2012.
  173. ^ . Geology of National Parks. U.S. Geological Survey. February 13, 2012. Archived from the original on March 11, 2012. Retrieved February 20, 2012.
  174. ^ Warburton, David L. (May 16, 2005). . Florida Atlantic University. Archived from the original on June 7, 2013.
  175. ^ Peterson, Richard H. (1979). "Book Review: Steamboats on the Colorado River: 1852–1916". San Diego Historical Society Quarterly. San Diego History Center. Retrieved March 1, 2012.
  176. ^ Wildfang 2005, pp. 21–31.
  177. ^ Cox, Christopher R. (July 2009). . Audubon Magazine. Archived from the original on June 3, 2013. Retrieved June 24, 2013.
  178. ^ Kjerfve, Björn; Ferreria, Hélder O. (April 1993). (PDF). Ciéncia y Cultura (Journal of the Brazilian Association for the Advancement of Science). Vol. 45, no. 2. Texas A&M University. pp. 135–137. Archived from the original (PDF) on March 4, 2016. Retrieved June 24, 2013.
  179. ^ Lingenfelter 1978, pp. 9–13.
  180. ^ a b Williams, O.A. (1937). (PDF). University of Arizona. Archived from the original (PDF) on January 20, 2013. Retrieved February 20, 2012.
  181. ^ Glass & Glass 1983, pp. 162–163.
  182. ^ a b "Lees Ferry History". Glen Canyon National Recreational Area. U.S. National Park Service. August 11, 2006. Retrieved February 20, 2012.
  183. ^ . Arizona State University. July 8, 2010. Archived from the original on June 3, 2012. Retrieved February 20, 2012.
  184. ^ Brown 1972, pp. 52–53.
  185. ^ Casey 2007, p. 251.
  186. ^ Lindberg 2009, pp. 134–135.
  187. ^ Kirkemo, Harold (May 21, 2007). "Prospecting for Gold in the United States". General Interest Publications. U.S. Geological Survey. Retrieved February 26, 2012.
  188. ^ Apodaca, Lori E.; Stephens, Verlin C.; Driver, Nancy E. (April 1996). "What Affects Water Quality in the Upper Colorado River Basin?" (PDF). National Water-Quality Assessment, Upper Colorado River Basin Fact Sheet FS–109–96. U.S. Geological Survey. Retrieved February 26, 2012.
  189. ^ Dwyer, John J. The Agrarian Dispute: The Expropriation of American-Owned Rural Land in Postrevolutionary Mexico. Durham: Duke University Press 2008
  190. ^ Kerig, Dorothy P. "Yankee Enclave: The Colorado River Land Company and Mexican Agrarian Reform in Baja California, 1902-1944." PhD diss. University of California, Irvine 1988.
  191. ^ Castillo-Muñoz, Verónica. The Other California: Land, Identities, and Politics on the Mexican Borderlands. Oakland: University of California Press 2017.
  192. ^ a b United States House of Representatives (1921). Renaming the Grand River, Colo (PDF). Hearing Before the Committee on Interstate and Foreign Commerce of the House of Representatives, Sixty Sixth Congress, Third Session, on HJ 460. p. 19.
  193. ^ Colorado River Water Conservation District (December 23, 2003). "Many Years Ago, the Colorado River Was Just Grand". SummitDaily. Retrieved January 5, 2008.
  194. ^ Barnes 1988, p. 104.
  195. ^ "USGS Gage #09328500 on the San Rafael River near Green River, Utah" (PDF). National Water Information System. U.S. Geological Survey. 1910–2012. Retrieved June 22, 2013.
  196. ^ a b "Colorado River Basin Water Supply and Demand Study" (PDF). U.S. Bureau of Reclamation. December 2012. Retrieved May 18, 2022.
  197. ^ a b c Davis, Eric F. (PDF). Michigan State University. Archived from the original (PDF) on October 1, 2004.
  198. ^ . Circle of Blue. September 22, 2010. Archived from the original on January 20, 2013. Retrieved October 8, 2012.
  199. ^ . Glen Canyon Dam Adaptive Management Program. November 18, 2010. Archived from the original on May 22, 2012. Retrieved May 12, 2012.
  200. ^ Waterman, Jonathan (August 11, 2010). . National Geographic. Archived from the original on March 24, 2012. Retrieved March 2, 2012.
  201. ^ Nabhan, Gary Paul (January 16, 2007). . Northern Arizona University. Archived from the original on December 25, 2011. Retrieved February 20, 2012.
  202. ^ Reisner 1993, p. 120.
  203. ^ . Southern Nevada Water Authority. Archived from the original on April 26, 2012. Retrieved February 20, 2012.
  204. ^ a b (PDF). U.S. Bureau of Reclamation. Archived from the original (PDF) on September 15, 2012. Retrieved February 20, 2012.
  205. ^ a b "Utilization of Waters of the Colorado and Tijuana Rivers and of the Rio Grande: Treaty Between the United States of America and Mexico" (PDF). International Boundary and Water Commission. February 3, 1944. Retrieved February 20, 2012.
  206. ^ "Colorado River". GOOD Magazine. Retrieved February 26, 2012.
  207. ^ "Big changes are coming for the Colorado River soon—and they could get messy". Environment. August 15, 2022. Retrieved August 16, 2022.
  208. ^ a b Anderson, Larry (May 2002). (PDF). Utah Division of Water Resources. Archived from the original (PDF) on April 9, 2014. Retrieved February 20, 2012.
  209. ^ . U.S. Bureau of Reclamation. March 2008. Archived from the original on June 26, 2012. Retrieved February 18, 2012.
  210. ^ "Dams Along the Lower Colorado River". U.S. Bureau of Reclamation. Retrieved May 18, 2022.
  211. ^ (PDF). Roaring Fork Watershed Plan. Roaring Fork Conservancy. Archived from the original (PDF) on January 20, 2013. Retrieved March 18, 2012.
  212. ^ (PDF). Colorado River District. July 2011. Archived from the original (PDF) on December 1, 2011. Retrieved March 18, 2012.
  213. ^ a b c Citizen's Guide to Colorado's Transbasin Diversions. Water Education Colorado. 2014.
  214. ^ "Transmountain Diversions". Roaring Fork Conservancy. Retrieved May 18, 2022.
  215. ^ . U.S. Bureau of Reclamation. October 18, 2011. Archived from the original on November 12, 2011. Retrieved February 20, 2012.
  216. ^ . Blue River Watershed Group. Archived from the original on March 29, 2012. Retrieved May 18, 2012.
  217. ^ Wahlstrom, Ernest E. (1974). "History of Geologic Investigations, Engineering Design, and Construction Methods of the Harold D. Roberts Tunnel, Colorado" (PDF). Geological Survey Professional Paper 831–A. U.S. Geological Survey. Retrieved May 18, 2012.
  218. ^ . U.S. Bureau of Reclamation. May 10, 2011. Archived from the original on August 27, 2014. Retrieved May 18, 2012.
  219. ^ "Williams Fork Reservoir". Denver Water. Retrieved May 18, 2022.
  220. ^ "Wolford Mountain Reservoir". Colorado River District. Retrieved May 18, 2022.
  221. ^ Billington, Jackson & Melosi 2005, p. 140.
  222. ^ a b Sperry, Robert L. (Winter 1975). "When The Imperial Valley Fought For Its Life". The Journal of San Diego History. San Diego History Center. 21 (1). Retrieved February 20, 2012.
  223. ^ Patten, McCaskie and Unitt, pp. 4–5
  224. ^ . Suburban Emergency Management Project. Archived from the original on July 18, 2011.
  225. ^ Billington, Jackson & Melosi 2005, pp. 141–142.
  226. ^ . U.S. Bureau of Reclamation. February 1, 2012. Archived from the original on October 11, 2012. Retrieved October 9, 2012.
  227. ^ . U.S. Bureau of Reclamation. January 2012. Archived from the original on May 14, 2012. Retrieved February 20, 2012.
  228. ^ "Boulder Canyon Project Act (1928)". National Archives. Retrieved May 18, 2022.
  229. ^ "All-American Canal, California–Mexico border". Earth Observatory. National Aeronautics and Space Administration. February 23, 2009. Retrieved February 20, 2012.
  230. ^ "About IID Water". Imperial Irrigation District. Retrieved May 18, 2022.
  231. ^ "CRBSCP - Coachella Canal Unit - Title I". U.S. Bureau of Reclamation. Retrieved May 18, 2022.
  232. ^ . Parker-Davis Project. U.S. Bureau of Reclamation. June 29, 2009. Archived from the original on September 27, 2012. Retrieved February 20, 2012.
  233. ^ Marie Bell, Tina (1997). (PDF). U.S. Bureau of Reclamation. Archived from the original (PDF) on February 24, 2012. Retrieved February 28, 2012.
  234. ^ . Los Angeles Department of Water and Power. Archived from the original on March 4, 2012. Retrieved February 28, 2012.
  235. ^ . U.S. Bureau of Reclamation. January 11, 2012. Archived from the original on March 16, 2012. Retrieved March 16, 2012.
  236. ^ . Colorado River Water Users Association. Archived from the original on November 4, 2013. Retrieved November 2, 2013.
  237. ^ Fradkin 1996, p. 191.
  238. ^ a b c "Colorado River Storage Project". U.S. Bureau of Reclamation. Retrieved May 18, 2022.
  239. ^ "Chapter IX: Dinosaur National Monument". A Survey of the Recreational Resources of the Colorado River Basin. U.S. National Park Service. September 6, 2004. Retrieved February 20, 2012.
  240. ^ . The End of Lake Powell Campaign. Colorado Riverkeeper. July 20, 2004. Archived from the original on December 28, 2013. Retrieved November 2, 2013.
  241. ^ . National Audubon Society. 2006. Archived from the original on January 20, 2013. Retrieved February 20, 2012.
  242. ^ "The Central Utah Project - An Overview". U.S. Department of the Interior. Retrieved May 18, 2022.
  243. ^ Glaser, Leah S. "San Juan-Chama Project". U.S. Bureau of Reclamation. Retrieved May 18, 2022.
  244. ^ a b c d "Pacific Southwest Water Plan" (PDF). U.S. Bureau of Reclamation. January 1964. Retrieved May 18, 2022.
  245. ^ a b "U.S. Plan for Dams on Colorado Under Fire by Conservationists; Interior Department Insists Projects Are Vital to Southwest's Development —National Battle Expected". The New York Times. March 15, 1964. Retrieved May 18, 2022.
  246. ^ . U.S. Bureau of Reclamation. March 2011. Archived from the original on September 25, 2012. Retrieved March 16, 2012.
  247. ^ Gerke, Sarah Bohl. "Bridge Canyon". Arizona State University. Retrieved May 18, 2022.
  248. ^ a b . U.S. Bureau of Reclamation. April 18, 2011. Archived from the original on June 13, 2011. Retrieved February 20, 2012.
  249. ^ Murdock, J. Neil (1996). . from Early History of the Colorado River Storage Project May 1971 U. S. Department of the Interior, Bureau of Reclamation. Grand Canyon River Guides. Archived from the original on May 25, 2017. Retrieved July 15, 2013.
  250. ^ . A Survey of the Recreational Resources of the Colorado River Basin. U.S. National Park Service. September 6, 2005. Archived from the original on November 6, 2013. Retrieved July 15, 2013.
  251. ^ "Navajo Generating Station, Project Information". Salt River Project. Retrieved May 18, 2022.
  252. ^ "Trinity River". U.S. Bureau of Reclamation. May 18, 2022.
  253. ^ Congressional Research Service (August 16, 2021). "Management of the Colorado River: Water Allocations, Drought, and the Federal Role" (PDF). Federation of American Scientists. Retrieved May 18, 2022.
  254. ^ Reisner 1993, p. 121.
  255. ^ Reisner 1993, p. 126.
  256. ^ Stahle, David W.; Fye, Falko K.; Therrell, Matthew D. (2003). "Interannual to Decadal Climate and Streamflow Variability Estimated from Tree Rings". Developments in Quaternary Science. Developments in Quaternary Sciences. 1: 491–504. doi:10.1016/S1571-0866(03)01023-6. ISBN 9780444514707.
  257. ^ (PDF). U.S. Bureau of Reclamation. August 2012. Archived from the original (PDF) on October 10, 2012. Retrieved June 29, 2013.
  258. ^ a b Gelt, Joe (August 1997). "Sharing Colorado River Water: History, Public Policy and the Colorado River Compact". Arroyo. University of Arizona, Water Resources Research Center. 10 (1). Retrieved February 25, 2014.
  259. ^ Weisheit, John. "Persistent Drought in the Colorado River Basin" (PDF). Confluence. Retrieved May 15, 2012.
  260. ^ Woodhouse, Connie; Webb, Robert S.; Lukas, Jeff. "Paleoenvironmental Archives as a source of Climate Information for Natural Resource Management: An Example from Tree Rings and Colorado Water Management" (PDF). U.S. Forest Service. Retrieved May 19, 2012.
  261. ^ "Glen Canyon Dam Water Operations". U.S. Bureau of Reclamation. 2022. Retrieved May 18, 2022.
  262. ^ Hoerling, Martin; Eischeid, Jon (November 17, 2006). (PDF). NOAA Earth System Research Laboratory, Climate Change Workshop. Western Water Assessment. Archived from the original (PDF) on June 9, 2010.
  263. ^ Kuhn, Eric (January 26, 2007). (PDF). CRWCD 49th Annual Convention. Colorado River Water Conservation District. Archived from the original (PDF) on December 1, 2011. Retrieved February 21, 2012.
  264. ^ Vernieu-Presenter, William S. (2005). "Current Status and Trends of Lake Powell and Glen Canyon Dam Release Water Quality" (PDF). U.S. Geological Survey, Grand Canyon Monitoring and Research Center. Grand Canyon River Guides. Retrieved May 15, 2012.
  265. ^ McKinnon, Shaun (October 19, 2010). "Lake Mead Sinks to a New Historic Low: If Lake Falls 8 More Feet, Thirsty Ariz. Could Experience Water Restrictions". The Arizona Republic. Phoenix, Arizona. Retrieved September 6, 2012.
  266. ^ Hiltzik, Michael (June 20, 2014). "Water war bubbling up between California and Arizona". Los Angeles Times. Retrieved September 23, 2014.
  267. ^ McKinnon, Shaun (April 19, 2011). "Lake Mead Replenished by Snowfall". azcentral.com. Retrieved February 21, 2012.
  268. ^ Shine, Conor (August 17, 2011). "Lake Mead's water level rises 30 feet after wet winter". Las Vegas Sun. Retrieved February 21, 2012.
  269. ^ Perry, Tony (May 27, 2013). "As Colorado River drought worsens, water officials parley". Los Angeles Times. Retrieved July 9, 2013.
  270. ^ Johnson, Terrell (August 20, 2013). . The Weather Channel. Archived from the original on January 13, 2014. Retrieved January 16, 2014.
  271. ^ Brean, Henry (July 11, 2014). "Lake Mead sinks to a record low". Las Vegas Review-Journal. Retrieved October 2, 2014.
  272. ^ Sevigny, Melissa (May 17, 2018). "Colorado River Water Shortage Could be Declared in 2020". KNAU. Retrieved May 24, 2018.
  273. ^ Chow, Lorraine (May 17, 2018). "Unprecedented Colorado River Water Shortage Could Be Declared in 2020". EcoWatch. Retrieved May 24, 2018.
  274. ^ Brian Maffly (July 22, 2021). "Lake Powell level about to hit a historic low as West's water crisis deepens". Salt Lake Tribune.
  275. ^ Michael Elizabeth Sakas (July 24, 2021). "Lake Powell Just Hit Its Lowest Level On Record. Here's What That Means For Colorado And States That Rely On It". Colorado Public Radio.
  276. ^ Oliver Milman (July 13, 2021). "Severe drought threatens Hoover dam reservoir – and water for US west". The Guardian.
  277. ^ "Reclamation announces 2022 operating conditions for Lake Powell and Lake Mead". usbr.gov. United States Bureau of Reclamation. August 16, 2021. Retrieved August 19, 2021.
  278. ^ Budryk, Zack (August 17, 2021). "OVERNIGHT ENERGY: Federal government announces first-ever water shortage in Lake Mead, Colorado River |Biden administration releases guidance limiting international financing for fossil fuels |Biden administration to review federal coal leasing". msn.com. MSN. Retrieved August 19, 2021.
  279. ^ "Full Committee Hearing To Examine Short And Long Term Solutions To Extreme Drought In The Western U.S." Senate Committee on Energy and Natural resources. United States Senate. Retrieved December 16, 2022.
  280. ^ Trotta, Daniel (October 28, 2022). "U.S. warns western states it may impose Colorado River water cuts". Reuters. Retrieved December 16, 2022.
  281. ^ Lochhead, Colton (December 15, 2022). "Las Vegas water boss urges states to take action to keep lakes from crashing". Las Vegas Review Journal. Retrieved December 16, 2022.
  282. ^ Partlow, Joshua (December 1, 2022). . The Washington Post. Retrieved December 16, 2022.
  283. ^ . Land Use History of North America. Northern Arizona University. Archived from the original on February 13, 2012. Retrieved February 23, 2012.
  284. ^ Ohmart, Robert D.; Anderson, Bertin W.; Hunter, William C. (September 1988). "The Ecology of the Lower Colorado River from Davis Dam to the Mexico-United States International Boundary: A Community Profile" (PDF). U.S. Fish and Wildlife Service. pp. 9, 12, 14. Retrieved June 29, 2013.
  285. ^ Shanahan, S.A.; Nelson, S.M.; Van Dooremolen, D.M.; Eckberg, J.R. (2011). (PDF). Journal of Arid Environments. 75 (11): 1182–1190. Bibcode:2011JArEn..75.1182S. doi:10.1016/j.jaridenv.2011.06.017. Archived from the original (PDF) on January 20, 2013. Retrieved February 24, 2012.
  286. ^ Alles, David L. (August 8, 2007). "The Delta of the Colorado River" (PDF). Western Washington University. Retrieved February 23, 2012.
  287. ^ Schell, Robert; King, Morgan E. "Riparian Vegetation: Structural Diversity Benefits Birds" (PDF). University of California, Davis. Archived from the original (PDF) on December 6, 2011. Retrieved February 23, 2012.
  288. ^ "Status of Plant and Animal Life". A Survey of the Recreational Resources of the Colorado River Basin. U.S. National Park Service. September 6, 2004. Retrieved February 23, 2012.
  289. ^ Benke & Cushing 2005, p. 493.
  290. ^ . Freshwater Ecoregions of the World. January 11, 2012. Archived from the original on June 18, 2012. Retrieved February 23, 2012.
  291. ^ . Defenders of Wildlife. Archived from the original on April 6, 2011.
  292. ^ Gupta 2007, p. 200.
  293. ^ "Why The Colorado River Stopped Flowing". National Public Radio. July 14, 2011. Retrieved February 20, 2012.
  294. ^ Weisheit, John. "A Colorado River Sediment Inventory" (PDF). Colorado Plateau River Guides. Retrieved February 20, 2012.
  295. ^ "Colorado River Basin". coriverbasin.org. Retrieved May 20, 2013.
  296. ^ (PDF). U.S. Bureau of Reclamation. December 2004. Archived from the original (PDF) on January 19, 2009.
  297. ^ Sandra Postel (April 5, 2013). "Landmark Cooperation Brings the Colorado River Home". National Geographic. Retrieved May 19, 2014.
  298. ^ a b Morford, Scott.
colorado, river, other, uses, disambiguation, spanish, río, colorado, principal, rivers, along, with, grande, southwestern, united, states, northern, mexico, confused, with, colorado, river, texas, mile, long, river, drains, expansive, arid, watershed, that, e. For other uses see Colorado River disambiguation The Colorado River Spanish Rio Colorado is one of the principal rivers along with the Rio Grande in the Southwestern United States and northern Mexico not to be confused with the Colorado river in Texas The 1 450 mile long 2 330 km river drains an expansive arid watershed that encompasses parts of seven U S states and two Mexican states The name Colorado derives from the Spanish language for colored reddish due to its heavy silt load Starting in the central Rocky Mountains of Colorado it flows generally southwest across the Colorado Plateau and through the Grand Canyon before reaching Lake Mead on the Arizona Nevada border where it turns south toward the international border After entering Mexico the Colorado approaches the mostly dry Colorado River Delta at the tip of the Gulf of California between Baja California and Sonora Colorado RiverThe Colorado River at Horseshoe Bend Arizona a few miles below Glen Canyon DamMap of the Colorado River basinLocationCountryUnited States MexicoStatesColorado Utah Arizona Nevada California Baja California SonoraCitiesGlenwood Springs CO Grand Junction CO Moab UT Page AZ Bullhead City AZ Lake Havasu City AZ Blythe CA Yuma AZ Las Vegas NV Laughlin NV San Luis Rio Colorado Son Physical characteristicsSourceLa Poudre Pass locationRocky Mountains Colorado United States coordinates40 28 20 N 105 49 34 W 40 47222 N 105 82611 W 40 47222 105 82611 1 elevation10 184 ft 3 104 m MouthGulf of California locationColorado River Delta Baja California Sonora Mexico coordinates31 54 00 N 114 57 03 W 31 90000 N 114 95083 W 31 90000 114 95083 Coordinates 31 54 00 N 114 57 03 W 31 90000 N 114 95083 W 31 90000 114 95083 1 elevation0 ft 0 m Length1 450 mi 2 330 km 2 Basin size246 000 sq mi 640 000 km2 2 Discharge locationmouth average unimpaired flow max and min at Topock AZ 300 mi 480 km from the mouth 3 average22 500 cu ft s 640 m3 s 3 minimum422 cu ft s 11 9 m3 s 4 maximum384 000 cu ft s 10 900 m3 s 5 Basin featuresTributaries leftFraser River Blue River Eagle River Roaring Fork River Gunnison River Dolores River San Juan River Little Colorado River Bill Williams River Gila River rightGreen River Dirty Devil River Escalante River Kanab River Virgin River Hardy RiverKnown for its dramatic canyons whitewater rapids and eleven U S National Parks the Colorado River and its tributaries are a vital source of water for 40 million people 6 An extensive system of dams reservoirs and aqueducts divert almost its entire flow for agricultural irrigation and urban water supply 7 8 9 Its large flow and steep gradient are used to generate hydroelectricity meeting peaking power demands in much of the Intermountain West Intensive water consumption has dried up the lower 100 miles 160 km of the river which has rarely reached the sea since the 1960s 7 10 11 Native Americans have inhabited the Colorado River basin for at least 8 000 years Starting around 1 AD large agriculture based societies were established but a combination of drought and poor land use practices led to their collapse in the 1300s Their descendants include tribes such as the Puebloans while others including the Navajo settled in the Colorado Basin after the 1000s In the 1500s Spanish explorers began mapping and claiming the watershed which became part of Mexico upon its independence in 1821 Even after most of the watershed became US territory in 1846 much of the river s course remained unknown Several expeditions charted the Colorado in the mid 19th century one of which led by John Wesley Powell was the first to run the rapids of the Grand Canyon Large scale settlement of the lower basin began in the mid to late 1800s with steamboats sailing from the Gulf of California to landings along the river that linked to wagon roads to the interior Starting in the 1860s gold and silver strikes drew prospectors to the upper Colorado River basin Large scale river management began in the early 1900s with major guidelines established in a series of international and US interstate treaties known as the Law of the River The US federal government constructed most of the major dams and aqueducts between 1910 and 1970 the largest Hoover Dam was completed in 1935 Numerous water projects have also involved state and local governments With all of its water fully allocated the Colorado is now considered among the most controlled and litigated rivers in the world The environmental movement in the American Southwest has opposed the damming and diversion of the Colorado River system due to negative effects on the ecology and natural beauty of the river and its tributaries During the construction of Glen Canyon Dam 1956 66 environmental organizations which vowed clarification needed to block any further development of the river and a number of later dam and aqueduct proposals were defeated by citizen opposition Since 2000 extended drought has conflicted with increasing demands for Colorado River water and the level of human development and control of the river continues to generate controversy Contents 1 Course 1 1 Major tributaries 2 Discharge 3 Drainage basin 4 Geology 5 History 5 1 Indigenous peoples 5 1 1 Megadrought in 14th century 5 1 2 Europeans arrive 5 1 3 Mohave expelled 5 2 Early explorers 5 3 Exploration and navigation below Fort Yuma 1850 1854 5 4 Exploration and navigation above Fort Yuma 1851 1887 5 5 Powell s expeditions 1869 1871 5 6 American settlement 5 7 Naming of the upper Colorado River and controversy 6 Engineering and development 6 1 Transmountain diversions 6 2 The Imperial Valley disaster 6 3 Boulder Canyon Project 6 4 Colorado River Storage Project 6 5 Pacific Southwest Water Plan 6 6 Uncertain future 7 Ecology 7 1 Wildlife and plants 7 2 Environmental impacts 7 2 1 Minute 319 8 Recreation 9 See also 10 Explanatory notes 11 Citations 12 Works cited 13 Further reading 14 External linksCourse EditMain article Course of the Colorado River Headwaters of the Colorado River in Rocky Mountain National Park Colorado The Colorado begins at La Poudre Pass in the Never Summer Mountains in Rocky Mountain National Park 10 184 ft 3 104 m above sea level 12 After a short run south the river turns west below Grand Lake the largest natural lake in the state 13 For the first 250 miles 400 km of its course the Colorado carves its way through the mountainous Western Slope a sparsely populated region defined by the portion of the state west of the Continental Divide As it flows southwest it gains strength from many small tributaries as well as larger ones including the Blue Eagle and Roaring Fork rivers After passing through De Beque Canyon the Colorado emerges from the Rockies into the Grand Valley a major farming and ranching region where it meets one of its largest tributaries the Gunnison River at Grand Junction Most of the upper river is a swift whitewater stream ranging from 200 to 500 feet 60 to 150 m wide the depth ranging from 6 to 30 feet 2 to 9 m with a few notable exceptions such as the Blackrocks reach where the river is nearly 100 feet 30 m deep 14 15 In a few areas such as the marshy Kawuneeche Valley near the headwaters 16 and the Grand Valley it exhibits braided characteristics 15 From Grand Junction the Colorado turns northwest before cutting southwest across the eponymous Colorado Plateau a vast area of high desert centered at the Four Corners of the southwestern United States Here the climate becomes significantly drier than that in the Rocky Mountains and the river becomes entrenched in progressively deeper gorges of bare rock beginning with Ruby Canyon and then Westwater Canyon as it enters Utah now once again heading southwest 17 Farther downstream it receives the Dolores River and defines the southern border of Arches National Park before passing Moab and flowing through The Portal where it exits the Moab Valley between a pair of 1 000 foot 300 m sandstone cliffs 18 Colorado River in the Grand Canyon seen from Pima Point near Hermit s Rest In Utah the Colorado flows primarily through the slickrock country which is characterized by its narrow canyons and unique folds created by the tilting of sedimentary rock layers along faults This is one of the most inaccessible regions of the continental United States 19 20 Below the confluence with the Green River its largest tributary in Canyonlands National Park the Colorado enters Cataract Canyon named for its dangerous rapids 21 and then Glen Canyon known for its arches and erosion sculpted Navajo sandstone formations 22 Here the San Juan River carrying runoff from the southern slope of Colorado s San Juan Mountains joins the Colorado from the east The Colorado then enters northern Arizona where since the 1960s Glen Canyon Dam near Page has flooded the Glen Canyon reach of the river forming Lake Powell for hydroelectricity generation 23 24 In Arizona the river passes Lee s Ferry an important crossing for early explorers and settlers and since the early 20th century the principal point where Colorado River flows are measured for apportionment to the seven U S and two Mexican states in the basin 25 Downstream the river enters Marble Canyon the beginning of the Grand Canyon passing under the Navajo Bridges on a now southward course Below the confluence with the Little Colorado River the river swings west into Granite Gorge the most dramatic portion of the Grand Canyon where the river cuts up to one mile 1 6 km into the Colorado Plateau exposing some of the oldest visible rocks on Earth dating as long ago as 2 billion years 26 The 277 miles 446 km of the river that flow through the Grand Canyon are largely encompassed by Grand Canyon National Park and are known for their difficult whitewater separated by pools that reach up to 110 feet 34 m in depth 27 At the lower end of Grand Canyon the Colorado widens into Lake Mead the largest reservoir in the continental United States formed by Hoover Dam on the border of Arizona and Nevada Situated southeast of metropolitan Las Vegas the dam is an integral component for management of the Colorado River controlling floods and storing water for farms and cities in the lower Colorado River basin 28 Below the dam the river passes under the Mike O Callaghan Pat Tillman Memorial Bridge which at nearly 900 feet 270 m above the water is the highest concrete arch bridge in the Western Hemisphere 29 and then turns due south towards Mexico defining the Arizona Nevada and Arizona California borders Satellite view of the Colorado River valley near Yuma Arizona Interstate 8 runs from left to right just below center After leaving the confines of the Black Canyon the river emerges from the Colorado Plateau into the Lower Colorado River Valley LCRV a desert region dependent on irrigation agriculture and tourism and also home to several major Indian reservations 30 The river widens here to a broad moderately deep waterway averaging 500 to 1 000 feet 150 to 300 m wide and reaching up to 0 25 miles 400 m across with depths ranging from 8 to 60 feet 2 to 20 m 31 32 Before channelization of the Colorado in the 20th century the lower river was subject to frequent course changes caused by seasonal flow variations Joseph C Ives who surveyed the lower river in 1861 wrote that the shifting of the channel the banks the islands the bars is so continual and rapid that a detailed description derived from the experiences of one trip would be found incorrect not only during the subsequent year but perhaps in the course of a week or even a day 33 The LCRV is one of the most densely populated areas along the river and there are numerous towns including Bullhead City Arizona Needles California and Lake Havasu City Arizona Here several large diversions draw from the river providing water for both local uses and distant regions including the Salt River Valley of Arizona and metropolitan Southern California 34 The last major U S diversion is at Imperial Dam where over 90 percent of the river s flow is moved into the Gila Gravity Canal and Yuma Area Project and the much bigger All American Canal to irrigate California s Imperial Valley the most productive winter agricultural region in the United States 35 Colorado River as it exits the United States into Mexico beneath the San Luis Colorado Colonia Miguel Aleman Bridge September 2009 Below Imperial Dam only a small portion of the Colorado River makes it beyond Yuma Arizona and the confluence with the intermittent Gila River which carries runoff from western New Mexico and most of Arizona before defining about 24 miles 39 km of the Mexico United States border At Morelos Dam the entire remaining flow of the Colorado is diverted to irrigate the Mexicali Valley among Mexico s most fertile agricultural lands 36 Below San Luis Rio Colorado the Colorado passes entirely into Mexico defining the Baja California Sonora border Since 1960 the stretch of the Colorado between here and the Gulf of California has been dry or a trickle formed by irrigation return flows The Hardy River provides most of the flow into the Colorado River Delta a vast alluvial floodplain covering about 3 000 square miles 7 800 km2 of northwestern Mexico 37 A large estuary is formed here before the Colorado empties into the Gulf about 75 miles 120 km south of Yuma Occasionally the International Boundary and Water Commission allows a springtime pulse flow to recharge the delta 38 Before 20th century development dewatered the lower Colorado a major tidal bore was present in the delta and estuary the first historical record was made by the Croatian missionary in Spanish service Father Ferdinand Konscak on July 18 1746 39 During spring tide conditions the tidal bore locally called El Burro formed in the estuary about Montague Island in Baja California and propagated upstream 40 Major tributaries Edit The San Juan River near Mexican Hat Utah The Green River at Mineral Bottom just north of Canyonlands National Park Main article List of tributaries of the Colorado River The Colorado is joined by over 25 significant tributaries of which the Green River is the largest by both length and discharge The Green River takes drainage from the Wind River Range of west central Wyoming from Utah s Uinta Mountains and from the Rockies of northwestern Colorado 41 The Gila River is the second longest and drains a greater area than the Green 42 but has a significantly lower flow because of a more arid climate and larger diversions for irrigation and cities 43 Both the Gunnison and San Juan rivers which derive most of their water from Rocky Mountains snowmelt contribute more water than the Gila contributed naturally 44 Statistics of the Colorado s longest tributariesName State Length Watershed Discharge Referencesmi km mi2 km2 cfs m3 sGreen River Utah 730 1 170 48 100 125 000 6 048 171 3 42 45 46 n 1 Gila River Arizona 649 1 044 58 200 151 000 247 7 0 2 42 47 n 2 San Juan River Utah 383 616 24 600 64 000 2 192 62 1 42 48 49 n 3 Little Colorado River Arizona 356 573 26 500 69 000 424 12 0 42 50 51 Dolores River Utah 250 400 4 574 11 850 633 17 9 42 52 53 Gunnison River Colorado 164 264 7 930 20 500 2 570 73 42 48 54 Virgin River Nevada 160 260 13 020 33 700 239 6 8 42 55 56 n 4 Discharge EditIn its natural state the Colorado River poured about 16 3 million acre feet 20 1 km3 into the Gulf of California each year equaling an average discharge of 22 500 cubic feet per second 640 m3 s disputed discuss 3 Its flow regime was not at all steady indeed prior to the construction of federal dams and reservoirs the Colorado was a river of extremes like no other in the United States 57 Summer peak flows often exceeded 100 000 cubic feet per second 2 800 m3 s and winter flows fell as low as 2 500 cubic feet per second 71 m3 s 57 At Topock Arizona about 300 miles 480 km upstream from the Gulf a maximum historical discharge of 384 000 cubic feet per second 10 900 m3 s was recorded in 1884 and a minimum of 422 cubic feet per second 11 9 m3 s was recorded in 1935 4 5 58 59 Since the construction of Hoover Dam the lower Colorado rarely exceeds 35 000 cubic feet per second 990 m3 s or drops below 4 000 cubic feet per second 110 m3 s 60 Annual runoff volume also varies widely from a high of 22 2 million acre feet 27 4 km3 in 1984 to a low of 3 8 million acre feet 4 7 km3 in 2002 although in most years only a small portion of this flow if any reaches the Gulf 61 62 Annual Colorado River discharge volumes at Lee s Ferry between 1895 and 2004 About 85 90 percent of the Colorado River s discharge originates in melting snowpack from the Rocky Mountains of Colorado and Wyoming 61 The three major upper tributaries of the Colorado the snow fed Gunnison Green and San Juan alone deliver almost 9 million acre feet 11 km3 per year to the main stem 63 The remaining 10 to 15 percent comes from a variety of sources primarily groundwater and summer monsoon storms 61 Tributaries in the Lower Basin are prone to monsoon caused flash floods but these storms do not often contribute significant volumes of runoff 61 64 Annual runoff follows snowmelt which typically begins in April peaking in May and June before exhausting in July or August 65 Due to water diversions flows at the mouth of the river have steadily declined since the early 1900s Since 1960 the Colorado has typically dried up before reaching the sea with the exception of a few wet years 66 In addition to water consumption flows have declined due to evaporation from reservoirs and warming temperatures that reduce winter snow accumulation 67 68 69 Several of the Colorado s major tributaries including the Gila River also no longer reach the Colorado due to upstream diversions 70 The average flow rate of the Colorado River at the northernmost point of the Mexico United States border NIB or Northerly International Boundary is 3 869 cubic feet per second 109 6 m3 s or 2 80 million acre feet 3 45 km3 per year about one fifth of what the natural flow would be 71 Below this location the remaining flow is diverted to irrigate the Mexicali Valley leaving a dry riverbed from Morelos Dam to the sea that is supplemented by intermittent flows of irrigation drainage water 72 There have been exceptions however particularly in 1983 1987 when the Colorado once again reached the sea after consecutive seasons of record breaking snowfall 73 In 1984 16 5 million acre feet 20 4 km3 of excess runoff reached the ocean 74 Discharge of the Colorado River at selected stream gaugesLocation Annual mean discharge Maximum peak flow Drainage area Period of record Sourcecfs m3 s cfs m3 s mi2 km2Grand Lake CO 65 5 1 85 1 870 53 63 8 165 1953 2020 75 Dotsero CO 2 079 58 9 22 200 630 4 390 11 400 1941 2020 76 Cisco UT 7 048 199 6 76 800 2 170 24 100 62 000 1914 2020 77 Lee s Ferry AZ 14 600 410 127 000 3 600 111 800 290 000 1922 2020 78 Davis Dam AZ NV 13 740 389 46 200 1 310 173 300 449 000 1905 2020 79 Parker Dam AZ CA 11 630 329 42 400 1 200 182 700 473 000 1935 2020 80 Laguna Dam AZ CA 1 448 41 0 30 900 870 188 600 488 000 1972 2020 81 NIB n 5 near Andrade CA 3 869 109 6 40 600 1 150 246 700 639 000 1950 2020 71 Monthly discharge of the Colorado at Lee s Ferry beforeand after construction of Glen Canyon Dam 78 Month Jan Feb Mar Apr May Jun Jul Aug Sep Oct Nov Dec Pre dam discharge 1921 1962 cfs 5 260 6 720 9 250 19 900 44 200 52 400 21 200 10 400 8 280 8 220 7 450 5 850m3 s 149 190 262 564 1 252 1 484 600 294 234 233 211 166Post dam discharge 1963 2021 cfs 13 400 12 300 11 500 12 400 13 700 15 600 15 700 15 400 12 700 10 500 11 600 12 600m3 s 379 348 326 351 388 442 445 436 360 297 328 357The United States Geological Survey USGS operates or has operated 46 stream gauges to measure the discharge of the Colorado River ranging from the headwaters near Grand Lake to the Mexico U S border 82 The tables at right list data associated with eight of these gauges River flows as gauged at Lees Ferry Arizona about halfway along the length of the Colorado and 16 miles 26 km below Glen Canyon Dam are used to determine water allocations in the Colorado River basin 83 The average discharge recorded there was approximately 14 600 cubic feet per second 410 m3 s or 10 58 million acre feet 13 05 km3 per year from 1922 to 2020 This figure has been heavily affected by upstream diversions and reservoir evaporation especially after the completion of the Colorado River Storage Project in the 1970s Prior to the completion of Glen Canyon Dam in 1964 the average discharge recorded between 1912 and 1962 was 17 850 cubic feet per second 505 m3 s or 12 93 million acre feet 15 95 km3 per year 78 Drainage basin Edit Map showing the Upper and Lower Colorado River Basin and adjacent areas supplied by Colorado River water The Colorado River Basin consists of 246 000 square miles 640 000 km2 making it the seventh largest drainage basin in North America 2 About 238 600 square miles 618 000 km2 or 97 percent of the basin is in the United States 42 The basin extends into western Colorado and New Mexico southwestern Wyoming eastern and southern Utah southeastern Nevada and California and most of Arizona The areas drained within Baja California and Sonora in Mexico are very small and do not contribute significant runoff 84 Aside from the Colorado River Delta the basin extends into Sonora at a few locations further east including the headwaters of the Santa Cruz River and San Pedro River both tributaries of the Gila River 85 For hydrological management purposes the Colorado River Basin is divided into the Upper Basin the drainage area above Lees Ferry and the Lower Basin The Upper Basin covers only 45 percent of the land area of the Colorado River Basin but contributes 92 percent of the runoff 86 The entire eastern boundary of the Colorado River Basin runs along the North American Continental Divide and is defined largely by the Rocky Mountains The Wind River Range in Wyoming marks the northern extent of the basin and is separated from the Colorado Rockies by the endorheic Great Divide Basin in southwestern Wyoming Streams that are nearby the east side of the divide drain into the Mississippi River and Rio Grande while nearby areas north of the Wind River Range drain into the Columbia River 85 The western boundary of the Colorado River Basin is formed by various ranges and plateaus that border the Great Basin including the Uinta Mountains and Wasatch Range Major Great Basin watersheds bordering the Colorado River Basin are the Great Salt Lake and Sevier Lake watersheds 85 To the south the Colorado River Basin borders several watersheds in Mexico draining into the Gulf of California including the Sonoyta Concepcion and Yaqui rivers 85 87 Much of the basin is at high elevation the mean elevation is 5 500 feet 1 700 m 84 88 Lees Ferry more than halfway along the Colorado River from its source is 3 150 feet 960 m above sea level 89 The highest point in the Colorado River Basin is 14 321 foot 4 365 m Uncompahgre Peak in Colorado s San Juan Mountains while some water from the river drains via irrigation run off into California s Salton Sea 236 feet 72 m below sea level 90 The Black Suspension Bridge crosses the Colorado River in the Grand Canyon at Phantom Ranch Arizona About 72 percent of the Colorado River Basin is classified as arid with the Sonoran and Mojave deserts covering the southern portion and the Colorado Plateau encompassing much of the central portion 91 The Colorado Plateau is home to most of the major canyon systems formed by the Colorado River and its tributaries particularly those of the Green and San Juan rivers About 23 percent of the basin is forest with the largest area in the Rocky Mountains other significant forested areas include the Kaibab Aquarius and Markagunt plateaus in southern Utah and northern Arizona and the Mogollon Rim in central Arizona 91 These high plateaus and escarpments often exceeding 9 000 feet 2 700 m in elevation form the northern and southern edges of the Colorado Plateau geological province 92 93 Developed land use in the basin is mostly irrigated agriculture chiefly in the Grand Valley the Lower Colorado River Valley and the Salt River Valley but the total area of crop and pasture land is only 2 3 percent of the entire basin 91 Urban areas cover less than 1 percent 91 Climate in the Colorado River Basin ranges from subtropical hot desert at southern lower elevations to alpine in the Rocky Mountains 94 Mean monthly high temperatures are 25 3 C 77 5 F in the Upper Basin and 33 4 C 92 1 F in the Lower Basin and lows average 3 6 and 8 9 C 25 5 and 48 0 F respectively Annual precipitation averages 6 5 inches 164 mm ranging from over 60 inches 1 500 mm in some areas of the Rockies to less than 4 inches 100 mm in dry desert valleys 86 The Upper Basin generally receives snow and rain during the winter and early spring while precipitation in the Lower Basin falls mainly during intense but infrequent summer thunderstorms brought on by the North American Monsoon 95 Precipitation is influenced by the El Nino Southern Oscillation ENSO with El Nino being associated with wetter conditions and La Nina with drier conditions The effect of ENSO is significantly more pronounced in the Lower Basin where it has a strong impact on monsoonal rainfall 86 Runoff patterns across the Colorado River Basin reflect this most of the perennial tributaries originate in the Upper Basin while tributaries in the Lower Basin are either ephemeral such as the Little Colorado River or highly seasonal such as the Gila and Salt rivers 86 As of 2010 approximately 13 million people lived within the Colorado River basin n 6 while about 40 million people live in areas supplied by Colorado River water Colorado River basin states are among the fastest growing in the US the population of Nevada alone increased by about 66 percent between 1990 and 2000 as Arizona grew by some 40 percent 99 Phoenix Arizona Las Vegas Nevada and Mexicali Baja California are the largest cities by population within the Colorado River Basin Other significant cities include Tucson Arizona St George Utah and Flagstaff Arizona Due to the rugged and inhospitable topography through which the river flows there are only a few major towns along the Colorado River itself including Grand Junction Colorado and Yuma Arizona 84 Geology EditAs recently as the Cretaceous period about 100 million years ago much of western North America was still part of the Pacific Ocean Tectonic forces from the collision of the Farallon Plate with the North American Plate pushed up the Rocky Mountains between 50 and 75 million years ago in a mountain building episode known as the Laramide orogeny 100 The Colorado River first formed as a west flowing stream draining the southwestern portion of the range and the uplift also diverted the Green River once a tributary of the Mississippi River west towards the Colorado About 30 to 20 million years ago volcanic activity related to the orogeny led to the Mid Tertiary ignimbrite flare up which created smaller formations such as the Chiricahua Mountains in Arizona and deposited massive amounts of volcanic ash and debris over the watershed 101 The Colorado Plateau first began to rise during the Eocene between about 55 and 34 million years ago but did not attain its present height until about 5 million years ago about when the Colorado River established its present course into the Gulf of California 102 The time scale and sequence over which the river s present course and the Grand Canyon were formed is uncertain Before the Gulf of California was formed around 12 to 5 million years ago by faulting processes along the boundary of the North American and Pacific plates 103 the Colorado flowed west to an outlet on the Pacific Ocean possibly Monterey Bay on the Central California coast and may have played a role in the formation of the Monterey submarine canyon Crustal extension in the Basin and Range Province began about 20 million years ago and the modern Sierra Nevada began forming about 10 million years ago eventually diverting the Colorado southwards towards the Gulf 104 As the Colorado Plateau continued to rise between 5 and 2 5 million years ago the river maintained its ancestral course as an antecedent stream and began to cut the Grand Canyon Antecedence played a major part in shaping other peculiar geographic features in the watershed including the Dolores River s bisection of Paradox Valley in Colorado and the Green River s cut through the Uinta Mountains in Utah 105 Remnants of basalt flows from the Uinkaret volcanic field are seen here descending into the Grand Canyon where they dammed the Colorado over 10 times in the past 2 million years Sediments carried from the plateau by the Colorado River created a vast delta made of more than 10 000 cubic miles 42 000 km3 of material that walled off the northernmost part of the gulf in approximately 1 million years Cut off from the ocean the portion of the gulf north of the delta eventually evaporated and formed the Salton Sink which reached about 260 feet 79 m below sea level 106 107 Since then the river has changed course into the Salton Sink at least three times transforming it into Lake Cahuilla which at maximum size flooded up the valley to present day Indio California The lake took about 50 years to evaporate after the Colorado resumed flowing to the Gulf The present day Salton Sea can be considered the most recent incarnation of Lake Cahuilla though on a much smaller scale 108 Between 1 8 million and 10 000 years ago massive flows of basalt from the Uinkaret volcanic field in northern Arizona dammed the Colorado River within the Grand Canyon At least 13 lava dams were formed the largest of which was more than 2 300 feet 700 m high backing the river up for nearly 500 miles 800 km to present day Moab Utah 109 The lack of associated sediment deposits along this stretch of the Colorado River which would have accumulated in the impounded lakes over time suggests that most of these dams did not survive for more than a few decades before collapsing or being washed away Failure of the lava dams caused by erosion leaks and cavitation caused catastrophic floods which may have been some of the largest ever to occur in North America rivaling the late Pleistocene Missoula Floods of the northwestern United States 110 Mapping of flood deposits indicate that crests as high as 700 feet 210 m passed through the Grand Canyon 111 reaching peak discharges as great as 17 million cubic feet per second 480 000 m3 s 112 History EditIndigenous peoples Edit Navajo woman and child photographed by Ansel Adams c 1944 Pueblos and cliff dwellings such as this one in New Mexico were inhabited by people of the Colorado River basin between 2 000 and 700 years ago The first humans of the Colorado River basin were likely Paleo Indians of the Clovis and Folsom cultures who first arrived on the Colorado Plateau about 12 000 years ago Very little human activity occurred in the watershed until the rise of the Desert Archaic Culture which from 8 000 to 2 000 years ago constituted most of the region s human population These prehistoric inhabitants led a generally nomadic lifestyle gathering plants and hunting small animals though some of the earliest peoples hunted larger mammals that became extinct in North America after the end of the Pleistocene epoch 113 Another notable early group was the Fremont culture whose peoples inhabited the Colorado Plateau from 2 000 to 700 years ago The Fremont were likely the first peoples of the Colorado River basin to domesticate crops and construct masonry dwellings they also left behind a large amount of rock art and petroglyphs many of which have survived to the present day 114 115 Beginning in the early centuries A D Colorado River basin peoples began to form large agriculture based societies some of which lasted hundreds of years and grew into well organized civilizations encompassing tens of thousands of inhabitants The Ancient Puebloan also known as Anasazi or Hisatsinom people of the Four Corners region were descended from the Desert Archaic culture 116 The Puebloan people developed a complex distribution system to supply drinking and irrigation water in Chaco Canyon in northwestern New Mexico 117 The Puebloans dominated the basin of the San Juan River and the center of their civilization was in Chaco Canyon 118 In Chaco Canyon and the surrounding lands they built more than 150 multi story pueblos or great houses the largest of which Pueblo Bonito is composed of more than 600 rooms 119 120 The Hohokam culture was present along the middle Gila River beginning around 1 A D Between 600 and 700 A D they began to employ irrigation on a large scale and did so more prolifically than any other native group in the Colorado River basin 121 An extensive system of irrigation canals was constructed on the Gila and Salt rivers with various estimates of a total length ranging from 180 to 300 miles 290 to 480 km and capable of irrigating 25 000 to 250 000 acres 10 000 to 101 000 ha Both civilizations supported large populations at their height the Chaco Canyon Puebloans numbered between 6 000 and 15 000 122 and estimates for the Hohokam range between 30 000 and 200 000 123 Megadrought in 14th century Edit These sedentary peoples heavily exploited their surroundings practicing logging and harvesting of other resources on a large scale The construction of irrigation canals may have led to a significant change in the morphology of many waterways in the Colorado River basin Prior to human contact rivers such as the Gila Salt and Chaco were shallow perennial streams with low vegetated banks and large floodplains In time flash floods caused significant downcutting on irrigation canals which in turn led to the entrenchment of the original streams into arroyos making agriculture difficult 124 A variety of methods were employed to combat these problems including the construction of large dams but when a megadrought hit the region in the 14th century A D the ancient civilizations of the Colorado River basin abruptly collapsed 124 125 Some Puebloans migrated to the Rio Grande Valley of central New Mexico and south central Colorado becoming the predecessors of the Hopi Zuni Laguna and Acoma people in western New Mexico 113 Many of the tribes that inhabited the Colorado River basin at the time of European contact were descended from Puebloan and Hohokam survivors while others already had a long history of living in the region or migrated in from bordering lands 113 126 Native American names for the Colorado RiverHopi Pisisvayu 127 Maricopa Xakxwet 128 Mohave Aha Kwahwat 129 Navajo To NtsʼosikoohHavasupai Ha Ŧay Gʼam Sil Gsvgov 130 Yavapai ʼHakhwata 131 The Navajo were an Athabaskan people who migrated from the north into the Colorado River basin around 1025 A D 132 They soon established themselves as the dominant Native American tribe in the Colorado River basin and their territory stretched over parts of present day Arizona New Mexico Utah and Colorado in the original homelands of the Puebloans In fact the Navajo acquired agricultural skills from the Puebloans before the collapse of the Pueblo civilization in the 14th century 133 A profusion of other tribes have made a continued lasting presence along the Colorado River The Mohave have lived along the rich bottomlands of the lower Colorado below Black Canyon since 1200 A D They were fishermen navigating the river on rafts made of reeds to catch Gila trout and Colorado pikeminnow and farmers relying on the annual floods of the river rather than irrigation to water their crops 134 Ute peoples have inhabited the northern Colorado River basin mainly in present day Colorado Wyoming and Utah for at least 2 000 years but did not become well established in the Four Corners area until 1500 A D 135 136 The Apache Cocopah Halchidhoma Havasupai Hualapai Maricopa Pima and Quechan are among many other groups that live along or had territories bordering on the Colorado River and its tributaries 113 137 Europeans arrive Edit Beginning in the 17th century contact with Europeans brought significant changes to the lifestyles of Native Americans in the Colorado River basin Missionaries sought to convert indigenous peoples to Christianity an effort sometimes successful such as in Father Eusebio Francisco Kino s 1694 encounter with the docile Pimas of the Gila Valley who readily accepted Kino and his Christian teachings 137 From 1694 to 1702 Kino would explore the Gila and Colorado Rivers to determine if California was an island or peninsula The Spanish introduced sheep and goats to the Navajo who came to rely heavily on them for meat milk and wool 132 By the mid 16th century the Utes having acquired horses from the Spanish introduced them to the Colorado River basin The use of horses spread through the basin via trade between the various tribes and greatly facilitated hunting communications travel and warfare for indigenous peoples The more aggressive tribes such as the Utes and Navajos often used horses to their advantage in raids against tribes that were slower to adopt them such as the Goshutes and Southern Paiutes 138 Two Mohave warriors beside the Colorado River in 1871 The gradual influx of European and American explorers fortune seekers and settlers into the region eventually led to conflicts that forced many Native Americans off their traditional lands After the acquisition of the Colorado River basin from Mexico in the Mexican American War in 1846 U S military forces commanded by Kit Carson forced more than 8 000 Navajo men women and children from their homes after a series of unsuccessful attempts to confine their territory many of which were met with violent resistance In what is now known as the Long Walk of the Navajo the captives were marched from Arizona to Fort Sumner in New Mexico and many died along the route Four years later the Navajo signed a treaty that moved them onto a reservation in the Four Corners region that is now known as the Navajo Nation It is the largest Native American reservation in the United States encompassing 27 000 square miles 70 000 km2 with a population of over 180 000 as of 2000 139 140 141 Mohave expelled Edit The Mohave were expelled from their territory after a series of minor skirmishes and raids on wagon trains passing through the area in the late 1850s culminating in an 1859 battle with American forces that concluded the Mohave War 142 In 1870 the Mohave were relocated to a reservation at Fort Mojave which spans the borders of Arizona California and Nevada 143 Some Mohave were also moved to the 432 square mile 1 120 km2 Colorado River Indian Reservation on the Arizona California border originally established for the Mohave and Chemehuevi people in 1865 144 In the 1940s some Hopi and Navajo people were also relocated to this reservation 145 The four tribes now form a geopolitical body known as the Colorado River Indian Tribes 144 Water rights of Native Americans in the Colorado River basin were largely ignored during the extensive water resources development carried out on the river and its tributaries in the 19th and 20th centuries The construction of dams has often had negative impacts on tribal peoples such as the Chemehuevi when their riverside lands were flooded after the completion of Parker Dam in 1938 Ten Native American tribes in the basin now hold or continue to claim water rights to the Colorado River 146 The U S government has taken some actions to help quantify and develop the water resources of Native American reservations The first federally funded irrigation project in the U S was the construction of an irrigation canal on the Colorado River Indian Reservation in 1867 147 Other water projects include the Navajo Indian Irrigation Project authorized in 1962 for the irrigation of lands in part of the Navajo Nation in north central New Mexico 148 The Navajo continue to seek expansion of their water rights because of difficulties with the water supply on their reservation about 40 percent of its inhabitants must haul water by truck many miles to their homes In the 21st century they have filed legal claims against the governments of Arizona New Mexico and Utah for increased water rights Some of these claims have been successful for the Navajo such as a 2004 settlement in which they received a 326 000 acre foot 402 000 ML allotment from New Mexico 149 Early explorers Edit La conquista del Colorado 2017 by Augusto Ferrer Dalmau depicts Francisco Vazquez de Coronado s 1540 1542 expedition Garcia Lopez de Cardenas can be seen overlooking the Grand Canyon During the 16th century the Spanish began to explore and colonize western North America An early motive was the search for the Seven Cities of Gold or Cibola rumored to have been built by Native Americans somewhere in the desert Southwest According to a United States Geological Survey publication it is likely that Francisco de Ulloa was the first European to see the Colorado River when in 1536 he sailed to the head of the Gulf of California 150 Francisco Vasquez de Coronado s 1540 1542 expedition began as a search for the fabled Cities of Gold but after learning from natives in New Mexico of a large river to the west he sent Garcia Lopez de Cardenas to lead a small contingent to find it With the guidance of Hopi Indians Cardenas and his men became the first outsiders to see the Grand Canyon 151 Cardenas was reportedly unimpressed with the canyon assuming the width of the Colorado River at 6 feet 1 8 m and estimating 300 foot 91 m tall rock formations to be the size of a man After failing at an attempt to descend to the river they left the area defeated by the difficult terrain and torrid weather 152 Coronado Sets Out to the North by Frederic Remington c 1905 In 1540 Hernando de Alarcon and his fleet reached the mouth of the river intending to provide additional supplies to Coronado s expedition Alarcon may have sailed the Colorado as far upstream as the present day California Arizona border Coronado never reached the Gulf of California and Alarcon eventually gave up and left Melchior Diaz reached the delta in the same year intending to establish contact with Alarcon but the latter was already gone by the time of Diaz s arrival Diaz named the Colorado River Rio del Tizon Firebrand River after seeing a practice used by the local natives for warming themselves 153 The name Tizon lasted for the next 200 years The name Rio Colorado Red River was first applied to the Colorado by Father Eusebio Francisco Kino in his maps and written reports resulting from his explorations to the Colorado River Delta and his discovery that California was not an island but a peninsula 1700 1702 Kino s 1701 map Paso por Tierra a la California is the first known map to label the river as the Colorado 154 During the 18th and early 19th centuries many Americans and Spanish believed in the existence of the Buenaventura River purported to run from the Rocky Mountains in Utah or Colorado to the Pacific Ocean 155 The name Buenaventura was given to the Green River by Silvestre Velez de Escalante as early as 1776 but Escalante did not know that the Green drained to the Colorado Many later maps showed the headwaters of the Green and Colorado rivers connecting with the Sevier River Rio San Ysabel and Utah Lake Lake Timpanogos before flowing west through the Sierra Nevada into California Mountain man Jedediah Smith reached the lower Colorado by way of the Virgin River canyon in 1826 Smith called the Colorado the Seedskeedee as the Green River in Wyoming was known to fur trappers correctly believing it to be a continuation of the Green and not a separate river as others believed under the Buenaventura myth 156 John C Fremont s 1843 Great Basin expedition proved that no river traversed the Great Basin and Sierra Nevada officially debunking the Buenaventura myth 157 Exploration and navigation below Fort Yuma 1850 1854 Edit Between 1850 and 1854 the U S Army explored the lower reach of the Colorado River from the Gulf of California looking for the river to provide a less expensive route to supply the remote post of Fort Yuma First in November 1850 to January 1851 by its transport schooner Invincible under Captain Alfred H Wilcox and then by its longboat commanded by Lieutenant George Derby Later Lieutenant Derby in his expedition report recommended that a shallow draft sternwheel steamboat would be the way to send supplies up river to the fort 158 The next contractors George Alonzo Johnson with his partner Benjamin M Hartshorne brought two barges and 250 tons of supplies arriving at the river s mouth in February 1852 on the United States transport schooner Sierra Nevada under Captain Wilcox Poling the barges up the Colorado the first barge sank with its cargo a total loss The second was finally after a long struggle poled up to Fort Yuma but what little it carried was soon consumed by the garrison Subsequently wagons again were sent from the fort to haul the balance of the supplies overland from the estuary through the marshes and woodlands of the Delta 159 5 9 At last Derby s recommendation was heeded and in November 1852 the Uncle Sam a 65 foot long side wheel paddle steamer built by Domingo Marcucci became the first steamboat on the Colorado River 160 15 It was brought by the schooner Capacity from San Francisco to the delta by the next contractor to supply the fort Captain James Turnbull It was assembled and launched in the estuary 30 miles above the mouth of the Colorado River Equipped with only a 20 horsepower engine the Uncle Sam could only carry 35 tons of supplies taking 15 days to make the first 120 mile trip It made many trips up and down the river taking four months to finish carrying the supplies for the fort improving its time up river to 12 days Negligence caused it to sink at its dock below Fort Yuma and was then washed away before it could be raised in the spring flood of 1853 Turnbull in financial difficulty disappeared Nevertheless he had shown the worth of steamboats to solve Fort Yuma s supply problem 159 10 11 George Alonzo Johnson with his partner Hartshorne and a new partner Captain Alfred H Wilcox formerly of the Invincible and Sierra Nevada formed George A Johnson amp Company and obtained the next contract to supply the fort Johnson and his partners all having learned lessons from their failed attempts ascending the Colorado and with the example of the Uncle Sam brought the parts of a more powerful side wheel steamboat the General Jesup with them to the mouth of the Colorado from San Francisco There it was reassembled at a landing in the upper tidewater of the river and reached Fort Yuma January 18 1854 This new boat capable of carrying 50 tons of cargo was very successful making round trips from the estuary to the fort in only four or five days Costs were cut from 200 to 75 per ton 159 11 12 161 34 Exploration and navigation above Fort Yuma 1851 1887 Edit Lithograph of Fort Yuma c 1875 Lorenzo Sitgreaves led the first Corps of Topographical Engineers mission across northern Arizona to the Colorado River near modern Bullhead City Arizona and down its east bank to the river crossings of the Southern Immigrant Trail at Fort Yuma in 1851 162 163 The second Corps of Topographical Engineers expedition passed along and crossed the Colorado was the 1853 1854 Pacific Railroad Survey expedition along the 35th parallel north from Oklahoma to Los Angeles led by Lt Amiel Weeks Whipple 164 George A Johnson was instrumental in getting the support for Congressional funding a military expedition up the river With those funds Johnson expected to provide the transportation for the expedition but was angry and disappointed when the commander of the expedition Lt Joseph Christmas Ives rejected his offer of one of his steamboats Before Ives could finish reassembling his steamer in the delta George A Johnson set off from Fort Yuma on December 31 1857 conducting his own exploration of the river above the fort in his steamboat General Jesup He ascended the river in twenty one days as far as the first rapids in Pyramid Canyon over 300 miles 480 km above Fort Yuma and 8 miles 13 km above the modern site of Davis Dam Running low on food he turned back 159 16 17 19 165 As he returned he encountered Lieutenant Ives Whipple s assistant who was leading an expedition to explore the feasibility of using the Colorado River as a navigation route in the Southwest Ives and his men used a specially built steamboat the shallow draft U S S Explorer and traveled up the river as far as Black Canyon He then took a small boat up beyond the canyon to Fortification Rock and Las Vegas Wash 166 Part 1 85 87 After experiencing numerous groundings and accidents and having been inhibited by low water in the river Ives declared Ours has been the first and will doubtless be the last party of whites to visit this profitless locality It seems intended by nature that the Colorado River along the greater portion of its lonely and majestic way shall be forever unvisited and undisturbed 167 168 Until 1866 El Dorado Canyon was the actual head of navigation on the Colorado River In that year Captain Robert T Rogers commanding the steamer Esmeralda with a barge and ninety tons of freight reached Callville Nevada on October 8 1866 159 49 Callville remained the head of navigation on the river until July 7 1879 when Captain J A Mellon in the Gila left El Dorado Canyon landing steamed up through the rapids in Black Canyon making record time to Callville and tied up overnight Next morning he to steamed up through the rapids in Boulder Canyon to reach the mouth of the Virgin River at Rioville July 8 1879 From 1879 to 1887 Rioville Nevada was the high water Head of Navigation for the steamboats and the mining company sloop Sou Wester that carried the salt needed for the reduction of silver ore from there to the mills at El Dorado Canyon 159 78 Powell s expeditions 1869 1871 Edit Up until the mid 19th century long stretches of the Colorado and Green rivers between Wyoming and Nevada remained largely unexplored due to their remote location and dangers of navigation Because of the dramatic drop in elevation of the two rivers there were rumors of huge waterfalls and violent rapids and Native American tales strengthened their credibility 169 In 1869 one armed Civil War veteran John Wesley Powell led an expedition from Green River Station in Wyoming aiming to run the two rivers all the way down to St Thomas Nevada near present day Hoover Dam 170 Powell and nine men none of whom had prior whitewater experience set out in May After braving the rapids of the Gates of Lodore Cataract Canyon and other gorges along the Colorado the party arrived at the mouth of the Little Colorado River where Powell noted down arguably the most famous words ever written about the Grand Canyon of the Colorado 171 Marble Canyon one of the many gorges that Powell s expedition traversed We are now ready to start on our way down the Great Unknown Our boats tied to a common stake are chafing each other as they are tossed by the fretful river They ride high and buoyant for their loads are lighter than we could desire We have but a month s rations remaining The flour has been re sifted through the mosquito net sieve the spoiled bacon has been dried and the worst of it boiled the few pounds of dried apples have been spread in the sun and re shrunken to their normal bulk the sugar has all melted and gone on its way down the river but we have a large sack of coffee The lighting of the boats has this advantage they will ride the waves better and we shall have little to carry when we make a portage We are three quarters of a mile in the depths of the earth and the great river shrinks into insignificance as it dashes its angry waves against the walls and cliffs that rise to the world above they are but puny ripples and we but pigmies running up and down the sands or lost among the boulders We have an unknown distance yet to run an unknown river yet to explore What falls there are we know not what rocks beset the channel we know not what walls rise over the river we know not Ah well we may conjecture many things The men talk as cheerfully as ever jests are bandied about freely this morning but to me the cheer is somber and the jests are ghastly John Wesley Powell s journal August 1869 171 On August 28 1869 three men deserted the expedition convinced that they could not possibly survive the trip through the Grand Canyon They were allegedly killed by Native Americans after making it to the rim of the canyon two days later the expedition ran the last of the Grand Canyon rapids and reached St Thomas 172 Powell led a second expedition in 1871 this time with financial backing from the U S government 173 The explorers named many features along the Colorado and Green rivers including Glen Canyon the Dirty Devil River Flaming Gorge and the Gates of Lodore In what is perhaps a twist of irony modern day Lake Powell which floods Glen Canyon is also named for their leader 174 American settlement Edit The steamboat Mohave No 2 at Yuma c 1876 Starting in the latter half of the 19th century the lower Colorado below Black Canyon became an important waterway for steamboat commerce In 1852 the Uncle Sam was launched to provide supplies to the U S Army outpost at Fort Yuma Although this vessel accidentally foundered and sank early in its career commercial traffic quickly proliferated because river transport was much cheaper than hauling freight over land 175 Navigation on the Colorado River was dangerous because of the shallow channel and flow variations so the first sternwheeler on the river the Colorado of 1855 was designed to carry 60 short tons 54 t while drawing less than 2 feet 0 6 m of water 176 The tidal bore of the lower Colorado also presented a major hazard in 1922 a 15 foot 4 6 m high wave swamped a ship bound for Yuma killing between 86 and 130 people 177 178 Steamboats quickly became the principal source of communication and trade along the river until competition from railroads began in the 1870s and finally the construction of dams along the lower river in 1909 none of which had locks to allow the passage of ships 179 During the Manifest Destiny era of the mid 19th century American pioneers settled many western states but generally avoided the Colorado River basin until the 1850s Under Brigham Young s grand vision for a vast empire in the desert 180 the State of Deseret Mormon settlers were among the first whites to establish a permanent presence in the watershed Fort Clara or Fort Santa Clara in the winter of 1855 1856 along the Santa Clara River tributary of the Virgin River In the lower Colorado mining was the primary spur to economic development copper mining in southwestern New Mexico Territory the 1850s then the Mohave War and a gold rush on the Gila River in 1859 the El Dorado Canyon Rush in 1860 and Colorado River Gold Rush in 1862 In 1860 anticipating the American Civil War the Mormons established a number of settlements to grow cotton along the Virgin River in Washington County Utah From 1863 to 1865 Mormon colonists founded St Thomas and other colonies on the Muddy and Virgin rivers in northwestern Arizona Territory now Clark County Nevada Stone s Ferry was established by these colonists on the Colorado at the mouth of the Virgin River to carry their produce on a wagon road to the mining districts of Mohave County Arizona to the south Also in 1866 a steamboat landing was established at Callville intended as an outlet to the Pacific Ocean via the Colorado River for Mormon settlements in the Great Basin These settlements reached a peak population of about 600 before being abandoned in 1871 and for nearly a decade these valleys became a haven for outlaws and cattle rustlers 181 One Mormon settler Daniel Bonelli remained operating the ferry and began mining salt in nearby mines bring it in barges down river to El Dorado Canyon where it was used to process silver ore From 1879 to 1887 Colorado Steam Navigation Company steamboats carried the salt operating up river in the high spring flood waters through Boulder Canyon to the landing at Rioville at the mouth of the Virgin River From 1879 to 1882 the Southwestern Mining Company largest in El Dorado Canyon brought in a 56 foot sloop the Sou Wester that sailed up and down river carrying the salt in the low water time of year until it was wrecked in the Quick and Dirty Rapids of Black Canyon 159 78 John D Lee established a permanent ferry across the Colorado Mormons founded settlements along the Duchesne River Valley in the 1870s and populated the Little Colorado River valley later in the century settling in towns such as St Johns Arizona 136 They also established settlements along the Gila River in central Arizona beginning in 1871 These early settlers were impressed by the extensive ruins of the Hohokam civilization that previously occupied the Gila River valley and are said to have envisioned their new agricultural civilization rising as the mythical phoenix bird from the ashes of Hohokam society 121 The Mormons were the first whites to develop the water resources of the basin on a large scale and built complex networks of dams and canals to irrigate wheat oats and barley in addition to establishing extensive sheep and cattle ranches 180 One of the main reasons the Mormons were able to colonize Arizona was the existence of Jacob Hamblin s ferry across the Colorado at Lee s Ferry then known as Pahreah Crossing which began running in March 1864 182 This location was the only section of river for hundreds of miles in both directions where the canyon walls dropped away allowing for the development of a transport route John Doyle Lee established a more permanent ferry system at the site in 1870 One reason Lee chose to run the ferry was to flee from Mormon leaders who held him responsible for the Mountain Meadows massacre in which 120 emigrants in a wagon train were killed by a local militia disguised as Native Americans Even though it was located along a major travel route Lee s Ferry was very isolated and there Lee and his family established the aptly named Lonely Dell Ranch 182 In 1928 the ferry sank resulting in the deaths of three men Later that year the Navajo Bridge was completed at a point 5 miles 8 km downstream rendering the ferry obsolete 183 Gold strikes from the mid 19th to early 20th centuries played a major role in attracting settlers to the upper Colorado River basin In 1859 a group of adventurers from Georgia discovered gold along the Blue River in Colorado and established the mining boomtown of Breckenridge 184 During 1875 even bigger strikes were made along the Uncompahgre and San Miguel rivers also in Colorado and these led to the creation of Ouray and Telluride respectively 185 186 Because most gold deposits along the upper Colorado River and its tributaries occur in lode deposits extensive mining systems and heavy machinery were required to extract them Mining remains a substantial contributor to the economy of the upper basin and has led to acid mine drainage problems in some regional streams and rivers 187 188 Harrison Gray Otis president of the Colorado River Land Company The Colorado River region in Mexico became favored place for Americans to invest in agriculture in the late nineteenth century when Mexico President Porfirio Diaz welcomed foreign capital to develop the country The Colorado River Land Company formed by Los Angeles Times publisher Harry Chandler his father in law Harrison Gray Otis and others developed the Mexicali Valley in Baja California as a thriving land company The company headquarters was nominally based in Mexico but its real headquarters was in Los Angeles California Land was leased mainly to Americans who were required to develop it Colorado River was used to irrigate the rich soil The company largely escaped the turmoil of the Mexican Revolution 1910 20 but in the postrevolutionary period the Mexican government expropriated the company s land to satisfy the demand for land reform 189 190 191 Naming of the upper Colorado River and controversy Edit Prior to 1921 the upper Colorado River above the confluence with the Green River in Utah had assumed various names Fathers Dominguez and Escalante named it Rio San Rafael in 1776 Through the mid 1800s the river between Green River and the Gunnison River was most commonly known as the Grand River The river above the junction with the Gunnison River however was known variously as the Bunkara River the North Fork of the Grand River the Blue River and the Grand River The latter name did not become consistently applied until the 1870s 192 In 1921 U S Representative Edward T Taylor of Colorado petitioned the Congressional Committee on Interstate and Foreign Commerce to rename the Grand River as the Colorado River Taylor saw the fact that the Colorado River started outside the border of his state as an abomination 193 On July 25 the name change was made official in House Joint Resolution 460 of the 66th Congress over the objections of representatives from Wyoming Utah and the USGS which noted that the Green River was much longer and had a larger drainage basin above its confluence with the Grand River although the Grand contributed a greater flow of water 192 194 n 7 Engineering and development Edit Hoover Dam releasing water in 1998 See also International Boundary and Water Commission Dams in the Colorado River system and Colorado River Compact About 40 million people depend on the Colorado River s water for agricultural industrial and domestic needs 196 The Colorado irrigates 5 5 million acres 2 2 million hectares of farmland 196 and its hydroelectric plants produce 12 billion kilowatt hours KWh of hydroelectricity each year 197 Hydroelectricity from the Colorado is a key supplier of peaking power on the Southwest electric grid 198 199 Often called America s Nile 200 the Colorado is so intensively managed that each drop of its water is used an average of 17 times in a single year 201 202 Southern Nevada Water Authority has called the Colorado River one of the most controlled controversial and litigated rivers in the world 203 Colorado River water allocations in millions of acre feet 204 205 206 User Amount ShareUnited States 15 0 90 9 California 4 4 26 7 Colorado 3 88 23 5 Arizona 2 8 17 0 Utah 1 72 10 4 Wyoming 1 05 6 4 New Mexico 0 84 5 1 Nevada 0 3 1 8 Mexico 1 5 9 1 Total 16 5 100 In 1922 six U S states signed the Colorado River Compact which divided half of the river s flow to both the Upper Basin the drainage area above Lee s Ferry comprising parts of Colorado New Mexico Utah and Wyoming and a small portion of Arizona and the Lower Basin Arizona California Nevada and parts of New Mexico and Utah The Upper and Lower Basin were each allocated 7 5 million acre feet 9 3 km3 of water per year a figure believed to represent half of the river s annual flow at Lee s Ferry 204 The allotments operated under the premise that approximately 17 5 million acre feet of water flowed through the river annually 207 Arizona initially refused to ratify the compact because it feared that California would take too much of the lower basin allotment In 1944 a compromise was reached in which Arizona was allocated 2 8 million acre feet 3 5 km3 but with the caveat that California s 4 4 million acre foot 5 4 km3 allocation was prioritized during drought years 208 These and nine other decisions compacts federal acts and agreements made between 1922 and 1973 constitute what is now known as the Law of the River 208 209 In 1944 a treaty between the U S and Mexico allocated 1 5 million acre feet 1 9 km3 of Colorado River water to Mexico each year 205 Morelos Dam was constructed in 1950 to enable Mexico to utilize its share of the river Water allocated to Mexico from the Colorado River is regulated by the International Boundary and Water Commission which also apportions waters from the Rio Grande between the two countries 210 Transmountain diversions Edit Large scale development of Colorado River water supplies started in the late 19th century at the river s headwaters in La Poudre Pass The Grand Ditch directing runoff from the river s headwaters across the Continental Divide to arid eastern Colorado was considered an engineering marvel when completed in 1890 211 This was the first of twenty four transmountain diversions constructed to draw water across the Rocky Mountains as the Front Range corridor increased in population 212 These diversions draw water from the upper Colorado and its tributaries into the South Platte River Arkansas River and Rio Grande basins 213 Today about 80 percent of Colorado s population lives on the Eastern Slope of the Rockies while 80 percent of precipitation falls on the Western Slope 214 The Grand Ditch one of the earliest water diversions of the Colorado River is still in use today While first planned at the same time as the Grand Ditch construction on the Colorado Big Thompson Project C BT did not begin until the 1930s Today the C BT is the largest of the transmountain diversions delivering 230 000 acre feet 280 000 000 m3 per year from the Colorado River to cities north of Denver 215 Numerous other projects followed with the largest including the Roberts Tunnel which delivers water from the Blue River to the city of Denver 216 217 and the Fryingpan Arkansas Project which diverts water from the Fryingpan River to the Arkansas River basin 218 Combined the transmountain diversions draw about 580 000 acre feet 720 000 000 m3 of water per year out of the Colorado River basin 213 Historically most of the water has been used for irrigation although water usage is increasing for urban water supply and for recreational purposes such as snowmaking and increasing Eastern Slope streamflows for boating and fishing Denver Water receives about 50 percent of its supply from the Colorado River basin However diversions have caused environmental harm to the upper Colorado River system by reducing streamflows in many tributaries 213 A number of reservoirs have been built to offset the impact of transmountain diversions by storing water for dry season release on the Western Slope including Williams Fork Reservoir in 1959 219 and Wolford Mountain Reservoir in 1996 220 The Imperial Valley disaster Edit Main articles Alamo Canal and Salton Sea In 1900 the California Development Company CDC envisioned irrigating the Imperial Valley a then dry basin on the California Mexico border using water from the Colorado River Due to the valley s location below sea level water could be diverted and allowed to flow there entirely by gravity Engineer George Chaffey was hired to design the Alamo Canal which split from the Colorado near Pilot Knob California and ran south into Mexico where it joined the Alamo River a dry arroyo which had historically carried overflowing floodwaters from the Colorado into the Salton Sink at the bottom of Imperial Valley The scheme worked initially by 1903 about four thousand people lived in the valley and more than 100 000 acres 40 000 ha of farmland had been developed 221 222 The Alamo Canal experienced continual problems due to the Colorado s high sediment content and its varying water levels During low flows the river often dropped below the level of the canal intake while high flows silted up the intake forcing the repeated excavation of new cuts In early 1905 flooding destroyed the intake gates and water began to flow uncontrolled down the canal towards the Salton Sink By August the breach had grown large enough to swallow the entire flow of the river which began to flood the bottom of the valley The Southern Pacific Railroad attempted to dam the flow in order to protect their tracks which ran through the valley but was hampered by repeated flooding 222 It took seven attempts more than 3 million and two years for the railroad the CDC and the federal government to permanently block the breach and restore the river s original course but not before part of the Imperial Valley was flooded under a 45 mile long 72 km lake today s Salton Sea The Imperial Valley fiasco demonstrated that further economic development of the region would require a dam to control the Colorado s unpredictable flows 223 224 225 Boulder Canyon Project Edit Hoover Dam under construction 1934 The Imperial Dam bottom right diverts water into the All American Canal center running towards Imperial Valley A large dam on the Colorado River had been envisioned since the 1920s In 1928 Congress authorized the Reclamation Service today s U S Bureau of Reclamation or USBR to build the Boulder Canyon Project whose key feature would be a dam on the Colorado in Black Canyon 30 miles 48 km southeast of Las Vegas Nevada On September 30 1935 Hoover Dam was completed forming Lake Mead capable of holding more than two years of the Colorado s flow Lake Mead was and still is the largest artificial lake in the U S by storage capacity 28 226 The construction of Hoover Dam stabilized the lower channel of the Colorado River stored water for irrigation in times of drought captured sediment and controlled floods Hoover was the tallest dam in the world at the time of construction and also had the world s largest hydroelectric power plant 227 The Boulder Canyon Project Act also authorized the All American Canal 228 which was built as a permanent replacement for the Alamo Canal and follows a route entirely within the U S on its way to the Imperial Valley The canal s intake is located at Imperial Dam 20 miles 32 km above Yuma Arizona which diverts the majority of the Colorado s flow with only a small portion continuing to Mexico With a capacity of over 26 000 cubic feet per second 740 m3 s the All American Canal is the largest irrigation canal in the world 229 Because the hot sunny climate lends to a year round growing season the Imperial Valley has become one of the most productive farming regions in North America providing much of the winter produce supply in the U S 8 The Imperial Irrigation District supplies water to 520 000 acres 210 000 ha south of the Salton Sea 230 The Coachella Canal which branches northward from the All American Canal irrigates another 78 000 acres 32 000 ha in the Coachella Valley 231 Parker Dam was initially built as the diversion point for the Colorado River Aqueduct planned by the Metropolitan Water District of Southern California to supply water to Los Angeles 232 The construction of the dam was opposed by Arizona which feared that California would take too much water from the Colorado at one point Arizona sent members of its National Guard to stop work on the dam Ultimately a compromise was reached with Arizona dropping its objections in exchange for the USBR constructing the Gila Project which irrigates 110 000 acres 450 km2 on the Arizona side of the river 233 By 1941 the 241 mile 388 km long Colorado River Aqueduct was completed delivering 1 2 million acre feet 1 5 km3 of water west to Southern California The aqueduct enabled the continued growth of Los Angeles and its suburbs and provides water to about 10 million people today 234 The San Diego Aqueduct which branches off from the Colorado River Aqueduct in Riverside County California opened in stages between 1954 1971 and provides water to another 3 million people in the San Diego metro area 235 The Las Vegas Valley of Nevada experienced rapid growth after Hoover Dam and by 1937 Las Vegas had tapped a pipeline into Lake Mead Nevada officials believing that groundwater resources in the southern part of the state were sufficient for future growth were more concerned with securing a large amount of the dam s power supply than water from the Colorado thus they settled for the smallest water allocation of all the states in the Colorado River Compact 236 In 2018 due to declining water levels in Lake Mead a second pipeline was completed with a lower intake elevation Colorado River Storage Project Edit Main article Colorado River Storage Project In the first half of the 20th century the Upper Basin states with the exception of Colorado had developed very little of their water allocations from the Colorado River Compact By the 1950s however water demand was rapidly increasing in Utah s Wasatch Front Salt Lake City metro area and the Rio Grande Valley of New Mexico which both began exploring ways to divert water from the Colorado Basin 237 The Upper Basin states were concerned that they would not be able to use their full Compact allocations due to increasing water demands in the Lower Basin The Compact requires the Upper Basin to deliver a minimum annual flow of 7 5 million acre feet 9 3 109 m3 past Lee s Ferry measured on a 10 year rolling average Without additional reservoir storage the Upper Basin states could not utilize their allocations without impacting water deliveries to the Lower Basin in dry years 238 Glen Canyon Dam the largest dam of the Colorado River Storage Project In 1956 Congress authorized the USBR to construct the Colorado River Storage Project CRSP which planned several large reservoirs on the upper Colorado Green Gunnison and San Juan Rivers 238 The initial blueprints for the CRSP included two dams on the Green River within Echo Park Canyon in Dinosaur National Monument a move criticized by both the National Park Service and environmental groups such as the Sierra Club The controversy received nationwide media attention and the USBR dropped its plans for the Dinosaur dams in exchange for increasing the size of a proposed dam at Glen Canyon 239 The controversy associated with Glen Canyon Dam did not build momentum until construction was well underway Due to Glen Canyon s remote location most of the American public did not even know of its existence the few who did contended that it had much greater scenic value than Echo Park Sierra Club leader David Brower fought the dam both during the construction and for many years afterwards until his death in 2000 Brower believed that he was personally responsible for the failure to prevent Glen Canyon s flooding calling it his greatest mistake greatest sin 240 241 In addition to Glen Canyon Dam the CRSP includes the Flaming Gorge Dam on the Green River the Blue Mesa Morrow Point and Crystal Dams on the Gunnison River and the Navajo Dam on the San Juan River A total of 22 participating projects of which 16 have been constructed were later authorized in order to develop local water supplies at various locations across the Upper Basin states 238 These include the Central Utah Project which delivers 102 000 acre feet 126 000 000 m3 per year from the Green River basin to the Wasatch Front and the San Juan Chama Project which diverts 110 000 acre feet 140 000 000 m3 per year from the San Juan River to the Rio Grande Valley Both are multi purpose projects serving a variety of agricultural municipal and industrial uses 242 243 Pacific Southwest Water Plan Edit The main canal of the Central Arizona Project crossing the Sonoran Desert By the middle of the 20th century planners were concerned that continued growth in water demand would outstrip the available water supply from the Colorado River After exploring a multitude of potential projects the USBR published a study in January 1964 known as the Pacific Southwest Water Plan which proposed diverting water from the northwestern United States into the Colorado River basin 244 Arizona s water allocation was a significant focus of the plan due to the growing concern that its water supply could be curtailed due to California s seniority of water rights In addition the plan would guarantee full water supplies to Nevada California and Mexico allowing the Upper Basin states to utilize their full allocations without risking reductions in the Lower Basin 244 The project would cost an estimated 3 1 billion 245 The first stage of this plan would divert water from Northern California s Trinity Klamath and Eel Rivers to Southern California allowing more Colorado River water to be used by exchange in Arizona A canal system which ultimately would become the Central Arizona Project CAP would be constructed to deliver Arizona s Colorado River allocation to Phoenix and Tucson both located far away from the Colorado River in the middle of the state At this point central Arizona was still entirely dependent on local water supplies such as the 1911 Theodore Roosevelt Dam 246 and was quickly running out of surplus water 244 In order to supply the massive amount of power required to pump Colorado River water to central Arizona two hydroelectric dams were proposed in the Grand Canyon Bridge Canyon Dam and Marble Canyon Dam which while not directly located in Grand Canyon National Park would greatly impact flows of the Colorado River through the park 244 With the controversy over Glen Canyon Dam still ongoing the public pressure against these dams was immense 245 As a result the two Grand Canyon dams were omitted from the final CAP authorization in 1968 247 In addition the boundaries of Grand Canyon National Park were redrawn to prevent future dam projects in the area The pumping power was replaced by the building of the coal fired Navajo Generating Station near Page Arizona in 1976 248 249 250 In 2019 the Navajo Generating Station ceased operation 251 The CAP was constructed in stages from 1973 to 1993 ultimately extending 336 miles 541 km from the Colorado River at Parker Dam to Tucson Arizona It delivers 1 4 million acre feet 1 7 km3 of water per year irrigates 830 000 acres 3 400 km2 of farmland and provides municipal water to about 5 million people 248 Due to environmental concerns most of the facilities proposed in the Pacific Southwest Water Plan were never built though a smaller version of the Trinity River project was constructed as part of the unrelated Central Valley Project 252 leaving Arizona and Nevada vulnerable to future water reductions under the Compact 253 Uncertain future Edit See also Southwestern North American megadrought The Colorado is a deficit river as if the river were somehow at fault for its overuse Marc Reisner in Cadillac Desert 254 When the Colorado River Compact was drafted in the 1920s it was based on barely 30 years of streamflow records that suggested an average annual flow of 17 5 million acre feet 21 6 km3 past Lee s Ferry 255 Modern studies of tree rings revealed that those three decades were probably the wettest in the past 500 to 1 200 years and that the natural long term annual flow past Lee s Ferry is probably closer to 13 5 million acre feet 16 7 km3 256 n 8 with a natural flow at the mouth around 16 3 million acre feet 20 1 km3 3 This has resulted in more water being allocated to river users than actually exists in the Colorado 258 Droughts have exacerbated the issue of water over allocation 259 260 Lake Mead in 2010 showing the bathtub ring left behind by low water levels The most severe drought on record the southwestern North American megadrought began in the early 21st century in which the river basin has produced above average runoff in only five years between 2000 and 2021 261 The region is experiencing a warming trend which is accompanied by earlier snowmelt lower precipitation and greater evapotranspiration A 2004 study showed that a 1 6 percent decrease of precipitation would lead to runoff declining by as much as 18 percent by 2050 262 Since 2000 reservoir levels have fluctuated greatly from year to year but have experienced a steady long term decline 263 The particularly dry spell between 2000 and 2004 brought Lake Powell to just a third of capacity in 2005 the lowest level on record since initial filling in 1969 264 In late 2010 Lake Mead was approaching the drought trigger elevation of 1 075 feet 328 m at which water supplies to Arizona and Nevada would be reduced in accordance with the Colorado River Compact 265 Due to Arizona and Nevada s water rights being junior to California s their allocations can legally be cut to zero before any reductions are made on the California side 258 266 A wet winter in 2011 temporarily raised lake levels 267 268 but dry conditions returned in the next two years 269 In 2014 the Bureau of Reclamation cut releases from Lake Powell by 10 percent the first such reduction since the 1960s when Lake Powell was being filled for the first time 270 This resulted in Lake Mead dropping to its lowest recorded level since 1937 when it was first being filled 271 Water year 2018 had a much lower than average snowpack 272 273 In July 2021 after two more extremely dry winters Lake Powell fell below the previous low set in 2005 In response the Bureau of Reclamation began releasing water from upstream reservoirs in order to keep Powell above the minimum level for hydropower generation 274 275 Lake Mead fell below the 1 075 foot 328 m level expected to trigger federally mandated cuts to Arizona and Nevada s water supplies for the first time in history and is expected to continue declining into 2022 276 On August 16 2021 the Bureau of Reclamation released the Colorado River Basin August 2021 24 Month Study and for the first time declared a shortage and that because of ongoing historic drought and low runoff conditions in the Colorado River Basin downstream releases from Glen Canyon Dam and Hoover Dam will be reduced in 2022 due to declining reservoir levels 277 The Lower Basin reductions will reduce the annual apportionments Arizona s by 18 percent Nevada s by 7 percent and Mexico s by 5 percent 278 On June 14 2022 Bureau of Reclamation Commissioner Camille Touton told the Senate Committee on Energy and Natural resources that additional cuts of 2 4 million acre feet were required to stabilize reservoir levels in 2023 Touton warned that if states were unable to negotiate the requisite cuts the Interior department may use its legal authority to cut releases 279 When the states were unable to come to an agreement about how to share the proposed cuts Reclamation began the legal steps to unilaterally reduce releases from Hoover and Glen Canyon Dams in 2023 280 As of December 2022 the lower basin states of Nevada Arizona and California had not agreed on how to reduce water use by the approximately 30 required to keep levels in lakes Mead and Powell from crashing 281 The Bureau of Reclamation has projected that water levels at Lake Powell could fall low enough that by July 2023 Glen Canyon dam would no longer be able to generate any hydropower 282 Ecology EditWildlife and plants Edit Further information List of flora of the Lower Colorado River Valley Heavily forested banks of the Colorado River near Topock Arizona The Colorado River and its tributaries often nourish extensive corridors of riparian growth as they traverse the arid desert regions of the watershed Although riparian zones represent a relatively small proportion of the basin and have been affected by engineering projects and river diversion in many places they have the greatest biodiversity of any habitat in the basin 283 The most prominent riparian zones along the river occur along the lower Colorado below Davis Dam 284 especially in the Colorado River Delta where riparian areas support 358 species of birds despite the reduction in freshwater flow and invasive plants such as tamarisk salt cedar 285 Reduction of the delta s size has also threatened animals such as jaguars and the vaquita porpoise which is endemic to the gulf 286 Human development of the Colorado River has also helped to create new riparian zones by smoothing the river s seasonal flow notably through the Grand Canyon 287 More than 1 600 species of plants grow in the Colorado River watershed ranging from the creosote bush saguaro cactus and Joshua trees of the Sonoran and Mojave Deserts to the forests of the Rocky Mountains and other uplands composed mainly of ponderosa pine subalpine fir Douglas fir and Engelmann spruce 63 Before logging in the 19th century forests were abundant in high elevations as far south as the Mexico U S border and runoff from these areas nourished abundant grassland communities in river valleys Some arid regions of the watershed such as the upper Green River valley in Wyoming Canyonlands National Park in Utah and the San Pedro River valley in Arizona and Sonora supported extensive reaches of grassland roamed by large mammals such as buffalo and antelope as late as the 1860s Near Tucson Arizona where now there is only powder dry desert the grass once reached as high as the head of a man on horse back 288 Rivers and streams in the Colorado basin were once home to 49 species of native fish of which 42 were endemic Engineering projects and river regulation have led to the extinction of four species and severe declines in the populations of 40 species 289 Bonytail chub razorback sucker Colorado pikeminnow and humpback chub are among those considered the most at risk all are unique to the Colorado River system and well adapted to the river s natural silty conditions and flow variations Clear cold water released by dams has significantly changed characteristics of habitat for these and other Colorado River basin fishes 290 A further 40 species that occur in the river today notably the brown trout were introduced during the 19th and 20th centuries mainly for sport fishing 291 Environmental impacts Edit The Colorado was named for the reddish color caused by its natural sediment loads but damming the river has caused it to acquire a clear green hue as seen here in lower Glen Canyon Historically the Colorado transported from 85 to 100 million short tons 77 000 000 to 91 000 000 t of sediment or silt to the Gulf of California each year second only to the Mississippi among North American rivers 292 This sediment nourished wetlands and riparian areas along the river s lower course particularly in its 3 000 square mile 7 800 km2 delta once the largest desert estuary on the continent 293 Currently the majority of sediments carried by the Colorado River are deposited at the upper end of Lake Powell and most of the remainder ends up in Lake Mead Various estimates place the time it would take for Powell to completely fill with silt at 300 to 700 years Dams trapping sediment not only pose damage to river habitat but also threaten future operations of the Colorado River reservoir system 294 Reduction in flow caused by dams diversions water for thermoelectric power stations 295 and evaporation losses from reservoirs the latter of which consumes more than 15 percent of the river s natural runoff 296 has had severe ecological consequences in the Colorado River Delta and the Gulf of California Historically the delta with its large freshwater outflow and extensive salt marshes provided an important breeding ground for aquatic species in the Gulf Today s desiccated delta at only a fraction of its former size no longer provides suitable habitat and populations of fish shrimp and sea mammals in the gulf have seen a dramatic decline 197 Since 1963 the only times when the Colorado River has reached the ocean have been during El Nino events in the 1980s and 1990s 297 Reduced flows have led to increases in the concentration of certain substances in the lower river that have impacted water quality Salinity is one of the major issues and also leads to the corrosion of pipelines in agricultural and urban areas 298 The lower Colorado s salt content was about 50 parts per million ppm in its natural state 197 but by the 1960s it had increased to well over 2000 ppm 299 By the early 1970s there was also serious concern about salinity caused by salts leached from local soils by irrigation drainage water which were estimated to add 10 million short tons 9 100 000 t of excess salt to the river per year The Colorado River Basin Salinity Control Act was passed in 1974 mandating conservation practices including the reduction of saline drainage The program reduced the annual load by about 1 2 million short tons 1 100 000 t but salinity remains an ongoing issue 300 In 1997 the USBR estimated that saline irrigation water caused crop damages exceeding 500 million in the U S and 100 million in Mexico Further efforts have been made to combat the salt issue in the lower Colorado including the construction of a desalination plant at Yuma 301 In 2011 the seven U S states agreed upon a Plan of Implementation which aims to reduce salinity by 644 000 short tons 584 000 t per year by 2030 300 In 2013 the Bureau of Reclamation estimated that around 32 million was spent each year to prevent around 1 2 million tons of salt from entering and damaging the Colorado River 298 Agricultural runoff containing pesticide residues has also been concentrated in the lower river in greater amounts This has led to fish kills six of these events were recorded between 1964 and 1968 alone 302 The pesticide issue is even greater in streams and water bodies near agricultural lands irrigated by the Imperial Irrigation District with Colorado River water In the Imperial Valley Colorado River water used for irrigation overflows into the New and Alamo rivers and into the Salton Sea Both rivers and the sea are among the most polluted bodies of water in the United States posing dangers not only to aquatic life but to contact by humans and migrating birds 303 304 Pollution from agricultural runoff is not limited to the lower river the issue is also significant in upstream reaches such as Colorado s Grand Valley also a major center of irrigated agriculture 305 Large dams such as Hoover and Glen Canyon typically release water from lower levels of their reservoirs resulting in stable and relatively cold year round temperatures in long reaches of the river The Colorado s average temperature once ranged from 85 F 29 C at the height of summer to near freezing in winter but modern flows through the Grand Canyon for example rarely deviate significantly from 46 F 8 C 306 Changes in temperature regime have caused declines of native fish populations and stable flows have enabled increased vegetation growth obstructing riverside habitat 307 These flow patterns have also made the Colorado more dangerous to recreational boaters people are more likely to die of hypothermia in the colder water and the general lack of flooding allows rockslides to build up making the river more difficult to navigate 308 Minute 319 Edit In the 21st century there has been renewed interest in restoring a limited water flow to the delta In November 2012 the U S and Mexico reached an agreement known as Minute 319 permitting Mexico storage of its water allotment in U S reservoirs during wet years thus increasing the efficiency with which the water can be used In addition to renovating irrigation canals in the Mexicali Valley to reduce leakage this will make about 45 000 acre feet 56 000 000 m3 per year available for release to the delta on average The water will be used to provide both an annual base flow and a spring pulse flow to mimic the river s original snowmelt driven regime 309 310 The first pulse flow an eight week release of 105 000 acre feet 130 000 000 m3 was initiated on March 21 2014 with the aim of revitalising 2 350 acres 950 hectares of wetland 311 This pulse reached the sea on May 16 2014 marking the first time in 16 years that any water from the Colorado flowed into the ocean and was hailed as an experiment of historic political and ecological significance and a landmark in U S Mexican cooperation in conservation 11 312 313 The pulse will be followed by the steady release of 52 000 acre feet 64 000 000 m3 over the following three years just a small fraction of its average flow before damming 311 needs update Recreation Edit A rafting party on the Colorado River Famed for its dramatic rapids and canyons the Colorado is one of the most desirable whitewater rivers in the United States and its Grand Canyon section run by more than 22 000 people annually 314 has been called the granddaddy of rafting trips 315 Grand Canyon trips typically begin at Lee s Ferry and take out at Diamond Creek or Lake Mead they range from one to eighteen days for commercial trips and from two to twenty five days for private trips 316 Private noncommercial trips are extremely difficult to arrange because the National Park Service limits river traffic for environmental purposes people who desire such a trip often have to wait more than 10 years for the opportunity 317 Several other sections of the river and its tributaries are popular whitewater runs and many of these are also served by commercial outfitters The Colorado s Cataract Canyon and many reaches in the Colorado headwaters are even more heavily used than the Grand Canyon and about 60 000 boaters run a single 4 5 mile 7 2 km section above Radium Colorado each year 318 The upper Colorado also includes many of the river s most challenging rapids including those in Gore Canyon which is considered so dangerous that boating is not recommended 318 Another section of the river above Moab known as the Colorado Daily or Fisher Towers Section is the most visited whitewater run in Utah with more than 77 000 visitors in 2011 alone 319 The rapids of the Green River s Gray and Desolation Canyons 320 and the less difficult Goosenecks section of the lower San Juan River are also frequently traversed by boaters 321 Eleven U S national parks Arches Black Canyon of the Gunnison Bryce Canyon Canyonlands Capitol Reef Grand Canyon Mesa Verde Petrified Forest Rocky Mountain Saguaro and Zion are in the watershed in addition to many national forests state parks and recreation areas 322 Hiking backpacking camping skiing and fishing are among the multiple recreation opportunities offered by these areas Fisheries have declined in many streams in the watershed especially in the Rocky Mountains because of polluted runoff from mining and agricultural activities 323 The Colorado s major reservoirs are also heavily traveled summer destinations Houseboating and water skiing are popular activities on Lakes Mead Powell Havasu and Mojave as well as Flaming Gorge Reservoir in Utah and Wyoming and Navajo Reservoir in New Mexico and Colorado Lake Powell and surrounding Glen Canyon National Recreation Area received more than two million visitors per year in 2007 324 while nearly 7 9 million people visited Lake Mead and the Lake Mead National Recreation Area in 2008 325 Colorado River recreation employs some 250 000 people and contributes 26 billion each year to the Southwest economy 326 See also Edit Arizona portal California portal Colorado portal Mexico portal United States portal Utah portalColorado River Delta Colorado Desert List of Colorado River rapids and features List of dams in the Colorado River system List of largest reservoirs in the United States List of longest rivers of Mexico List of longest rivers of the United States by main stem London Bridge Lake Havasu City Moab uranium mill tailings pile Upper Colorado River Endangered Fish Recovery ProgramExplanatory notes Edit Discharge data is for Green River Utah 117 6 miles 189 3 km upstream from the mouth The stream gauge here measures flow from an area of 44 850 square miles 116 200 km2 representing about 93 2 percent of the basin 46 Before large irrigation and municipal diversions the Gila River discharged about 1 3 million acre feet 1 6 km3 per year 43 which equals a flow of nearly 2 000 cubic feet per second 57 m3 s Discharge data is for Bluff Utah located about 113 5 miles 182 7 km above the confluence with the Colorado The gauge measures flow from an area of 23 000 square miles 60 000 km2 about 93 5 percent of the basin 49 Discharge data is for Littlefield Arizona about 66 miles 106 km from the confluence with the Colorado and also upstream of the confluence with its major tributary the Muddy River The gauge measures flow from an area of 5 090 square miles 13 200 km2 about 39 1 percent of the total basin 56 NIB Northerly International Boundary or the point at which the Colorado begins to form the Mexico U S border south of Yuma Also note that the SIB Southerly International Boundary is the point at which the Colorado ceases to form the border and passes entirely into Mexico American population 9 7 million calculated from statistics from the U S Census Bureau 96 and the State of Colorado 97 The population in Mexico is about 3 million 98 The average discharge of the Colorado Grand River at Cisco Utah about 97 miles 156 km upstream from the Green River confluence is 7 181 cubic feet per second 203 3 m3 s between here and the confluence only a few small intermittent tributaries join the river 77 The Green River has an average discharge of 6 048 cubic feet per second 171 3 m3 s as measured at Green River Utah about 117 6 miles 189 3 km above the confluence 46 below here the only major tributary is the San Rafael River which contributes an average of 131 cubic feet per second 3 7 m3 s resulting in a total of 6 169 cubic feet per second 174 7 m3 s still significantly lower than the discharge of the Colorado at their confluence 195 The discrepancy between the natural flow at Lee s Ferry 13 5 million acre feet or 16 65 km3 and the gauged flow between 1922 and 2020 10 58 million acre feet or 13 05 km3 83 is mostly due to water diversions above Lee s Ferry and evaporation from reservoirs especially Lake Powell 257 Citations Edit a b Colorado River Geographic Names Information System United States Geological Survey United States Department of the Interior February 8 1980 Retrieved February 18 2012 a b c d Kammerer J C May 1990 Largest Rivers in the United States U S Geological Survey Retrieved July 2 2010 a b c d Nowak Kenneth C April 2 2012 Stochastic Streamflow Simulation at Interdecadal Time Scales and Implications to Water Resources Management in the Colorado River Basin PDF Center for Advanced Decision Support for Water and Environmental Systems University of Colorado p 114 Archived from the original PDF on May 1 2014 Retrieved July 11 2013 a b USGS Gage 09424000 on the Colorado River near Topock AZ Daily Data National Water Information System U S Geological Survey February 14 1935 Retrieved April 21 2012 a b Wiltshire Gilbert amp Rogers 2010 p 102 The Compact and Lees Ferry Colorado River Streamflow A Paleo Perspective Western Water Assessment Archived from the original on April 29 2012 a b Waterman Jonathan February 15 2012 Where the Colorado Runs Dry The New York Times Retrieved October 14 2014 a b Imperial Valley Encyclopaedia Britannica 1995 San Juan Chama Project Retrieved August 23 2021 Diaz Henry F Anderson Craig A November 28 2003 Precipitation Trends and Water Consumption in the Southwestern United States Impact of Climate Change and Land Use in the Southwestern United States U S Geological Survey Archived from the original on March 9 2012 a b Postel Sandra May 19 2014 A Sacred Reunion The Colorado River Returns to the Sea National Geographic Retrieved May 19 2021 La Poudre Pass Geographic Names Information System United States Geological Survey United States Department of the Interior October 13 1978 Retrieved March 12 2012 Lindberg 2009 p 38 Benke amp Cushing 2005 p 490 a b Pitlick John Cress Robert March 2000 Longitudinal Trends in Channel Characteristics of the Colorado River and Implications for Food Web Dynamics PDF University of Colorado Archived from the original PDF on December 4 2012 Retrieved March 12 2012 U S Geological Survey United States Geological Survey Topographic Maps Fall River Pass Colorado quad TopoQuest Retrieved June 24 2013 U S Geological Survey United States Geological Survey Topographic Maps Westwater Utah quad TopoQuest Retrieved July 14 2013 Affected Environment PDF Remediation of the Moab Uranium Mill Tailings Grand and San Juan Counties Utah Final Environmental Impact Statement Moab Utah UMTRA Project p 28 Archived from the original PDF on October 15 2011 Rigby J Keith Hamblin W Kenneth Matheny Ray Welsh Stanley L 1971 Guidebook to the Colorado River Part 3 Moab to Hite Utah through Canyonlands National Park PDF Brigham Young University Geology Studies Volume 18 Part 2 Brigham Young University Archived from the original PDF on April 2 2015 Retrieved July 14 2013 Hopkins 2002 p 118 Van Cott 1990 p 70 Van Cott 1990 p 155 Rivers Canyonlands National Park U S National Park Service June 17 2011 Retrieved February 19 2012 Lake Powell Colorado River Storage Project U S Bureau of Reclamation November 4 2008 Archived from the original on September 21 2012 Retrieved February 19 2012 Rusho W L 1992 Lee s Ferry Arizona Utah History Encyclopedia University of Utah Archived from the original on January 9 2013 Retrieved February 19 2012 Grand Canyon National Park Arizona Geology Fieldnotes U S National Park Service Archived from the original on October 23 2013 Retrieved July 14 2013 Leopold Luna B The Rapids and the Pools Grand Canyon PDF Geological Survey Professional Paper 669 D U S Geological Survey p 133 Retrieved November 2 2013 a b Hoover Dam Frequently Asked Questions and Answers Lake Mead U S Bureau of Reclamation December 2008 Archived from the original on May 20 2012 Retrieved February 19 2012 Hoover Dam Bypass Is 2012 OCEA Winner OPAL Lifetime Achievement Recipients Honored Pankow Michel Awards Presented American Society of Civil Engineers Archived from the original on March 27 2013 Retrieved July 14 2013 The Colorado River Indian Tribes Reservation C R I T Quick Facts PDF Arizona Cooperative Extension University of Arizona August 2010 Archived from the original PDF on October 21 2011 Retrieved July 14 2013 Appendix J Mainstem Impacts Analysis PDF Draft Environmental Impact Statement Allocation of Water Supply and Long Term Contract Execution Central Arizona Project U S Bureau of Reclamation Archived from the original PDF on January 20 2013 Retrieved April 4 2012 U S Geological Survey United States Geological Survey Topographic Maps Blythe NE California quad TopoQuest Retrieved July 14 2013 Gupta 2007 p 204 Alles David L ed October 28 2011 The Lower Colorado River PDF Biology Department Western Washington University Retrieved July 14 2013 Fighting For Water in Arid Imperial Valley National Public Radio February 10 2011 Retrieved February 19 2012 Border Water Source of Conflict and Cooperation What Makes Management of Border Water Resources a Challenge PDF Arroyo University of Arizona 2012 Retrieved July 14 2013 Valdes Casillas Carlos et al August 1998 Information Database and Local Outreach Program for the Restoration of the Hardy River Wetlands Lower Colorado River Delta Baja California and Sonora Mexico San Diego State University Retrieved February 19 2012 Brian Clark Howard March 24 2014 Historic Pulse Flow Brings Water to Parched Colorado River Delta National Geographic Chanson Hubert 2009 Environmental Ecological and Cultural Impacts of Tidal Bores Benaks Bonos and Burros Proceedings of the International Workshop on Environmental Hydraulics IWEH09 Theoretical Experimental and Computational Solutions University of Queensland Felger amp Broyles 2007 pp 519 520 Executive Summary Green River Basin Water Plan Wyoming State Water Plan February 2001 Archived from the original on November 25 2011 Retrieved February 25 2012 a b c d e f g h i Boundary Descriptions and Names of Regions Subregions Accounting Units and Cataloging Units U S Geological Survey Retrieved February 19 2012 a b Benke amp Cushing 2005 p 514 Benke amp Cushing 2005 pp 532 533 Green River Utah Rivers Council Archived from the original on May 14 2012 Retrieved February 26 2012 a b c USGS Gage 09315000 on the Green River at Green River UT PDF National Water Information System U S Geological Survey 1895 2010 Retrieved February 26 2012 USGS Gage 09520000 on the Gila River near Dome AZ PDF National Water Information System U S Geological Survey 1905 2011 Retrieved February 26 2012 a b The National Map Archived June 30 2016 at the Wayback Machine U S Geological Survey Accessed February 25 2012 a b USGS Gage 09379000 on the San Juan River near Bluff UT PDF National Water Information System U S Geological Survey 1914 2010 Retrieved February 26 2012 Report Findings and Determination Regarding the Navigability of the Little Colorado River From its Headwaters to the Confluence with the Colorado River PDF Arizona Navigable Stream Adjudication Commission 2005 Archived from the original PDF on April 22 2010 Retrieved February 26 2012 USGS Gage 09402300 on the Little Colorado River Above the Mouth near Desert View AZ PDF National Water Information System U S Geological Survey 1990 2010 Retrieved February 26 2012 Fielder 2002 p 403 USGS Gage 09180000 on the Dolores River near Cisco UT PDF National Water Information System U S Geological Survey 1950 2010 Retrieved February 26 2012 USGS Gage 09152000 on the Gunnison River near Grand Junction CO PDF National Water Information System U S Geological Survey 1897 2010 Retrieved February 26 2012 Annerino 1999 p 8 a b USGS Gage 09415000 on the Virgin River at Littlefield AZ PDF National Water Information System U S Geological Survey 1929 2010 Retrieved February 26 2012 a b Wiltshire Gilbert amp Rogers 2010 pp 101 102 Leopold 1994 p 267 Committee to Review the Glen Canyon Environmental Studies 1996 p 51 USGS Gage 09421500 on the Colorado River below Hoover Dam National Water Information System U S Geological Survey 1934 2011 Retrieved October 19 2012 a b c d Climatic Fluctuations Drought and Flow in the Colorado River Basin USGS Fact Sheet 2004 3062 U S Geological Survey August 2004 Retrieved April 17 2012 For A Few Weeks The Colorado River Reached The Ocean Will It Happen Again KPBS Public Media February 19 2018 Retrieved February 27 2022 a b Benke amp Cushing 2005 p 488 Preston Ben March 22 2010 The Risky Business of Slicing the Pie Miller McCune Retrieved June 27 2013 Wahl Kenneth L Collins Dannie L Aldridge Byron N Runoff in the Upper Colorado River Basin Water Years 1983 85 and Comparisons with Forecasts of Runoff to Lake Powell PDF Western Snow Conference Archived from the original PDF on July 14 2012 Cohen Michael J Henges Jeck Christine Castillo Moreno Gerardo 2001 A Preliminary Water Balance for the Colorado River Delta 1992 1998 PDF Journal of Arid Environments 49 1 35 48 Bibcode 2001JArEn 49 35C doi 10 1006 jare 2001 0834 Retrieved June 27 2013 Zimmerman Janet October 6 2010 Colorado River Drought Threatens Power Production The Press Enterprise Riverside California Archived from the original on January 20 2013 Retrieved February 18 2012 Stark Mike April 21 2009 Study Shortages Likely on Colorado River by 2050 USA Today Associated Press Retrieved June 27 2013 Hoerling Martin Eischeid Jon Past Peak Water in the Southwest PDF Western Water Assessment Archived from the original PDF on June 9 2010 McKinnon Shaun August 9 2006 Mines Farms Put Gila River on Life Support Despite Lack of Regulation Some Trying to Restore River to Its Natural Beauty and Wonder Arizona Republic Retrieved February 19 2012 a b Water Year Summary for Site USGS 09522000 Colorado River at Northerly International Boundary above Morelos Dam near Andrade CA National Water Information System U S Geological Survey 1950 2020 Retrieved May 17 2021 Reclamation Colorado River Water Users Association Archived from the original on November 4 2013 Retrieved November 2 2013 Christensen Niklas S Wood Andrew W Voisin Nathalie Lettenmaier Dennis P Palmer Richard N 2004 The Effects of Climate Change on the Hydrology and Water Resources of the Colorado River Basin PDF Climatic Change 62 337 363 345 doi 10 1023 b clim 0000013684 13621 1f S2CID 53533021 Archived from the original PDF on May 1 2014 Retrieved July 13 2013 USGS Gage 09522200 on the Colorado River at NIB Above Morelos Dam AZ Annual Statistics National Water Information System U S Geological Survey 1951 1992 Retrieved April 27 2012 Water Year Summary for Site USGS 09010500 Colorado River below Baker Gulch near Grand Lake CO National Water Information System U S Geological Survey 1953 2020 Retrieved May 17 2021 Water Year Summary for Site USGS 09070500 Colorado River near Dotsero CO National Water Information System U S Geological Survey 1941 2020 Retrieved May 17 2021 a b Water Year Summary for Site USGS 09180500 Colorado River near Cisco UT National Water Information System U S Geological Survey 1914 2020 Retrieved May 17 2021 a b c Water Year Summary for Site USGS 09380000 Colorado River at Lees Ferry AZ National Water Information System U S Geological Survey 1922 2020 Retrieved May 17 2021 Water Year Summary for Site USGS 09423000 Colorado River below Davis Dam AZ NV National Water Information System U S Geological Survey 1905 2020 Retrieved May 17 2021 Water Year Summary for Site USGS 09427520 Colorado River below Parker Dam AZ CA National Water Information System U S Geological Survey 1935 2020 Retrieved May 17 2021 Water Year Summary for Site USGS 09429600 Colorado River below Laguna Dam AZ CA National Water Information System U S Geological Survey 1972 2020 Retrieved May 17 2021 USGS Surface Water Annual Statistics for USA Grouped by Hydrologic Unit National Water Information System U S Geological Survey Retrieved February 26 2012 a b USGS Gage 09380000 on the Colorado River at Lee s Ferry AZ National Water Information System U S Geological Survey 1921 2010 Retrieved April 21 2012 a b c Benke amp Cushing 2005 pp 483 486 a b c d Watersheds map Commission for Environmental Cooperation 2006 Archived from the original on April 14 2008 a b c d Current Understanding of Colorado River Basin Climate and Hydrology PDF Western Water Assessment April 2020 Retrieved May 24 2022 River Basins of Mexico University of Texas 1975 Archived from the original on November 7 2011 Retrieved February 19 2012 Fassnacht S R 2004 Streamflow Predictability in the Upper Versus Lower Colorado River Sub Basins PDF Eastern Snow Conference Archived from the original PDF on June 23 2012 Retrieved February 19 2012 Lees Ferry historical Geographic Names Information System United States Geological Survey United States Department of the Interior February 8 1980 Retrieved May 25 2022 Annual Report on the Salton Sea Management Program PDF California Natural Resources Agency March 2021 Retrieved May 26 2022 a b c d Singh Ramesh K Senay Gabriel B Velpuri Naga Manohar Kagone Stephanie January 2014 Actual Evapotranspiration Water Use Assessment of the Colorado River Basin at the Landsat Resolution Using the Operational Simplified Surface Energy Balance Model Remote Sensing 6 1 233 256 doi 10 3390 rs6010233 Benke amp Cushing 2005 pp 483 489 Baker Jr Malchus B Ffolliott Peter F 2000 Contributions of Watershed Management Research to Ecosystem Based Management in the Colorado River Basin PDF USDA Forest Service Proceedings RMRS P 13 U S Forest Service Retrieved June 24 2013 Climate and Hydrology of the Colorado River Basin Region National Academies Press 2007 Retrieved May 23 2022 Features and Dynamics of Colorado River Basin Climate Colorado River Basin Water Management Evaluating and Adjusting to Hydroclimatic Variability National Academies Press 2007 doi 10 17226 11857 ISBN 978 0 309 10524 8 Retrieved February 19 2012 State and County QuickFacts U S Census Bureau Archived from the original on March 4 2012 Retrieved March 4 2012 Population and Demographics Colorado Data Book State of Colorado September 2007 Archived from the original PDF on January 20 2013 Colorado River Basin Salinity Control Program Natural Resources Conservation Service U S Department of Agriculture July 12 2010 Retrieved March 4 2012 Colorado River Basin Water Management Evaluating and Adjusting to Hydroclimatic Variability Report in Brief PDF Division on Earth amp Life Studies National Academies February 2007 Retrieved February 19 2012 Prisciantelli 2002 p 56 Cannon Eric April 28 2002 The Mid Tertiary Ignimbrite Flare Up University of Colorado Boulder Archived from the original on July 16 2012 Retrieved February 19 2012 Foos Annabelle Geology of the Colorado Plateau PDF U S National Park Service Archived from the original PDF on September 8 2015 Retrieved February 19 2012 Martin Barajas Arturo et al July 2009 The Tectonic Evolution of the Gulf of California Division of Geological and Planetary Sciences California Institute of Technology Retrieved February 19 2012 Young amp Spamer 2001 p 193 Davis Jim January 2009 Why Does a River Run Through It Survey Notes Utah Geological Survey 41 1 Retrieved February 19 2012 Prisciantelli 2002 p 62 Alles David L ed October 28 2011 Geology of the Salton Trough PDF Western Washington University Retrieved February 29 2012 Buckles Joseph E Krantz Timothy Reconstruction of Prehistoric Shorelines for Cultural Restraints using GIS Salton Sea Database Program ESRI Archived from the original on November 27 2011 Retrieved February 19 2012 Fenton Cassie Webb Bob A Fresh Look at Western Grand Canyon Lava Dams Introduction Grand Canyon River Guides Archived from the original on June 23 2012 Retrieved February 19 2012 Rugg Scott H Austin Steven A August 1998 Evidence for Rapid Formation and Failure of Pleistocene Lava Dams of the Western Grand Canyon Arizona PDF Institute for Creation Research Archived from the original PDF on January 21 2012 Retrieved February 19 2012 Fenton Cassandra R Poreda Robert J Nash Barbara P Webb Robert H Cerling Thure E et al 2004 Geochemical Discrimination of Five Pleistocene Lava Dam Outburst Flood Deposits Western Grand Canyon Arizona PDF Journal of Geology 112 1 91 110 Bibcode 2004JG 112 91F doi 10 1086 379694 S2CID 53339467 Retrieved February 19 2012 Fenton Cassandra R Webb Robert H Cerling Thure E May 6 2005 Peak Discharge of a Pleistocene Lava Dam Outburst Flood in Grand Canyon Arizona USA PDF Quaternary Research U S Geological Survey 65 2 324 Bibcode 2006QuRes 65 324F doi 10 1016 j yqres 2005 09 006 S2CID 128533268 Archived from the original PDF on October 15 2011 Retrieved February 19 2012 a b c d People of the Colorado Plateau Land Use History of North America Northern Arizona University Archived from the original on June 29 2015 Retrieved April 9 2012 Formative Era Fremont Culture U S Bureau of Land Management August 31 2009 Archived from the original on June 23 2012 Retrieved April 9 2012 Fremont Culture Dinosaur National Monument U S National Park Service Retrieved April 9 2012 Vess Deborah The Anasazi Georgia College and State University Archived from the original on June 8 2011 Water Development Extraction and Diversion Land Use History of North America Colorado Plateau Northern Arizona University p 2 Archived from the original on February 14 2015 Retrieved October 21 2014 Fisher Richard D Ancient Knowledge of the Chaco Canyon Anasazi PDF Grand Canyons of the Earth Archived from the original PDF on May 12 2013 History amp Culture Chaco Culture National Historic Park U S National Park Service Retrieved April 9 2012 Pueblo Bonito Evaluating Models of Chaco A Virtual Conference University of Colorado Boulder Archived from the original on June 24 2012 Retrieved April 9 2012 a b Howard Jerry B Hohokam Legacy Desert Canals WaterHistory org Archived from the original on January 24 2012 Retrieved April 9 2012 Nobles 1998 p 26 Logan 2006 pp 21 22 a b Ancient Forest Management in the Chaco Canyon From 600 AD to 1300 AD Tenthmil Archived from the original on December 24 2010 Schwinning Susan Belnap Jayne Bowling David R amp Ehleringer James R 2008 Sensitivity of the Colorado Plateau to Change Climate Ecosystems and Society Ecology and Society 13 2 28 doi 10 5751 ES 02412 130228 Andrews John P Bostwick Todd W Desert Farmers at the River s Edge The Hohokam and Pueblo Grande Pueblo Grande Museum Archaeological Park City of Phoenix Archived from the original on May 8 2012 Retrieved April 10 2012 Hopi Dictionary Hopiikwa Lavaytutuveni Hopi English Dictionary of the Third Mesa Dialect The Hopi Dictionary Project Tucson University of Arizona Press 1997 Antone Caroline Piipayk m iim Salt River Oʼodham Piipaash Language Program 2000 Gupta 2010 p 362 Hinton Leanne 1984 A Dictionary of the Havasupai Language Supai Arizona Havasupai Tribe OCLC 12358778 William Alan Shaterian 1983 Phonology and Dictionary of Yavapai PhD dissertation University of California Berkeley OCLC 13197420 a b Dine History and Facts University of California Irvine Donald Bren School of Information and Computer Sciences Archived from the original on December 11 2012 Retrieved April 10 2012 The Navajo A Brief History PDF The Navajo Nation Division of Economic Development Retrieved April 10 2012 California Mohave Southwest Indian Relief Council Retrieved April 10 2012 Ute Land Use History of North America Northern Arizona University Archived from the original on February 5 2012 Retrieved April 9 2012 a b Benke amp Cushing 2005 p 486 a b Shaw Anne Moore A Pima Past Salt River Pima Maricopa Indian Community Archived from the original on January 20 2013 Retrieved April 10 2012 Pritzker 1998 p 309 Navajo Nation Indian Health Service Retrieved April 10 2012 Treaty Between the United States of America and the Navajo Tribe of Indians Historic Documents New Mexico State University 1868 Archived from the original on March 11 2002 Retrieved April 10 2012 Navajo Nation Facts at a Glance The Navajo Nation 2004 Retrieved April 10 2012 Kessel amp Wooster 2005 p 217 Fort Mojave Reservation Tribal Library Census and Needs Assessment California State University San Marcos June 12 2001 Archived from the original on May 14 2013 a b About the Mohave Chemehuevi Hopi and Navajo Tribes Colorado River Indian Tribes 2009 Retrieved April 10 2012 The Colorado River Indian Tribes C R I T Reservation and Extension Programs PDF University of Arizona College of Agriculture and Life Sciences Indian Country Extension October 2008 Archived from the original PDF on January 20 2013 Retrieved April 10 2012 Ten Tribes Partnership Colorado River Water Resources Association Archived from the original on November 4 2013 Retrieved November 2 2013 Voggesser Garrit 2001 The Indian Projects PDF Bureau of Reclamation History Program U S Bureau of Reclamation Archived from the original PDF on February 24 2012 Retrieved April 10 2012 Navajo Indian Irrigation Project U S Bureau of Reclamation May 11 2011 Archived from the original on September 25 2012 Retrieved April 10 2012 Jenkins Matt February 21 2011 In Navajoland a Contentious Water Deal Divides the Tribe High Country News Paonia Colorado Retrieved July 1 2013 John Wesley Powell s Exploration of the Colorado River U S Geological Survey March 28 2006 Archived from the original on April 5 2015 Retrieved February 19 2012 Axelrod amp Phillips 2008 p 4 Lankford 2010 pp 100 101 Flint Richard Flint Shirley Cushing Diaz Melchior New Mexico Office of the State Historian Archived from the original on October 10 2013 Bolton 2017 pp 440 Gudde amp Bright 2004 p 50 Dellenbaugh 1909 p 60 Rolle 1999 p 54 United States Army August 11 2005 Report of the secretary of war communicating a reconnoissance of the gulf of California and the Colorado river by Lieutenant Derby a b c d e f g Richard E Lingenfelter 1978 Steamboats on the Colorado River 1852 1916 PDF Tucson University of Arizona Press Archived from the original PDF on January 18 2016 Overland Monthly and Out West Magazine A Roman and Company August 11 1895 via Google Books Senate United States Congress August 11 1854 Senate Documents Otherwise Publ as Public Documents and Executive Documents 14th Congress 1st Session 48th Congress 2nd Session and Special Session via Google Books Byrd H Granger 1960 Arizona Place Names University of Arizona Press p 21 Retrieved December 9 2011 Report of an expedition down the Zuni and Colorado Rivers Washington B Tucker Senate Print August 11 1854 via Internet Archive United States War Dept August 11 2005 Reports of explorations and surveys to ascertain the most practicable and economical route for a railroad from the Mississippi River to the Pacific Ocean Autobiography and Reminiscence of George Alonzo Johnson San Diego 1901 oac cdlib org Ives Joseph C August 11 1861 Report Upon the Colorado River of the West U S Government Printing Office via Google Books Dellenbaugh 1909 p 170 Schmidt 1993 p 12 Dolnick 2002 p 5 Leuchtenburg 2000 p 360 a b Dolnick 2002 p 238 Three leave Powell s Grand Canyon expedition This Day in History History com Retrieved February 20 2012 Historic 3D Photographs of the Second Powell Expedition 1871 1872 Geology of National Parks U S Geological Survey February 13 2012 Archived from the original on March 11 2012 Retrieved February 20 2012 Warburton David L May 16 2005 Geology of National Parks Glen Canyon National Recreation Area Florida Atlantic University Archived from the original on June 7 2013 Peterson Richard H 1979 Book Review Steamboats on the Colorado River 1852 1916 San Diego Historical Society Quarterly San Diego History Center Retrieved March 1 2012 Wildfang 2005 pp 21 31 Cox Christopher R July 2009 True Nature Surf s Up Audubon Magazine Archived from the original on June 3 2013 Retrieved June 24 2013 Kjerfve Bjorn Ferreria Helder O April 1993 Tidal bores First ever measurements PDF Ciencia y Cultura Journal of the Brazilian Association for the Advancement of Science Vol 45 no 2 Texas A amp M University pp 135 137 Archived from the original PDF on March 4 2016 Retrieved June 24 2013 Lingenfelter 1978 pp 9 13 a b Williams O A 1937 Settlement and Growth of the Gila Valley as a Mormon Colony 1879 1900 PDF University of Arizona Archived from the original PDF on January 20 2013 Retrieved February 20 2012 Glass amp Glass 1983 pp 162 163 a b Lees Ferry History Glen Canyon National Recreational Area U S National Park Service August 11 2006 Retrieved February 20 2012 Lees Ferry Arizona State University July 8 2010 Archived from the original on June 3 2012 Retrieved February 20 2012 Brown 1972 pp 52 53 Casey 2007 p 251 Lindberg 2009 pp 134 135 Kirkemo Harold May 21 2007 Prospecting for Gold in the United States General Interest Publications U S Geological Survey Retrieved February 26 2012 Apodaca Lori E Stephens Verlin C Driver Nancy E April 1996 What Affects Water Quality in the Upper Colorado River Basin PDF National Water Quality Assessment Upper Colorado River Basin Fact Sheet FS 109 96 U S Geological Survey Retrieved February 26 2012 Dwyer John J The Agrarian Dispute The Expropriation of American Owned Rural Land in Postrevolutionary Mexico Durham Duke University Press 2008 Kerig Dorothy P Yankee Enclave The Colorado River Land Company and Mexican Agrarian Reform in Baja California 1902 1944 PhD diss University of California Irvine 1988 Castillo Munoz Veronica The Other California Land Identities and Politics on the Mexican Borderlands Oakland University of California Press 2017 a b United States House of Representatives 1921 Renaming the Grand River Colo PDF Hearing Before the Committee on Interstate and Foreign Commerce of the House of Representatives Sixty Sixth Congress Third Session on HJ 460 p 19 Colorado River Water Conservation District December 23 2003 Many Years Ago the Colorado River Was Just Grand SummitDaily Retrieved January 5 2008 Barnes 1988 p 104 USGS Gage 09328500 on the San Rafael River near Green River Utah PDF National Water Information System U S Geological Survey 1910 2012 Retrieved June 22 2013 a b Colorado River Basin Water Supply and Demand Study PDF U S Bureau of Reclamation December 2012 Retrieved May 18 2022 a b c Davis Eric F The Colorado River Controversy PDF Michigan State University Archived from the original PDF on October 1 2004 Low Water May Halt Hoover Dam s Power Circle of Blue September 22 2010 Archived from the original on January 20 2013 Retrieved October 8 2012 Hydropower Glen Canyon Dam Adaptive Management Program November 18 2010 Archived from the original on May 22 2012 Retrieved May 12 2012 Waterman Jonathan August 11 2010 Restoring floods to America s Nile National Geographic Archived from the original on March 24 2012 Retrieved March 2 2012 Nabhan Gary Paul January 16 2007 The Beginning and the End of the Colorado River Protecting the Sources Ensuring its Courses Northern Arizona University Archived from the original on December 25 2011 Retrieved February 20 2012 Reisner 1993 p 120 Colorado River Law Southern Nevada Water Authority Archived from the original on April 26 2012 Retrieved February 20 2012 a b Colorado River Compact 1922 PDF U S Bureau of Reclamation Archived from the original PDF on September 15 2012 Retrieved February 20 2012 a b Utilization of Waters of the Colorado and Tijuana Rivers and of the Rio Grande Treaty Between the United States of America and Mexico PDF International Boundary and Water Commission February 3 1944 Retrieved February 20 2012 Colorado River GOOD Magazine Retrieved February 26 2012 Big changes are coming for the Colorado River soon and they could get messy Environment August 15 2022 Retrieved August 16 2022 a b Anderson Larry May 2002 Utah s Perspective The Colorado River PDF Utah Division of Water Resources Archived from the original PDF on April 9 2014 Retrieved February 20 2012 The Law of the River U S Bureau of Reclamation March 2008 Archived from the original on June 26 2012 Retrieved February 18 2012 Dams Along the Lower Colorado River U S Bureau of Reclamation Retrieved May 18 2022 Appendix I The Past Present and Future of Transmountain Diversion Projects PDF Roaring Fork Watershed Plan Roaring Fork Conservancy Archived from the original PDF on January 20 2013 Retrieved March 18 2012 Transmountain Water Diversions PDF Colorado River District July 2011 Archived from the original PDF on December 1 2011 Retrieved March 18 2012 a b c Citizen s Guide to Colorado s Transbasin Diversions Water Education Colorado 2014 Transmountain Diversions Roaring Fork Conservancy Retrieved May 18 2022 Colorado Big Thompson Project U S Bureau of Reclamation October 18 2011 Archived from the original on November 12 2011 Retrieved February 20 2012 Moving Water in the Watershed Blue River Watershed Group Archived from the original on March 29 2012 Retrieved May 18 2012 Wahlstrom Ernest E 1974 History of Geologic Investigations Engineering Design and Construction Methods of the Harold D Roberts Tunnel Colorado PDF Geological Survey Professional Paper 831 A U S Geological Survey Retrieved May 18 2012 Fryingpan Arkansas Project U S Bureau of Reclamation May 10 2011 Archived from the original on August 27 2014 Retrieved May 18 2012 Williams Fork Reservoir Denver Water Retrieved May 18 2022 Wolford Mountain Reservoir Colorado River District Retrieved May 18 2022 Billington Jackson amp Melosi 2005 p 140 a b Sperry Robert L Winter 1975 When The Imperial Valley Fought For Its Life The Journal of San Diego History San Diego History Center 21 1 Retrieved February 20 2012 Patten McCaskie and Unitt pp 4 5 Origin of the Salton Sea Suburban Emergency Management Project Archived from the original on July 18 2011 Billington Jackson amp Melosi 2005 pp 141 142 Boulder Canyon Project Hoover Dam U S Bureau of Reclamation February 1 2012 Archived from the original on October 11 2012 Retrieved October 9 2012 The Colorado River and Hoover Dam Facts and Figures U S Bureau of Reclamation January 2012 Archived from the original on May 14 2012 Retrieved February 20 2012 Boulder Canyon Project Act 1928 National Archives Retrieved May 18 2022 All American Canal California Mexico border Earth Observatory National Aeronautics and Space Administration February 23 2009 Retrieved February 20 2012 About IID Water Imperial Irrigation District Retrieved May 18 2022 CRBSCP Coachella Canal Unit Title I U S Bureau of Reclamation Retrieved May 18 2022 Parker Dam Parker Davis Project U S Bureau of Reclamation June 29 2009 Archived from the original on September 27 2012 Retrieved February 20 2012 Marie Bell Tina 1997 Gila Project PDF U S Bureau of Reclamation Archived from the original PDF on February 24 2012 Retrieved February 28 2012 The Colorado River A Regional Solution Los Angeles Department of Water and Power Archived from the original on March 4 2012 Retrieved February 28 2012 San Diego Project U S Bureau of Reclamation January 11 2012 Archived from the original on March 16 2012 Retrieved March 16 2012 Nevada Colorado River Water Users Association Archived from the original on November 4 2013 Retrieved November 2 2013 Fradkin 1996 p 191 a b c Colorado River Storage Project U S Bureau of Reclamation Retrieved May 18 2022 Chapter IX Dinosaur National Monument A Survey of the Recreational Resources of the Colorado River Basin U S National Park Service September 6 2004 Retrieved February 20 2012 Historic Opposition to Glen Canyon Dam The End of Lake Powell Campaign Colorado Riverkeeper July 20 2004 Archived from the original on December 28 2013 Retrieved November 2 2013 Resurrection Buried Treasure National Audubon Society 2006 Archived from the original on January 20 2013 Retrieved February 20 2012 The Central Utah Project An Overview U S Department of the Interior Retrieved May 18 2022 Glaser Leah S San Juan Chama Project U S Bureau of Reclamation Retrieved May 18 2022 a b c d Pacific Southwest Water Plan PDF U S Bureau of Reclamation January 1964 Retrieved May 18 2022 a b U S Plan for Dams on Colorado Under Fire by Conservationists Interior Department Insists Projects Are Vital to Southwest s Development National Battle Expected The New York Times March 15 1964 Retrieved May 18 2022 Reclamation Helps Celebrate Theodore Roosevelt Dam s 100th Year U S Bureau of Reclamation March 2011 Archived from the original on September 25 2012 Retrieved March 16 2012 Gerke Sarah Bohl Bridge Canyon Arizona State University Retrieved May 18 2022 a b Central Arizona Project U S Bureau of Reclamation April 18 2011 Archived from the original on June 13 2011 Retrieved February 20 2012 Murdock J Neil 1996 Bridge Canyon Dam from Early History of the Colorado River Storage Project May 1971 U S Department of the Interior Bureau of Reclamation Grand Canyon River Guides Archived from the original on May 25 2017 Retrieved July 15 2013 Chapter VII The Grand Canyon A Survey of the Recreational Resources of the Colorado River Basin U S National Park Service September 6 2005 Archived from the original on November 6 2013 Retrieved July 15 2013 Navajo Generating Station Project Information Salt River Project Retrieved May 18 2022 Trinity River U S Bureau of Reclamation May 18 2022 Congressional Research Service August 16 2021 Management of the Colorado River Water Allocations Drought and the Federal Role PDF Federation of American Scientists Retrieved May 18 2022 Reisner 1993 p 121 Reisner 1993 p 126 Stahle David W Fye Falko K Therrell Matthew D 2003 Interannual to Decadal Climate and Streamflow Variability Estimated from Tree Rings Developments in Quaternary Science Developments in Quaternary Sciences 1 491 504 doi 10 1016 S1571 0866 03 01023 6 ISBN 9780444514707 Upper Colorado River Basin Consumptive Uses and Losses Report 2006 2010 PDF U S Bureau of Reclamation August 2012 Archived from the original PDF on October 10 2012 Retrieved June 29 2013 a b Gelt Joe August 1997 Sharing Colorado River Water History Public Policy and the Colorado River Compact Arroyo University of Arizona Water Resources Research Center 10 1 Retrieved February 25 2014 Weisheit John Persistent Drought in the Colorado River Basin PDF Confluence Retrieved May 15 2012 Woodhouse Connie Webb Robert S Lukas Jeff Paleoenvironmental Archives as a source of Climate Information for Natural Resource Management An Example from Tree Rings and Colorado Water Management PDF U S Forest Service Retrieved May 19 2012 Glen Canyon Dam Water Operations U S Bureau of Reclamation 2022 Retrieved May 18 2022 Hoerling Martin Eischeid Jon November 17 2006 Outlook for Water in the West at 2050 PDF NOAA Earth System Research Laboratory Climate Change Workshop Western Water Assessment Archived from the original PDF on June 9 2010 Kuhn Eric January 26 2007 The Colorado River s Uncertain Future How Climate Change May Affect Future Planning Decisions on the Colorado River PDF CRWCD 49th Annual Convention Colorado River Water Conservation District Archived from the original PDF on December 1 2011 Retrieved February 21 2012 Vernieu Presenter William S 2005 Current Status and Trends of Lake Powell and Glen Canyon Dam Release Water Quality PDF U S Geological Survey Grand Canyon Monitoring and Research Center Grand Canyon River Guides Retrieved May 15 2012 McKinnon Shaun October 19 2010 Lake Mead Sinks to a New Historic Low If Lake Falls 8 More Feet Thirsty Ariz Could Experience Water Restrictions The Arizona Republic Phoenix Arizona Retrieved September 6 2012 Hiltzik Michael June 20 2014 Water war bubbling up between California and Arizona Los Angeles Times Retrieved September 23 2014 McKinnon Shaun April 19 2011 Lake Mead Replenished by Snowfall azcentral com Retrieved February 21 2012 Shine Conor August 17 2011 Lake Mead s water level rises 30 feet after wet winter Las Vegas Sun Retrieved February 21 2012 Perry Tony May 27 2013 As Colorado River drought worsens water officials parley Los Angeles Times Retrieved July 9 2013 Johnson Terrell August 20 2013 Dwindling Colorado River Forces First Ever Cuts in Lake Powell Water Releases The Weather Channel Archived from the original on January 13 2014 Retrieved January 16 2014 Brean Henry July 11 2014 Lake Mead sinks to a record low Las Vegas Review Journal Retrieved October 2 2014 Sevigny Melissa May 17 2018 Colorado River Water Shortage Could be Declared in 2020 KNAU Retrieved May 24 2018 Chow Lorraine May 17 2018 Unprecedented Colorado River Water Shortage Could Be Declared in 2020 EcoWatch Retrieved May 24 2018 Brian Maffly July 22 2021 Lake Powell level about to hit a historic low as West s water crisis deepens Salt Lake Tribune Michael Elizabeth Sakas July 24 2021 Lake Powell Just Hit Its Lowest Level On Record Here s What That Means For Colorado And States That Rely On It Colorado Public Radio Oliver Milman July 13 2021 Severe drought threatens Hoover dam reservoir and water for US west The Guardian Reclamation announces 2022 operating conditions for Lake Powell and Lake Mead usbr gov United States Bureau of Reclamation August 16 2021 Retrieved August 19 2021 Budryk Zack August 17 2021 OVERNIGHT ENERGY Federal government announces first ever water shortage in Lake Mead Colorado River Biden administration releases guidance limiting international financing for fossil fuels Biden administration to review federal coal leasing msn com MSN Retrieved August 19 2021 Full Committee Hearing To Examine Short And Long Term Solutions To Extreme Drought In The Western U S Senate Committee on Energy and Natural resources United States Senate Retrieved December 16 2022 Trotta Daniel October 28 2022 U S warns western states it may impose Colorado River water cuts Reuters Retrieved December 16 2022 Lochhead Colton December 15 2022 Las Vegas water boss urges states to take action to keep lakes from crashing Las Vegas Review Journal Retrieved December 16 2022 Partlow Joshua December 1 2022 Officials fear complete doomsday scenario for drought stricken Colorado River The Washington Post Retrieved December 16 2022 Biotic Communities of the Colorado Plateau Riparian Areas Land Use History of North America Northern Arizona University Archived from the original on February 13 2012 Retrieved February 23 2012 Ohmart Robert D Anderson Bertin W Hunter William C September 1988 The Ecology of the Lower Colorado River from Davis Dam to the Mexico United States International Boundary A Community Profile PDF U S Fish and Wildlife Service pp 9 12 14 Retrieved June 29 2013 Shanahan S A Nelson S M Van Dooremolen D M Eckberg J R 2011 Restoring Habitat for Riparian Birds in the Lower Colorado River Watershed An Example from the Las Vegas Wash Nevada PDF Journal of Arid Environments 75 11 1182 1190 Bibcode 2011JArEn 75 1182S doi 10 1016 j jaridenv 2011 06 017 Archived from the original PDF on January 20 2013 Retrieved February 24 2012 Alles David L August 8 2007 The Delta of the Colorado River PDF Western Washington University Retrieved February 23 2012 Schell Robert King Morgan E Riparian Vegetation Structural Diversity Benefits Birds PDF University of California Davis Archived from the original PDF on December 6 2011 Retrieved February 23 2012 Status of Plant and Animal Life A Survey of the Recreational Resources of the Colorado River Basin U S National Park Service September 6 2004 Retrieved February 23 2012 Benke amp Cushing 2005 p 493 130 Colorado Freshwater Ecoregions of the World January 11 2012 Archived from the original on June 18 2012 Retrieved February 23 2012 Colorado River Basin Fish Defenders of Wildlife Archived from the original on April 6 2011 Gupta 2007 p 200 Why The Colorado River Stopped Flowing National Public Radio July 14 2011 Retrieved February 20 2012 Weisheit John A Colorado River Sediment Inventory PDF Colorado Plateau River Guides Retrieved February 20 2012 Colorado River Basin coriverbasin org Retrieved May 20 2013 Colorado River System Consumptive Uses and Losses Report 1996 2000 PDF U S Bureau of Reclamation December 2004 Archived from the original PDF on January 19 2009 Sandra Postel April 5 2013 Landmark Cooperation Brings the Colorado River Home National Geographic Retrieved May 19 2014 a b Morford Scott a, wikipedia, wiki, book, books, library,

article

, read, download, free, free download, mp3, video, mp4, 3gp, jpg, jpeg, gif, png, picture, music, song, movie, book, game, games.