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2011 El Reno–Piedmont tornado

The El Reno–Piedmont tornado was a long-tracked and deadly EF5 tornado that struck central Oklahoma on the evening of May 24, 2011. The tornado impacted areas near or within the communities of El Reno, Piedmont, and Guthrie, killing nine and injuring 181. After producing incredible damage in several locations along a path of more than 60 miles (97 km), the El Reno–Piedmont tornado was given a rating of EF5, the highest category on the Enhanced Fujita scale. It was the first tornado rated EF5 or F5 to strike Oklahoma since the 1999 Bridge Creek–Moore tornado. A mobile radar found that the tornado possessed possible wind speeds of up to 295 mph (475 km/h).

2011 El Reno–Piedmont tornado
  • Top: The El Reno–Piedmont tornado appears as a large 'wedge', partly shrouded by rain.
  • Bottom: The tornado's vortex signature (left) and hook echo (right) visible on radar.
Meteorological history
DateMay 24, 2011
Formed3:51 p.m. CDT
Dissipated5:35 p.m. CDT
EF5 tornado
on the Enhanced Fujita scale
Highest winds
  • >210 mph (340 km/h)*
  • *Instantaneous wind speeds up to 295 mph (475 km/h) were measured via RaXPol mobile research radar
Overall effects
Fatalities9
Injuries181
Areas affectedCanadian County, Kingfisher County, Logan County, Central Oklahoma, United States

Part of the tornado outbreak sequence of May 21–26, 2011

2011 was a prolific year for tornadoes and tornado-associated fatalities, with multiple destructive outbreaks. The El Reno–Piedmont tornado occurred during an outbreak across Oklahoma and the Great Plains that produced multiple violent tornadoes near the Oklahoma City metropolitan area on May 24, and was itself part of a tornado outbreak sequence spanning May 21–26. The Oklahoma storms came just two days after a devastating EF5 tornado in Joplin, Missouri on May 22, which killed 158 people and became the costliest tornado in U.S. history.

El Reno has infamously been the site of other intense tornadoes. On May 31, 2013, a tornado just south of the town became the largest ever recorded, with a width of 2.6 miles (4.2 km) and radar-indicated wind speeds well over 200 mph (320 km/h). The massive multiple-vortex tornado killed eight people, including three storm chasers, and received a damage rating of EF3.[1][2] In 2019, a brief tornado spawned from an intense squall line struck just southeast of El Reno, killing two people and injuring dozens while again receiving a rating of EF3.[3]

Meteorological synopsis edit

Setup edit

Early on May 24 a strong upper-level trough (an elongated region of low atmospheric pressure aloft) advanced towards the Great Plains out of the southwestern United States and took on a negative tilt, becoming oriented northwest to southeast.[4][5]: 504 

At the same time, southerly flow brought moisture north over Texas and the southern Great Plains, allowing dew points in Central Oklahoma to reach 18–21 °C (64–70 °F).[5]: 504–505  This moisture, with temperatures in the mid 80 °F (27 °C) range, allowed for ample convective available potential energy (or CAPE, a measure of atmospheric instability); values reached 2500–4000 J/kg. Mid-level lapse rates were nearly dry adiabatic.[6]: 2 [5]: 504–505 

In the late morning, a shortwave embedded within the main longwave trough advanced more rapidly, pushing the dryline into western Oklahoma, where it met the already-present moisture.[5]: 504–505  The shortwave's advance also brought strong wind shear and "incredibly high" storm-relative helicity values of more than 500 m2s−2. The convergence of all these factors promised the development of intense convective thunderstorms.[6]: 2 

Forecast edit

 
The National Weather Service Storm Prediction Center's Day 1 Convective Outlook for May 24, showing the Categorical Graphic
 
The probability of a tornado within 25 miles of a point (cross-hatched area: 10% or greater probability of EF2+ tornadoes)

This risk was anticipated by the National Weather Service's Storm Prediction Center (SPC), and its local forecast office in Norman, Oklahoma. The Storm Prediction Center's outlooks for severe weather culminated in a "high risk" area being delineated over the Great Plains for May 24. Issued at 11:25 a.m. CDT, the Storm Prediction Center's convective outlook for the day highlighted the tornado risk, which included central Oklahoma inside a large region of a 45% chance of a tornado touchdown within 25 miles (40 km) of any given point, and a 10% or greater chance of a significant (EF2+) tornado within that same 25 miles (40 km) radius.[7]

...AN INTENSE OUTBREAK OF TORNADOES AND WIDESPREAD SEVERE THUNDERSTORMS IS EXPECTED LATER TODAY OVER PORTIONS OF KS/OK/TX...

...WITH ALL CONDITIONS FAVORING THE POTENTIAL FOR LONG-TRACKED STRONG/VIOLENT TORNADOES AND VERY LARGE HAIL OVER PORTIONS OF NORTH TX...CENTRAL OK...AND CENTRAL KS.

— NWS Storm Prediction Center (SPC), May 24, 2011 1630 UTC Day 1 Convective Outlook

At 12:50 p.m., the Storm Prediction Center issued a Particularly Dangerous Situation (PDS) tornado watch, to remain in effect until 10:00 p.m., for most of central Oklahoma extending from the state border with Kansas down through the Oklahoma City metropolitan area and into northern Texas. The text of the tornado watch again warned of the possible development of "destructive tornadoes... …some of which could be long-tracked and strong to violent."[8]

Initiation edit

Thunderstorms began to develop before 2:00 p.m. in a north–south oriented line just east of the dryline where the capping inversion was weakest,[5]: 505  including near Altus and Lawton in southwest Oklahoma. The tightly spaced storm cells rapidly developed classic supercell characteristics as they moved northeast.[4] The storm that produced the El Reno–Piedmont EF5 tornado formed approximately 93 miles (150 km) west-southwest of Oklahoma City.[5]: 505 

Storm track and damage edit

The supercell that eventually generated the El Reno–Piedmont tornado first produced a tornado in Caddo County, Oklahoma, which tracked from west of the town of Lookeba to just northeast of it. The Lookeba tornado developed at 3:31 p.m. and persisted for approximately 16 minutes, traveling nine miles (14 km) and destroying multiple structures. The 800-yard (730 m)-wide tornado earned a damage rating of EF3.[4] As the Lookeba tornado moved northeast towards the Caddo/Canadian county border, between 3:40 and 3:42 p.m. the supercell's mesocyclone broadened and weakened slightly; this was followed by the development of a second mesocyclone from the original to the east-southeast between 3:42 and 3:44 p.m.[9]: 2689  This marked the start of the decay of the Lookeba tornado, which fully dissipated by 3:47 p.m.[9]: 2690  Over the next several minutes the original western mesocyclone dwindled as the newer mesocyclone coalesced, and the radar detection of a bounded weak echo region within the storm indicated that its updraft intensified during this period.[9]: 2691–2692 

Hinton–Interstate 40 edit

The El Reno–Piedmont tornado formed at 3:51 p.m., as determined by mobile radar data.[9] Over the next four minutes, the tornado's condensation funnel extending from a low-hanging wall cloud broadened, causing the tornado to take on a large 'wedge' appearance.[9]: 2696  It intensified quickly as it moved northeast, debarking and destroying many trees.[4] During this period, the storm was being monitored by a truck-mounted Rapid-Scan X-band Polarimetric (RaXPol) mobile Doppler weather radar, operated by the University of Oklahoma's Advanced Radar Research Center (ARRC) led by Howard Bluestein. That radar, stationed near the intersection of Smith Road and Walbaum Road less than two miles (3.2 km) south of I-40, captured the "first polarimetric, rapid-scan, mobile Doppler weather radar dataset of an EF-5 tornado."[10]: 3 

 
The RaXPol mobile Dopper radar, shown here scanning a severe thunderstorm in Oklahoma in 2013

As the tornado moved towards I-40 to the southeast of the RaXPol radar, it detected some of the fastest wind speeds ever measured on the planet. Interpretations slightly differ: the maximum instantaneous radial velocity sampled by the radar was originally reported as having been 124.8 m/s (279 mph), measured 200–230 feet (60–70 m) above the ground at 4:00:26 p.m.;[11]: 4103 [10]: 3 [12]: 2  however, the maximum velocity was later reported as having been 132.1 m/s (295 mph) measured ~72 feet (22 m) "above radar level" at 4:00:39 p.m. in a 2014 paper by Bluestein et al on the use of radar data for tornado ratings.[1]: 811  Maximum radial velocities were also reported to have remained "greater than 120.0 m/s (268 mph) for several minutes."[12]: 2  Additionally, multiple consecutive radar scans were averaged to yield an estimated 2-second average radial velocity of 118.4 m/s (265 mph) and an estimated 4-second average velocity of 110.8 m/s (248 mph). This was reported as "likely to be an underestimate of the true 2- and 4-s average wind speeds."[1]: 3b 

The instantaneous velocity readings taken are not directly equivalent to the three-second gust at 33 feet (10 m) that the Enhanced Fujita scale attempts to estimate, but they mark the second-highest wind speed ever recorded in a tornado, after wind speeds of approximately 135 m/s (300 mph) were recorded in both the 1999 Bridge Creek–Moore tornado[10] and a sub-vortex within the 2013 El Reno tornado.[1][2] Where the most intense winds are generally present in a tornado is an unresolved question, but the limited existing research suggests that wind speeds are likely to be highest closer to the ground.[13][1]: 804  After the detection of the wind speeds, the quality of the data degraded until collection ceased altogether at 4:16 p.m., as the tornado progressed to the northeast and towards I-40 where it would produce its most intense damage.[11]: 4103 

Interstate 40–El Reno edit

When the tornado crossed I-40, the RaXPol radar 6.2 miles (10 km) away was still recording maximum radial velocities over 100 m/s (220 mph), 190 yards (170 m) above the ground.[12]: 2  There, the tornado struck multiple people in their cars. Three people—Terry Peoples, 50; Don Wesley Krug, 71; and Joan Krug, 67[14]—were killed in two separate full-size pickup trucks,[14] which were hurled thousands of feet from the road.[15] Their bodies were found more than 300 yards (270 m) north of the interstate, outside their vehicles, stripped of clothing, and rendered "unrecognizable," according to responding state troopers.[16] Several others were injured here as their vehicles were battered and overturned,[17] including a truck driver whose semi truck was flipped. The interstate was left littered with pieces of cars.[18] Two more fatalities in cars occurred just northeast of the interstate.[15]

 
Damage at the Cactus 117 oil drilling rig near El Reno, showing the mangled and overturned rig

According to the National Weather Service, the tornado is believed to have peaked in intensity just after crossing I-40.[15] There, the tornado struck the Cactus 117 oil drilling rig site at EF5 intensity, completely destroying it. When it hit, the rig's pipes and drill head were inserted deep in the well's borehole, which provided the drilling pipe with 200,000 lb (91,000 kg) of downforce.[6]: 6  Despite this, and despite the fact that the drilling rig weighed 862 metric tons—or almost two million pounds—the rig was toppled onto its side and rolled several times. The well's blowout preventer was left bent at a 30 degree angle to the north. Elsewhere on the site, vehicles and cargo containers were lofted into the air and tossed.[12]: 2 [6]: 6 

Twelve workers were on the site when the tornado struck, and took shelter in the site's change house (a steel container serving as a locker room). Tied down by four steel cables anchored 5.5 feet (1.7 m) deep in the ground, the container was pummeled with debris. One cable broke and the container was dented, but all twelve workers survived without serious injury.[12]: 2 [6]: 6  The move to tie down change houses for tornado shelters at Cactus drilling rigs had come less than a year before the El Reno–Piedmont tornado, and following the storm Cactus moved to reinforce the change house roofs and position them where the rig would be less likely to topple on to them.[19] Damage at the Cactus 117 rig amounted to $14 million.[20]

...A TORNADO WARNING REMAINS IN EFFECT UNTIL 445 PM CDT FOR NORTHEASTERN CANADIAN COUNTY...

AT 431 PM CDT...A LARGE...VIOLENT TORNADO WAS LOCATED IN THE NORTHERN PARTS OF EL RENO...MOVING EAST-NORTHEAST AT 30 MPH. PERSONS IN EL RENO...PIEDMONT...AND NORTHERN YUKON NEED TO BE TAKING SHELTER! THIS IS A VERY DANGEROUS SITUATION!

LOCATIONS IN THE WARNING INCLUDE CONCHO...EL RENO...NORTHWESTERN OKLAHOMA CITY...OKARCHE...PIEDMONT AND RICHLAND.
$$

National Weather Service Norman, Oklahoma, Severe Weather Statement, 4:32 p.m. CDT, May 24 2011

After destroying the Cactus rig, the tornado continued moving northeast. Just to the west of the rig, it struck a complex of buildings (including a scrap yard, auto repair shop, garage, and grain storage facility). The repair shop, the garage, and a farmhouse were destroyed and the grain facility "damaged beyond repair."[6]: 7  Flying debris from the salvage yard impacted a new natural gas processing plant operated by Devon Energy, but all employees present avoided injury by sheltering on-site in time.[21] The damage caused a major gas leak at the plant, which was not secured until nightfall.[22] The tornado then passed between Fort Reno and an Oklahoma Mesonet site, which recorded a sharp drop in atmospheric pressure, as well as a one-minute average wind speed of 115 mph (185 km/h) and a maximum wind gust of 151 mph (243 km/h) at 4:21 p.m.[23][4] The gust was the highest wind speed ever recorded by the Oklahoma Mesonet.[23] The site sustained only minor damage, the tornado likely having passed several hundred yards from it.[24] Fort Reno sustained some structural damage.[22]

El Reno–Piedmont edit

 
Debarked trees north of El Reno

Leaving the environs of El Reno, the tornado then tracked through miles of mainly agricultural land. Widespread EF3 damage, pockmarked with areas of EF4 damage, was found between the towns of El Reno and Piedmont.[15]

During the tornado's journey between El Reno and Piedmont, at least two satellite tornadoes were present at different times. The first was only recognized after-the-fact using radar data. That data shows the El Reno–Piedmont tornado and a separate cyclonic tornado, originating from the same mesocyclone, rotating in a counterclockwise fashion about a single common center (in a demonstration of the Fujiwhara effect) for several minutes, before merging at approximately 4:35 p.m.[25]: 3033  The second satellite came just minutes later. At 4:37 p.m., a Storm Prediction Center employee observed this separate vortex several miles northwest of Richland as it rotated around the main tornado for two minutes—only 50 yards (46 m) wide or so, it produced no damage that could be distinguished from that of the larger tornado, and was thus assigned a damage rating of EF0.[4]

Piedmont–Guthrie edit

 
Debris from a house northeast of Piedmont struck by the tornado—this damage was given an EF4 rating

As the tornado neared Piedmont, it produced widespread EF4 damage north and west of the town.[26] About three point one miles (5 km) north of Piedmont, the tornado leveled ten homes on Northridge Lane and rolled or lofted vehicles into nearby fields. However, surveys found that nails had been used to help fasten the walls to their concrete slab foundations, which failed and left broken portions of the slabs where they had been driven in. The tornado destroyed two more houses on Axeman Street, four miles (6.5 km) northeast of Piedmont. A Chevrolet Avalanche parked in the garage of one of the residences was hurled 710 yards (650 m) to the northeast and into a thicket of trees in a ravine, which were debarked and relieved of their branches. The Chevrolet's engine block and axles were found nearby, ripped from the car. The damage here was assigned an EF4 rating.[12]: 2–3  In the subdivision of Falcon Lake, five miles (eight km) northeast of Piedmont and on the border of Canadian and Kingfisher counties, multiple homes again had the walls removed from their concrete slab foundations. Vehicles were tossed into an adjacent lake. Two children (aged one and three years old) were killed in their home, which lacked a storm shelter.[26][12]: 4  All told, the tornado destroyed 88 homes in the Piedmont area.[27]

The tornado's intensity diminished somewhat as the tornado crossed into Kingfisher and Logan counties,[12]: 5  having already traveled just shy of 40 miles (64 km) on its track through Canadian County.[26] EF2 and EF3 damage still occurred as the tornado damaged houses, destroyed multiple mobile homes,[12]: 5  and collapsed high-voltage transmission towers, while continuing to debark trees to the point where only stumps remained.[28] The tornado killed two more people—caught outside without shelter—near the community of Cashion.[12]: 5  Along SH-74, the tornado destroyed three homes and an airplane hangar.[18] The tornado approached Guthrie, but moved northwest of the town, which avoided a direct hit. The tornado finally dissipated northeast of Guthrie, producing only minor tree damage there.[29]

The tornado's parent supercell went on to produce another tornado south of the community of Stillwater, which earned a damage rating of EF2.[4]

Summary edit

 
The damage path of the El Reno–Piedmont tornado, labeled B2. The tornado labeled B3 was a brief satellite tornado with a damage rating of EF0.

The tornado reached a maximum width of 1,760 yards (1,610 m), or over a mile wide at its peak. Its damage path was 63 miles (101 km) long. The tornado traversed this distance over the course of about one hour and 44 minutes, implying an average forward speed of approximately 36 miles per hour (58 km/h).[4] On June 1, 2011, National Weather Service officials upgraded the tornado's preliminary EF4 rating to EF5 based on a combination of the damage to the Cactus 117 drilling rig site, the complete destruction of other buildings in the rig's vicinity, tossed vehicles, and the mobile Doppler radar data.[6]: 7 

In the end, 22 tornadoes occurred in central Oklahoma during the El Reno–Piedmont tornado's parent outbreak. In the Oklahoma City area, five main supercells produced 12 tornadoes,[6]: 1  three of them violent (EF4+). The El Reno–Piedmont tornado was the strongest of them all.[12]: 1  The El Reno–Piedmont tornado became one of only 59 tornadoes ever rated F5 or EF5 to date, and one of only nine tornadoes to receive an EF5 rating since the advent of the Enhanced Fujita scale in 2007. It was the first tornado in Oklahoma to receive an EF5 rating, and the only one until the 2013 Moore tornado.[15]

Impacts edit

 
This May 26, 2011 satellite image shows the track of the El Reno–Piedmont tornado from two days prior, northwest of Oklahoma City.

Following the tornado, first responders in Canadian County scoured the 10–20-square-mile (26–52 km2) debris path in the corridor west of El Reno near the interstate. Three emergency operations centers were established in Canadian County near Piedmont, El Reno, and Interstate 40.[22]

Casualties edit

The El Reno–Piedmont tornado killed nine people and injured 181,[4] making it responsible for the majority of the casualties caused by the entire outbreak (in which 11 died and 293 were injured).[6]: 2  Of that total, seven deaths and 112 injuries occurred in Canadian County,[26] 46 injuries occurred in Kingfisher County,[29] and two deaths and 23 injuries occurred in Logan County.[28] Three children with critical injuries in Piedmont numbered among the casualties in Canadian County.[18]

In an overview of the outbreak in a paper presented at the annual American Meteorological Society conference, National Weather Service authors speculated that the relatively low number of fatalities during the outbreak (which involved three violent tornadoes near a major metropolitan area) was due in part due to "the incredible reaction of the community to not only watches and warnings, but also to the forecast of severe weather" on May 24.[6]: 2 

Damage edit

The Devon Energy natural gas plant near El Reno was forced offline for several weeks as the company assessed and repaired the $140 million facility.[21]

Though the amount of $14 million was given as the cost of damage to the Cactus 117 drilling rig site in news reports, a detailed monetary damage estimate by NWS/NOAA for the El Reno–Piedmont tornado was not made available.[4] The only government assessment of damages appears in the tornado's entry in NOAA's NCEI Storm Events Database, which predicted that the total was "probably going to be well in the tens of millions."[26] Meanwhile, insurance officials reported an estimated $200–300 million in total private property insured losses from the Oklahoma portion of the tornado outbreak.[30]

The city of Piedmont paid $230,380 for debris removal, 75% of which was reimbursed by FEMA.[31]

Political response edit

Governor of Oklahoma Mary Fallin declared a state of emergency in 68 counties on May 24, including Canadian, Kingfisher, and Logan counties, before taking to the air to survey damage in a number of areas, which included Piedmont and Guthrie.[32] On May 29, Governor Fallin requested that the White House issue a federal major disaster declaration for seven Oklahoma counties, again including Canadian, Kingfisher, and Logan counties.[33] On June 6, President Obama approved Governor Fallin's request for federal disaster relief.[34]

In September 2011, Governor Fallin and state emergency management officials announced the SoonerSafe-Safe Room Rebate Program, using $1 million in FEMA funds, which distributed cash rebates via a statewide drawing to reimburse up to 500 Oklahomans seeking to build storm shelters. Victims of the May 24 tornado outbreak were among those who received priority selection for the rebates.[35]

See also edit

References edit

  1. ^ a b c d e Snyder, Jeffrey C.; Bluestein, Howard B. (August 1, 2014). "Some Considerations for the Use of High-Resolution Mobile Radar Data in Tornado Intensity Determination". Weather and Forecasting. 29 (4): 799–827. doi:10.1175/WAF-D-14-00026.1. ISSN 1520-0434.
  2. ^ a b Bluestein, Howard B.; Thiem, Kyle J.; Snyder, Jeffrey C.; Houser, Jana B. (August 1, 2018). "The Multiple-Vortex Structure of the El Reno, Oklahoma, Tornado on 31 May 2013". Monthly Weather Review. 146 (8): 2483–2502. doi:10.1175/MWR-D-18-0073.1. ISSN 1520-0493.
  3. ^ Fernandez, Manny; Fenwick, Ben (May 26, 2019). "'There I Was, Flying Across the Room': Tornado Leaves an Oklahoma Town Shaken". The New York Times. ISSN 0362-4331. from the original on March 2, 2023. Retrieved March 2, 2023.
  4. ^ a b c d e f g h i j "The May 24, 2011 Tornado Outbreak in Oklahoma". National Weather Service. NOAA. from the original on December 11, 2022. Retrieved February 9, 2022.
  5. ^ a b c d e f Tanamachi, Robin L.; Heinselman, Pamela L.; Wicker, Louis J. (June 1, 2015). "Impacts of a Storm Merger on the 24 May 2011 El Reno, Oklahoma, Tornadic Supercell". Weather and Forecasting. 30 (3): 501–524. doi:10.1175/WAF-D-14-00164.1. ISSN 1520-0434.
  6. ^ a b c d e f g h i j Ortega, Kiel L.; Bluestein, Howard B.; Burgess, Donald W.; et al. (January 25, 2012). . 92nd American Meteorological Society Annual Meeting, Special Symposium on the Tornado Disasters of 2011. Archived from the original on February 7, 2023. Retrieved February 10, 2023 – via American Meteorological Society.
  7. ^ Hart, John A.; Grams, Jeremy S. (May 24, 2011). Storm Prediction Center May 24, 2011 1630 UTC Day 1 Convective Outlook (Report). Norman, Oklahoma: NOAA/NWS Storm Prediction Center (SPC). from the original on January 10, 2019. Retrieved February 13, 2023.
  8. ^ Mead, Corey M. (May 24, 2011). Particularly Dangerous Situation (PDS) Tornado Watch 356. Storm Prediction Center (Report). Norman, Oklahoma: National Oceanic and Atmospheric Administration. from the original on September 3, 2014. Retrieved May 24, 2011.
  9. ^ a b c d e Houser, Jana Lesak; Bluestein, Howard B.; Snyder, Jeffrey C. (July 1, 2015). "Rapid-Scan, Polarimetric, Doppler Radar Observations of Tornadogenesis and Tornado Dissipation in a Tornadic Supercell: The "El Reno, Oklahoma" Storm of 24 May 2011". Monthly Weather Review. 143 (7): 2685–2710. doi:10.1175/MWR-D-14-00253.1. ISSN 1520-0493.
  10. ^ a b c Bluestein, Howard B.; Snyder, Jeffrey C.; Houser, Jana B.; Pazmany, Andrew L. (June 28, 2012). (PDF). The Seventh European Conference on Radar in Meteorology and Hydrology. Archived from the original (PDF) on March 1, 2022 – via Météo France.
  11. ^ a b Houser, Jana Lesak; Bluestein, Howard B.; Snyder, Jeffrey C. (November 1, 2016). "A Finescale Radar Examination of the Tornadic Debris Signature and Weak-Echo Reflectivity Band Associated with a Large, Violent Tornado". Monthly Weather Review. 144 (11): 4101–4130. doi:10.1175/MWR-D-15-0408.1. ISSN 1520-0493.
  12. ^ a b c d e f g h i j k Marshall, Timothy P. (Haag Engineering Co.); Ladue, James G.; Ortega, Kiel L.; Stumpf, Gregory J. (NOAA/NWS) (November 7, 2012). . 26th Conference on Severe Local Storms. Archived from the original on February 10, 2023. Retrieved February 10, 2023 – via American Meteorological Society.
  13. ^ Kosiba, Karen; Wurman, Joshua (February 24, 2023). "The strongest winds in tornadoes are very near the ground". Communications Earth & Environment. 4 (1): 1–6. doi:10.1038/s43247-023-00716-6. ISSN 2662-4435.
  14. ^ a b Ellis, Randy (May 29, 2011). "Fulfilling deadly predictions". The Oklahoman. pp. 16A (), 17A. from the original on February 21, 2023. Retrieved February 20, 2023 – via Newspapers.com.
  15. ^ a b c d e "Violent Tornadoes (F4/F5/EF-4/EF-5) in Oklahoma (1950–Present)". National Weather Service Norman, Oklahoma. NOAA. February 24, 2011. from the original on September 18, 2020. Retrieved February 23, 2023.
  16. ^ "Bodies found near I-40, bringing death toll to 9". Muskogee Phoenix. Associated Press. May 25, 2011. from the original on February 9, 2023. Retrieved February 10, 2023.
  17. ^ O’Connor, Anahad (May 25, 2011). "At Least 14 People Are Killed in Storms in 3 States". The New York Times. ISSN 0362-4331. from the original on February 9, 2023. Retrieved February 9, 2023.
  18. ^ a b c Dean, Bryan (May 25, 2011). "Twisters' deadly fury: At least 5 dead, dozens injured after tornadoes sweep across state". The Oklahoman. pp. 1A (), 4A. from the original on February 19, 2023. Retrieved February 19, 2023 – via Newspapers.com.
  19. ^ Wilmoth, Adam (May 30, 2014). "Reinforced shelters make oil patch safer in tornado season". The Oklahoman. from the original on February 10, 2023. Retrieved February 10, 2023.
  20. ^ Scott, Katherine (February 14, 2012). "12 lives saved in F5 tornado proves value of Cactus Drilling emergency plan". Drilling Contractor. from the original on August 8, 2022. Retrieved February 10, 2023.
  21. ^ a b Marks, Jay F. (May 26, 2011). "Oklahoma tornadoes: Devon Energy plant idled by damage". The Oklahoman. from the original on May 27, 2022. Retrieved February 14, 2023.
  22. ^ a b c "El Reno Responds to Tornado Aftermath". KWTV-DT. May 25, 2011. from the original on February 11, 2023. Retrieved February 26, 2023.
  23. ^ a b McManus, Gary. . Mesonet.org. Archived from the original on February 9, 2023. Retrieved February 9, 2023.
  24. ^ Fiebrich, Chris (May 28, 2011). "Oklahoma Mesonet Station Stands Tall in EF-4 Tornado". The Front Page. American Meteorological Society. from the original on February 13, 2023. Retrieved February 13, 2023.
  25. ^ French, Michael M.; Skinner, Patrick S.; Wicker, Louis J.; Bluestein, Howard B. (August 1, 2015). "Documenting a Rare Tornado Merger Observed in the 24 May 2011 El Reno–Piedmont, Oklahoma, Supercell". Monthly Weather Review. 143 (8): 3025–3043. doi:10.1175/MWR-D-14-00349.1. ISSN 1520-0493.
  26. ^ a b c d e "Storm Events Database: Segment #1 of the Calumet-El Reno-Piedmont-Guthrie tornado". National Centers for Environmental Information. NOAA. from the original on January 29, 2023. Retrieved March 1, 2023.
  27. ^ Medley, Robert (May 19, 2021). "A day of horror from the sky". Piedmont-Surrey Gazette. from the original on May 20, 2021. Retrieved February 14, 2023.
  28. ^ a b "Storm Events Database: Segment #3 of the Calumet-El Reno-Piedmont-Guthrie tornado". National Centers for Environmental Information. NOAA. from the original on January 29, 2023. Retrieved March 1, 2023.
  29. ^ a b "Storm Events Database: Segment #2 of Calumet-El Reno-Piedmont-Guthrie tornado". National Centers for Environmental Information. NOAA. from the original on January 29, 2023. Retrieved March 1, 2023.
  30. ^ Goodwin, Brandon; Kelley, Ann (June 8, 2011). "Oklahoma tornado damage slamming cities' budgets". The Oklahoman. from the original on February 14, 2023. Retrieved February 14, 2023.
  31. ^ Felder, Ben (January 19, 2012). . Piedmont Today. Piedmont-Surrey Gazette. Archived from the original on January 21, 2012. Retrieved March 7, 2023.
  32. ^ "Governor Mary Fallin to tour Oklahoma tornado damage". News On 6. May 24, 2011. from the original on February 13, 2023. Retrieved February 13, 2023.
  33. ^ . OK.gov. May 29, 2011. Archived from the original on February 13, 2023. Retrieved February 14, 2023.
  34. ^ "White House approves Governor Fallin's request for tornado assistance". OK.gov. June 6, 2011. from the original on February 13, 2023. Retrieved February 14, 2023.
  35. ^ McNutt, Michael (September 28, 2011). "Oklahoma announces safe room rebate program". The Oklahoman. from the original on March 7, 2023. Retrieved March 7, 2023.

External links edit

  • National Weather Service, Norman, OK - The May 24, 2011 Tornado Outbreak in Oklahoma
  • NOAA Damage Assessment Toolkit

35°26′38″N 98°17′13″W / 35.444°N 98.287°W / 35.444; -98.287
(Starting location)

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This article is about the 2011 EF5 tornado For the infamous 2013 EF3 tornado see 2013 El Reno tornado For the 2019 EF3 tornado see Tornado outbreak sequence of May 2019 El Reno Oklahoma The El Reno Piedmont tornado was a long tracked and deadly EF5 tornado that struck central Oklahoma on the evening of May 24 2011 The tornado impacted areas near or within the communities of El Reno Piedmont and Guthrie killing nine and injuring 181 After producing incredible damage in several locations along a path of more than 60 miles 97 km the El Reno Piedmont tornado was given a rating of EF5 the highest category on the Enhanced Fujita scale It was the first tornado rated EF5 or F5 to strike Oklahoma since the 1999 Bridge Creek Moore tornado A mobile radar found that the tornado possessed possible wind speeds of up to 295 mph 475 km h 2011 El Reno Piedmont tornado Top The El Reno Piedmont tornado appears as a large wedge partly shrouded by rain Bottom The tornado s vortex signature left and hook echo right visible on radar Meteorological historyDateMay 24 2011Formed3 51 p m CDTDissipated5 35 p m CDT EF5 tornadoon the Enhanced Fujita scaleHighest winds gt 210 mph 340 km h Instantaneous wind speeds up to 295 mph 475 km h were measured via RaXPol mobile research radarOverall effectsFatalities9Injuries181Areas affectedCanadian County Kingfisher County Logan County Central Oklahoma United StatesPart of the tornado outbreak sequence of May 21 26 2011 2011 was a prolific year for tornadoes and tornado associated fatalities with multiple destructive outbreaks The El Reno Piedmont tornado occurred during an outbreak across Oklahoma and the Great Plains that produced multiple violent tornadoes near the Oklahoma City metropolitan area on May 24 and was itself part of a tornado outbreak sequence spanning May 21 26 The Oklahoma storms came just two days after a devastating EF5 tornado in Joplin Missouri on May 22 which killed 158 people and became the costliest tornado in U S history El Reno has infamously been the site of other intense tornadoes On May 31 2013 a tornado just south of the town became the largest ever recorded with a width of 2 6 miles 4 2 km and radar indicated wind speeds well over 200 mph 320 km h The massive multiple vortex tornado killed eight people including three storm chasers and received a damage rating of EF3 1 2 In 2019 a brief tornado spawned from an intense squall line struck just southeast of El Reno killing two people and injuring dozens while again receiving a rating of EF3 3 Contents 1 Meteorological synopsis 1 1 Setup 1 2 Forecast 1 3 Initiation 2 Storm track and damage 2 1 Hinton Interstate 40 2 2 Interstate 40 El Reno 2 3 El Reno Piedmont 2 4 Piedmont Guthrie 2 5 Summary 3 Impacts 3 1 Casualties 3 2 Damage 3 3 Political response 4 See also 5 References 6 External linksMeteorological synopsis editFurther information Tornado outbreak sequence of May 21 26 2011 Setup edit Early on May 24 a strong upper level trough an elongated region of low atmospheric pressure aloft advanced towards the Great Plains out of the southwestern United States and took on a negative tilt becoming oriented northwest to southeast 4 5 504 At the same time southerly flow brought moisture north over Texas and the southern Great Plains allowing dew points in Central Oklahoma to reach 18 21 C 64 70 F 5 504 505 This moisture with temperatures in the mid 80 F 27 C range allowed for ample convective available potential energy or CAPE a measure of atmospheric instability values reached 2500 4000 J kg Mid level lapse rates were nearly dry adiabatic 6 2 5 504 505 In the late morning a shortwave embedded within the main longwave trough advanced more rapidly pushing the dryline into western Oklahoma where it met the already present moisture 5 504 505 The shortwave s advance also brought strong wind shear and incredibly high storm relative helicity values of more than 500 m2s 2 The convergence of all these factors promised the development of intense convective thunderstorms 6 2 Forecast edit nbsp The National Weather Service Storm Prediction Center s Day 1 Convective Outlook for May 24 showing the Categorical Graphic nbsp The probability of a tornado within 25 miles of a point cross hatched area 10 or greater probability of EF2 tornadoes This risk was anticipated by the National Weather Service s Storm Prediction Center SPC and its local forecast office in Norman Oklahoma The Storm Prediction Center s outlooks for severe weather culminated in a high risk area being delineated over the Great Plains for May 24 Issued at 11 25 a m CDT the Storm Prediction Center s convective outlook for the day highlighted the tornado risk which included central Oklahoma inside a large region of a 45 chance of a tornado touchdown within 25 miles 40 km of any given point and a 10 or greater chance of a significant EF2 tornado within that same 25 miles 40 km radius 7 AN INTENSE OUTBREAK OF TORNADOES AND WIDESPREAD SEVERE THUNDERSTORMS IS EXPECTED LATER TODAY OVER PORTIONS OF KS OK TX WITH ALL CONDITIONS FAVORING THE POTENTIAL FOR LONG TRACKED STRONG VIOLENT TORNADOES AND VERY LARGE HAIL OVER PORTIONS OF NORTH TX CENTRAL OK AND CENTRAL KS NWS Storm Prediction Center SPC May 24 2011 1630 UTC Day 1 Convective Outlook At 12 50 p m the Storm Prediction Center issued a Particularly Dangerous Situation PDS tornado watch to remain in effect until 10 00 p m for most of central Oklahoma extending from the state border with Kansas down through the Oklahoma City metropolitan area and into northern Texas The text of the tornado watch again warned of the possible development of destructive tornadoes some of which could be long tracked and strong to violent 8 Initiation edit Thunderstorms began to develop before 2 00 p m in a north south oriented line just east of the dryline where the capping inversion was weakest 5 505 including near Altus and Lawton in southwest Oklahoma The tightly spaced storm cells rapidly developed classic supercell characteristics as they moved northeast 4 The storm that produced the El Reno Piedmont EF5 tornado formed approximately 93 miles 150 km west southwest of Oklahoma City 5 505 Storm track and damage editThe supercell that eventually generated the El Reno Piedmont tornado first produced a tornado in Caddo County Oklahoma which tracked from west of the town of Lookeba to just northeast of it The Lookeba tornado developed at 3 31 p m and persisted for approximately 16 minutes traveling nine miles 14 km and destroying multiple structures The 800 yard 730 m wide tornado earned a damage rating of EF3 4 As the Lookeba tornado moved northeast towards the Caddo Canadian county border between 3 40 and 3 42 p m the supercell s mesocyclone broadened and weakened slightly this was followed by the development of a second mesocyclone from the original to the east southeast between 3 42 and 3 44 p m 9 2689 This marked the start of the decay of the Lookeba tornado which fully dissipated by 3 47 p m 9 2690 Over the next several minutes the original western mesocyclone dwindled as the newer mesocyclone coalesced and the radar detection of a bounded weak echo region within the storm indicated that its updraft intensified during this period 9 2691 2692 Hinton Interstate 40 edit The El Reno Piedmont tornado formed at 3 51 p m as determined by mobile radar data 9 Over the next four minutes the tornado s condensation funnel extending from a low hanging wall cloud broadened causing the tornado to take on a large wedge appearance 9 2696 It intensified quickly as it moved northeast debarking and destroying many trees 4 During this period the storm was being monitored by a truck mounted Rapid Scan X band Polarimetric RaXPol mobile Doppler weather radar operated by the University of Oklahoma s Advanced Radar Research Center ARRC led by Howard Bluestein That radar stationed near the intersection of Smith Road and Walbaum Road less than two miles 3 2 km south of I 40 captured the first polarimetric rapid scan mobile Doppler weather radar dataset of an EF 5 tornado 10 3 nbsp The RaXPol mobile Dopper radar shown here scanning a severe thunderstorm in Oklahoma in 2013 As the tornado moved towards I 40 to the southeast of the RaXPol radar it detected some of the fastest wind speeds ever measured on the planet Interpretations slightly differ the maximum instantaneous radial velocity sampled by the radar was originally reported as having been 124 8 m s 279 mph measured 200 230 feet 60 70 m above the ground at 4 00 26 p m 11 4103 10 3 12 2 however the maximum velocity was later reported as having been 132 1 m s 295 mph measured 72 feet 22 m above radar level at 4 00 39 p m in a 2014 paper by Bluestein et al on the use of radar data for tornado ratings 1 811 Maximum radial velocities were also reported to have remained greater than 120 0 m s 268 mph for several minutes 12 2 Additionally multiple consecutive radar scans were averaged to yield an estimated 2 second average radial velocity of 118 4 m s 265 mph and an estimated 4 second average velocity of 110 8 m s 248 mph This was reported as likely to be an underestimate of the true 2 and 4 s average wind speeds 1 3b The instantaneous velocity readings taken are not directly equivalent to the three second gust at 33 feet 10 m that the Enhanced Fujita scale attempts to estimate but they mark the second highest wind speed ever recorded in a tornado after wind speeds of approximately 135 m s 300 mph were recorded in both the 1999 Bridge Creek Moore tornado 10 and a sub vortex within the 2013 El Reno tornado 1 2 Where the most intense winds are generally present in a tornado is an unresolved question but the limited existing research suggests that wind speeds are likely to be highest closer to the ground 13 1 804 After the detection of the wind speeds the quality of the data degraded until collection ceased altogether at 4 16 p m as the tornado progressed to the northeast and towards I 40 where it would produce its most intense damage 11 4103 Interstate 40 El Reno edit When the tornado crossed I 40 the RaXPol radar 6 2 miles 10 km away was still recording maximum radial velocities over 100 m s 220 mph 190 yards 170 m above the ground 12 2 There the tornado struck multiple people in their cars Three people Terry Peoples 50 Don Wesley Krug 71 and Joan Krug 67 14 were killed in two separate full size pickup trucks 14 which were hurled thousands of feet from the road 15 Their bodies were found more than 300 yards 270 m north of the interstate outside their vehicles stripped of clothing and rendered unrecognizable according to responding state troopers 16 Several others were injured here as their vehicles were battered and overturned 17 including a truck driver whose semi truck was flipped The interstate was left littered with pieces of cars 18 Two more fatalities in cars occurred just northeast of the interstate 15 nbsp Damage at the Cactus 117 oil drilling rig near El Reno showing the mangled and overturned rigAccording to the National Weather Service the tornado is believed to have peaked in intensity just after crossing I 40 15 There the tornado struck the Cactus 117 oil drilling rig site at EF5 intensity completely destroying it When it hit the rig s pipes and drill head were inserted deep in the well s borehole which provided the drilling pipe with 200 000 lb 91 000 kg of downforce 6 6 Despite this and despite the fact that the drilling rig weighed 862 metric tons or almost two million pounds the rig was toppled onto its side and rolled several times The well s blowout preventer was left bent at a 30 degree angle to the north Elsewhere on the site vehicles and cargo containers were lofted into the air and tossed 12 2 6 6 Twelve workers were on the site when the tornado struck and took shelter in the site s change house a steel container serving as a locker room Tied down by four steel cables anchored 5 5 feet 1 7 m deep in the ground the container was pummeled with debris One cable broke and the container was dented but all twelve workers survived without serious injury 12 2 6 6 The move to tie down change houses for tornado shelters at Cactus drilling rigs had come less than a year before the El Reno Piedmont tornado and following the storm Cactus moved to reinforce the change house roofs and position them where the rig would be less likely to topple on to them 19 Damage at the Cactus 117 rig amounted to 14 million 20 A TORNADO WARNING REMAINS IN EFFECT UNTIL 445 PM CDT FOR NORTHEASTERN CANADIAN COUNTY AT 431 PM CDT A LARGE VIOLENT TORNADO WAS LOCATED IN THE NORTHERN PARTS OF EL RENO MOVING EAST NORTHEAST AT 30 MPH PERSONS IN EL RENO PIEDMONT AND NORTHERN YUKON NEED TO BE TAKING SHELTER THIS IS A VERY DANGEROUS SITUATION LOCATIONS IN THE WARNING INCLUDE CONCHO EL RENO NORTHWESTERN OKLAHOMA CITY OKARCHE PIEDMONT AND RICHLAND National Weather Service Norman Oklahoma Severe Weather Statement 4 32 p m CDT May 24 2011 After destroying the Cactus rig the tornado continued moving northeast Just to the west of the rig it struck a complex of buildings including a scrap yard auto repair shop garage and grain storage facility The repair shop the garage and a farmhouse were destroyed and the grain facility damaged beyond repair 6 7 Flying debris from the salvage yard impacted a new natural gas processing plant operated by Devon Energy but all employees present avoided injury by sheltering on site in time 21 The damage caused a major gas leak at the plant which was not secured until nightfall 22 The tornado then passed between Fort Reno and an Oklahoma Mesonet site which recorded a sharp drop in atmospheric pressure as well as a one minute average wind speed of 115 mph 185 km h and a maximum wind gust of 151 mph 243 km h at 4 21 p m 23 4 The gust was the highest wind speed ever recorded by the Oklahoma Mesonet 23 The site sustained only minor damage the tornado likely having passed several hundred yards from it 24 Fort Reno sustained some structural damage 22 El Reno Piedmont edit nbsp Debarked trees north of El Reno Leaving the environs of El Reno the tornado then tracked through miles of mainly agricultural land Widespread EF3 damage pockmarked with areas of EF4 damage was found between the towns of El Reno and Piedmont 15 During the tornado s journey between El Reno and Piedmont at least two satellite tornadoes were present at different times The first was only recognized after the fact using radar data That data shows the El Reno Piedmont tornado and a separate cyclonic tornado originating from the same mesocyclone rotating in a counterclockwise fashion about a single common center in a demonstration of the Fujiwhara effect for several minutes before merging at approximately 4 35 p m 25 3033 The second satellite came just minutes later At 4 37 p m a Storm Prediction Center employee observed this separate vortex several miles northwest of Richland as it rotated around the main tornado for two minutes only 50 yards 46 m wide or so it produced no damage that could be distinguished from that of the larger tornado and was thus assigned a damage rating of EF0 4 Piedmont Guthrie edit nbsp Debris from a house northeast of Piedmont struck by the tornado this damage was given an EF4 rating As the tornado neared Piedmont it produced widespread EF4 damage north and west of the town 26 About three point one miles 5 km north of Piedmont the tornado leveled ten homes on Northridge Lane and rolled or lofted vehicles into nearby fields However surveys found that nails had been used to help fasten the walls to their concrete slab foundations which failed and left broken portions of the slabs where they had been driven in The tornado destroyed two more houses on Axeman Street four miles 6 5 km northeast of Piedmont A Chevrolet Avalanche parked in the garage of one of the residences was hurled 710 yards 650 m to the northeast and into a thicket of trees in a ravine which were debarked and relieved of their branches The Chevrolet s engine block and axles were found nearby ripped from the car The damage here was assigned an EF4 rating 12 2 3 In the subdivision of Falcon Lake five miles eight km northeast of Piedmont and on the border of Canadian and Kingfisher counties multiple homes again had the walls removed from their concrete slab foundations Vehicles were tossed into an adjacent lake Two children aged one and three years old were killed in their home which lacked a storm shelter 26 12 4 All told the tornado destroyed 88 homes in the Piedmont area 27 The tornado s intensity diminished somewhat as the tornado crossed into Kingfisher and Logan counties 12 5 having already traveled just shy of 40 miles 64 km on its track through Canadian County 26 EF2 and EF3 damage still occurred as the tornado damaged houses destroyed multiple mobile homes 12 5 and collapsed high voltage transmission towers while continuing to debark trees to the point where only stumps remained 28 The tornado killed two more people caught outside without shelter near the community of Cashion 12 5 Along SH 74 the tornado destroyed three homes and an airplane hangar 18 The tornado approached Guthrie but moved northwest of the town which avoided a direct hit The tornado finally dissipated northeast of Guthrie producing only minor tree damage there 29 The tornado s parent supercell went on to produce another tornado south of the community of Stillwater which earned a damage rating of EF2 4 Summary edit nbsp The damage path of the El Reno Piedmont tornado labeled B2 The tornado labeled B3 was a brief satellite tornado with a damage rating of EF0 The tornado reached a maximum width of 1 760 yards 1 610 m or over a mile wide at its peak Its damage path was 63 miles 101 km long The tornado traversed this distance over the course of about one hour and 44 minutes implying an average forward speed of approximately 36 miles per hour 58 km h 4 On June 1 2011 National Weather Service officials upgraded the tornado s preliminary EF4 rating to EF5 based on a combination of the damage to the Cactus 117 drilling rig site the complete destruction of other buildings in the rig s vicinity tossed vehicles and the mobile Doppler radar data 6 7 In the end 22 tornadoes occurred in central Oklahoma during the El Reno Piedmont tornado s parent outbreak In the Oklahoma City area five main supercells produced 12 tornadoes 6 1 three of them violent EF4 The El Reno Piedmont tornado was the strongest of them all 12 1 The El Reno Piedmont tornado became one of only 59 tornadoes ever rated F5 or EF5 to date and one of only nine tornadoes to receive an EF5 rating since the advent of the Enhanced Fujita scale in 2007 It was the first tornado in Oklahoma to receive an EF5 rating and the only one until the 2013 Moore tornado 15 Impacts edit nbsp This May 26 2011 satellite image shows the track of the El Reno Piedmont tornado from two days prior northwest of Oklahoma City Following the tornado first responders in Canadian County scoured the 10 20 square mile 26 52 km2 debris path in the corridor west of El Reno near the interstate Three emergency operations centers were established in Canadian County near Piedmont El Reno and Interstate 40 22 Casualties edit The El Reno Piedmont tornado killed nine people and injured 181 4 making it responsible for the majority of the casualties caused by the entire outbreak in which 11 died and 293 were injured 6 2 Of that total seven deaths and 112 injuries occurred in Canadian County 26 46 injuries occurred in Kingfisher County 29 and two deaths and 23 injuries occurred in Logan County 28 Three children with critical injuries in Piedmont numbered among the casualties in Canadian County 18 In an overview of the outbreak in a paper presented at the annual American Meteorological Society conference National Weather Service authors speculated that the relatively low number of fatalities during the outbreak which involved three violent tornadoes near a major metropolitan area was due in part due to the incredible reaction of the community to not only watches and warnings but also to the forecast of severe weather on May 24 6 2 Damage edit The Devon Energy natural gas plant near El Reno was forced offline for several weeks as the company assessed and repaired the 140 million facility 21 Though the amount of 14 million was given as the cost of damage to the Cactus 117 drilling rig site in news reports a detailed monetary damage estimate by NWS NOAA for the El Reno Piedmont tornado was not made available 4 The only government assessment of damages appears in the tornado s entry in NOAA s NCEI Storm Events Database which predicted that the total was probably going to be well in the tens of millions 26 Meanwhile insurance officials reported an estimated 200 300 million in total private property insured losses from the Oklahoma portion of the tornado outbreak 30 The city of Piedmont paid 230 380 for debris removal 75 of which was reimbursed by FEMA 31 Political response edit Governor of Oklahoma Mary Fallin declared a state of emergency in 68 counties on May 24 including Canadian Kingfisher and Logan counties before taking to the air to survey damage in a number of areas which included Piedmont and Guthrie 32 On May 29 Governor Fallin requested that the White House issue a federal major disaster declaration for seven Oklahoma counties again including Canadian Kingfisher and Logan counties 33 On June 6 President Obama approved Governor Fallin s request for federal disaster relief 34 In September 2011 Governor Fallin and state emergency management officials announced the SoonerSafe Safe Room Rebate Program using 1 million in FEMA funds which distributed cash rebates via a statewide drawing to reimburse up to 500 Oklahomans seeking to build storm shelters Victims of the May 24 tornado outbreak were among those who received priority selection for the rebates 35 See also editGlossary of meteorology List of F5 and EF5 tornadoes Tornadoes of 2011 List of United States tornadoes in May 2011 2013 Moore tornadoReferences edit a b c d e Snyder Jeffrey C Bluestein Howard B August 1 2014 Some Considerations for the Use of High Resolution Mobile Radar Data in Tornado Intensity Determination Weather and Forecasting 29 4 799 827 doi 10 1175 WAF D 14 00026 1 ISSN 1520 0434 a b Bluestein Howard B Thiem Kyle J Snyder Jeffrey C Houser Jana B August 1 2018 The Multiple Vortex Structure of the El Reno Oklahoma Tornado on 31 May 2013 Monthly Weather Review 146 8 2483 2502 doi 10 1175 MWR D 18 0073 1 ISSN 1520 0493 Fernandez Manny Fenwick Ben May 26 2019 There I Was Flying Across the Room Tornado Leaves an Oklahoma Town Shaken The New York Times ISSN 0362 4331 Archived from the original on March 2 2023 Retrieved March 2 2023 a b c d e f g h i j The May 24 2011 Tornado Outbreak in Oklahoma National Weather Service NOAA Archived from the original on December 11 2022 Retrieved February 9 2022 a b c d e f Tanamachi Robin L Heinselman Pamela L Wicker Louis J June 1 2015 Impacts of a Storm Merger on the 24 May 2011 El Reno Oklahoma Tornadic Supercell Weather and Forecasting 30 3 501 524 doi 10 1175 WAF D 14 00164 1 ISSN 1520 0434 a b c d e f g h i j Ortega Kiel L Bluestein Howard B Burgess Donald W et al January 25 2012 Overview of the May 24 2011 Tornado Outbreak 92nd American Meteorological Society Annual Meeting Special Symposium on the Tornado Disasters of 2011 Archived from the original on February 7 2023 Retrieved February 10 2023 via American Meteorological Society Hart John A Grams Jeremy S May 24 2011 Storm Prediction Center May 24 2011 1630 UTC Day 1 Convective Outlook Report Norman Oklahoma NOAA NWS Storm Prediction Center SPC Archived from the original on January 10 2019 Retrieved February 13 2023 Mead Corey M May 24 2011 Particularly Dangerous Situation PDS Tornado Watch 356 Storm Prediction Center Report Norman Oklahoma National Oceanic and Atmospheric Administration Archived from the original on September 3 2014 Retrieved May 24 2011 a b c d e Houser Jana Lesak Bluestein Howard B Snyder Jeffrey C July 1 2015 Rapid Scan Polarimetric Doppler Radar Observations of Tornadogenesis and Tornado Dissipation in a Tornadic Supercell The El Reno Oklahoma Storm of 24 May 2011 Monthly Weather Review 143 7 2685 2710 doi 10 1175 MWR D 14 00253 1 ISSN 1520 0493 a b c Bluestein Howard B Snyder Jeffrey C Houser Jana B Pazmany Andrew L June 28 2012 Rapidscan polarimetric mobile Doppler radar observations at Xband of an EF5 tornado in Oklahoma on 24 May 2011 PDF The Seventh European Conference on Radar in Meteorology and Hydrology Archived from the original PDF on March 1 2022 via Meteo France a b Houser Jana Lesak Bluestein Howard B Snyder Jeffrey C November 1 2016 A Finescale Radar Examination of the Tornadic Debris Signature and Weak Echo Reflectivity Band Associated with a Large Violent Tornado Monthly Weather Review 144 11 4101 4130 doi 10 1175 MWR D 15 0408 1 ISSN 1520 0493 a b c d e f g h i j k Marshall Timothy P Haag Engineering Co Ladue James G Ortega Kiel L Stumpf Gregory J NOAA NWS November 7 2012 Performance of residences and shelters in the Oklahoma tornadoes of 24 May 2011 26th Conference on Severe Local Storms Archived from the original on February 10 2023 Retrieved February 10 2023 via American Meteorological Society Kosiba Karen Wurman Joshua February 24 2023 The strongest winds in tornadoes are very near the ground Communications Earth amp Environment 4 1 1 6 doi 10 1038 s43247 023 00716 6 ISSN 2662 4435 a b Ellis Randy May 29 2011 Fulfilling deadly predictions The Oklahoman pp 16A archive 17A Archived from the original on February 21 2023 Retrieved February 20 2023 via Newspapers com a b c d e Violent Tornadoes F4 F5 EF 4 EF 5 in Oklahoma 1950 Present National Weather Service Norman Oklahoma NOAA February 24 2011 Archived from the original on September 18 2020 Retrieved February 23 2023 Bodies found near I 40 bringing death toll to 9 Muskogee Phoenix Associated Press May 25 2011 Archived from the original on February 9 2023 Retrieved February 10 2023 O Connor Anahad May 25 2011 At Least 14 People Are Killed in Storms in 3 States The New York Times ISSN 0362 4331 Archived from the original on February 9 2023 Retrieved February 9 2023 a b c Dean Bryan May 25 2011 Twisters deadly fury At least 5 dead dozens injured after tornadoes sweep across state The Oklahoman pp 1A archive 4A Archived from the original on February 19 2023 Retrieved February 19 2023 via Newspapers com Wilmoth Adam May 30 2014 Reinforced shelters make oil patch safer in tornado season The Oklahoman Archived from the original on February 10 2023 Retrieved February 10 2023 Scott Katherine February 14 2012 12 lives saved in F5 tornado proves value of Cactus Drilling emergency plan Drilling Contractor Archived from the original on August 8 2022 Retrieved February 10 2023 a b Marks Jay F May 26 2011 Oklahoma tornadoes Devon Energy plant idled by damage The Oklahoman Archived from the original on May 27 2022 Retrieved February 14 2023 a b c El Reno Responds to Tornado Aftermath KWTV DT May 25 2011 Archived from the original on February 11 2023 Retrieved February 26 2023 a b McManus Gary Oklahoma Mesonet Site Records Tornadic Winds Mesonet org Archived from the original on February 9 2023 Retrieved February 9 2023 Fiebrich Chris May 28 2011 Oklahoma Mesonet Station Stands Tall in EF 4 Tornado The Front Page American Meteorological Society Archived from the original on February 13 2023 Retrieved February 13 2023 French Michael M Skinner Patrick S Wicker Louis J Bluestein Howard B August 1 2015 Documenting a Rare Tornado Merger Observed in the 24 May 2011 El Reno Piedmont Oklahoma Supercell Monthly Weather Review 143 8 3025 3043 doi 10 1175 MWR D 14 00349 1 ISSN 1520 0493 a b c d e Storm Events Database Segment 1 of the Calumet El Reno Piedmont Guthrie tornado National Centers for Environmental Information NOAA Archived from the original on January 29 2023 Retrieved March 1 2023 Medley Robert May 19 2021 A day of horror from the sky Piedmont Surrey Gazette Archived from the original on May 20 2021 Retrieved February 14 2023 a b Storm Events Database Segment 3 of the Calumet El Reno Piedmont Guthrie tornado National Centers for Environmental Information NOAA Archived from the original on January 29 2023 Retrieved March 1 2023 a b Storm Events Database Segment 2 of Calumet El Reno Piedmont Guthrie tornado National Centers for Environmental Information NOAA Archived from the original on January 29 2023 Retrieved March 1 2023 Goodwin Brandon Kelley Ann June 8 2011 Oklahoma tornado damage slamming cities budgets The Oklahoman Archived from the original on February 14 2023 Retrieved February 14 2023 Felder Ben January 19 2012 FEMA reimbursement on its way more recovery money headed to Oklahoma Piedmont Today Piedmont Surrey Gazette Archived from the original on January 21 2012 Retrieved March 7 2023 Governor Mary Fallin to tour Oklahoma tornado damage News On 6 May 24 2011 Archived from the original on February 13 2023 Retrieved February 13 2023 Governor Fallin Requests Federal Disaster Assistance for Individuals Businesses in 7 Counties OK gov May 29 2011 Archived from the original on February 13 2023 Retrieved February 14 2023 White House approves Governor Fallin s request for tornado assistance OK gov June 6 2011 Archived from the original on February 13 2023 Retrieved February 14 2023 McNutt Michael September 28 2011 Oklahoma announces safe room rebate program The Oklahoman Archived from the original on March 7 2023 Retrieved March 7 2023 External links editNational Weather Service Norman OK The May 24 2011 Tornado Outbreak in Oklahoma NOAA Damage Assessment Toolkit 35 26 38 N 98 17 13 W 35 444 N 98 287 W 35 444 98 287 Starting location Retrieved from https en wikipedia org w index php title 2011 El Reno Piedmont tornado amp oldid 1223080700, wikipedia, wiki, book, books, library,

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