fbpx
Wikipedia

Mount Erebus

Mount Erebus (/ˈɛrɪbəs/) is the second-highest volcano in Antarctica (after Mount Sidley), the highest active volcano in Antarctica, and the southernmost active volcano on Earth. It is the sixth-highest ultra mountain on an island, and the second-highest in Antarctica.[1][4] With a summit elevation of 3,794 metres (12,448 ft), it is located in the Ross Dependency on Ross Island, which is also home to three inactive volcanoes: Mount Terror, Mount Bird, and Mount Terra Nova.

Mount Erebus
Mount Erebus
Highest point
Elevation3,794 m (12,448 ft)[1]
Prominence3,794 m (12,448 ft)[1]
Ranked 34th
Isolation121 km (75 mi) 
ListingUltra
Coordinates77°31′47″S 167°09′12″E / 77.52972°S 167.15333°E / -77.52972; 167.15333[2]
Geography
Mount Erebus
Mount Erebus in Antarctica
LocationRoss Island, Antarctica
(claimed by New Zealand as part of the Ross Dependency)
Topo mapRoss Island
Geology
Age of rock1.3 million years
Mountain typeStratovolcano (composite cone)
Volcanic beltMcMurdo Volcanic Group
Last eruptionCurrently erupting
Climbing
First ascent1908 by Edgeworth David and party[3]
Easiest routeBasic snow & ice climb

The volcano has been active since about 1.3 million years ago and has a long-lived lava lake in its inner summit crater that has been present since at least the early 1970s.

The volcano was the site of the Air New Zealand Flight 901 accident, the Mount Erebus disaster, which occurred in November 1979.

Geology and volcanology edit

 
Anorthoclase crystal (45 mm long) from Mt. Erebus

Mount Erebus is the world's southernmost active volcano. It is the current eruptive centre of the Erebus hotspot. The summit contains a persistent convecting phonolitic lava lake, one of five long-lasting lava lakes on Earth. Characteristic eruptive activity consists of Strombolian eruptions from the lava lake or from one of several subsidiary vents, all within the volcano's inner crater.[5][6] The volcano is scientifically remarkable in that its relatively low-level and unusually persistent eruptive activity enables long-term volcanological study of a Strombolian eruptive system very close (hundreds of metres) to the active vents, a characteristic shared with only a few volcanoes on Earth, such as Stromboli in Italy. Scientific study of the volcano is also facilitated by its proximity to McMurdo Station (U.S.) and Scott Base (New Zealand), both sited on the same island around 35 km away.

Mount Erebus is classified as a polygenetic stratovolcano. The bottom half of the volcano is a shield and the top half is a stratocone. The composition of the current eruptive products of Erebus are anorthoclase-porphyritic tephritic phonolite and phonolite, which are the bulk of exposed lava flow on the volcano. The oldest eruptive products consist of relatively undifferentiated and nonviscous basanite lavas that form the low broad platform shield of Erebus. Slightly younger basanite and phonotephrite lavas crop out on Fang Ridge – an eroded remnant of an early Erebus volcano – and at other isolated locations on the flanks of Erebus. Erebus is the world's only presently erupting phonolite volcano.[7]

Lava flows of more viscous phonotephrite and trachyte erupted after the basanite. The upper slopes of Mount Erebus are dominated by steeply dipping (about 30°) tephritic phonolite lava flows with large-scale flow levees. A conspicuous break in slope around 3,200 m ASL calls attention to a summit plateau representing a caldera. The summit caldera was created by an explosive VEI-6 eruption that occurred 18,000 ± 7,000 years ago.[8] It is filled with small volume tephritic phonolite and phonolite lava flows. In the center of the summit caldera is a small, steep-sided cone composed primarily of decomposed lava bombs and a large deposit of anorthoclase crystals known as Erebus crystals. The active lava lake in this summit cone undergoes continuous degassing.

Following studies conducted in the early 1990s, it was found that Mount Erebus releases small amounts of gold crystals in the gases produced from the volcano; these crystals range in size from 20 to 60 micrometres. It is estimated that around 80 grams of gold are released by the volcano in this manner each day.[9]

Researchers spent more than three months during the 2007–08 field season installing an atypically dense array of seismometers around Mount Erebus to listen to waves of energy generated by small, controlled blasts from explosives they buried along its flanks and perimeter, and to record scattered seismic signals generated by lava lake eruptions and local ice quakes. By studying the refracted and scattered seismic waves, the scientists produced an image of the uppermost (top few km) of the volcano to understand the geometry of its "plumbing" and how the magma rises to the lava lake. [10][11] These results demonstrated a complex upper-volcano conduit system with appreciable upper-volcano magma storage to the northwest of the lava lake at depths hundreds of meters below the surface.

Ice fumaroles edit

Mt. Erebus is notable for its numerous ice fumaroles – ice towers that form around gases that escape from vents in the surface.[12] The ice caves associated with the fumaroles are dark, in polar alpine environments starved in organics and with oxygenated hydrothermal circulation in highly reducing host rock. The life is sparse, mainly bacteria and fungi. This makes it of special interest for studying oligotrophs – organisms that can survive on minimal amounts of resources.

The caves on Erebus are of special interest for astrobiology,[13] as most surface caves are influenced by human activities, or by organics from the surface brought in by animals (e.g. bats and birds) or ground water.[14] The caves at Erebus are at high altitude, yet accessible for study. Some of the caves can reach temperatures of 25 degrees Celsius (77 degrees Fahrenheit), and with light near the cave mouths, in some caves covered by thin overlying ice the light reach even deeper, is sufficient to sustain an ecosystem of flora and fauna consisting of moss, algae, arthropods and nematodes.[15]

They are dynamic systems that collapse and rebuild, but persist over decades. The air inside the caves has 80 to 100% humidity, and up to 3% carbon dioxide (CO2), and some carbon monoxide (CO) and hydrogen (H2), but almost no methane (CH4) or hydrogen sulfide (H2S). Many of them are completely dark, so cannot support photosynthesis. Organics can only come from the atmosphere, or from ice algae that grow on the surface in summer, which may eventually find their way into the caves through burial and melting. As a result, most micro-organisms there are chemolithoautotrophic i.e. microbes that get all of their energy from chemical reactions with the rocks, and that do not depend on any other lifeforms to survive. The organisms survive using CO2 fixation and some may use CO oxidization for the metabolism. The main types of microbe found there are Chloroflexota and Acidobacteriota.[16][17] In 2019, the Marsden Fund granted nearly NZ$1 million to the University of Waikato and the University of Canterbury to study the micro-organisms in the geothermal fumaroles.[18]

Named features edit

Mount Erebus is large enough to have several named features on its slopes, including a number of craters and rock formations.

Named craters located on Mount Erebus include Side Crater, a nearly circular crater named for its location on the side of the main summit cone, and Western Crater, named for the slope on which it sits.[19][20]

There are many rock formations on Mount Erebus. On the northwest upper slope of the active cone near a former exploration camp site, lava flow has formed a prominent outcropping called Nausea Knob, named for the nausea caused by elevation sickness.[21] Also on the northwest slope sits Tarr Nunatak, named by the New Zealand Geographic Board (NZGB) in 2000 after Sgt. L.W. Tarr, an aircraft mechanic with the New Zealand contingent of the Commonwealth Trans-Antarctic Expedition.[22] On the southwest rim of the summit caldera sits Seismic Bluff, named for a seismic station nearby.[23] The Cashman Crags are two rock summits at about 1,500 metres (4,900 ft) high on the west slope of Mount Erebus, 0.6 nautical miles (1.1 km) southwest of Hoopers Shoulder. The crags were named by the Advisory Committee on Antarctic Names after Katharine Cashman,[24] United States Antarctic Research Program team member.[25]

History edit

Discovery and naming edit

Mount Erebus was discovered on 27 January 1841 (and observed to be in eruption),[26] by polar explorer Sir James Clark Ross on his Antarctic expedition, who named it and its companion, Mount Terror, after his ships, HMS Erebus and HMS Terror (which were later used by Sir John Franklin on his disastrous Arctic expedition). Present with Ross on HMS Erebus was the young Joseph Hooker, future president of the Royal Society and close friend of Charles Darwin. Erebus is a dark region in Hades in Greek mythology, personified as the Ancient Greek primordial deity of darkness, the son of Chaos.[27]

Historic sites edit

 
Photograph of Mount Erebus (and Adélie penguins) taken by the Terra Nova expedition in 1913

The mountain was surveyed in December 1912 by a science party from Robert Falcon Scott's Terra Nova expedition, who also collected geological samples. Two of the camp sites they used have been recognised for their historic significance:

  • Upper “Summit Camp” site (HSM 89) consists of part of a circle of rocks, which were probably used to weight the tent valances.
  • Lower “Camp E” site (HSM 90) consists of a slightly elevated area of gravel, as well as some aligned rocks, which may have been used to weight the tent valances.

They have been designated historic sites or monuments following a proposal by the United Kingdom, New Zealand, and the United States to the Antarctic Treaty Consultative Meeting.[28]

Climbing edit

Mount Erebus' summit crater rim was first achieved by members of Sir Ernest Shackleton's party; Professor Edgeworth David, Sir Douglas Mawson, Dr Alister Mackay, Jameson Adams, Dr Eric Marshall and Phillip Brocklehurst (who did not reach the summit), in 1908. Its first known solo ascent and the first winter ascent was accomplished by British mountaineer Roger Mear on 7 June 1985, a member of the "In the Footsteps of Scott" expedition.[29] On 19–20 January 1991, Charles J. Blackmer, an iron-worker for many years at McMurdo Station and the South Pole, accomplished a solo ascent in about 17 hours completely unsupported, by snow mobile and on foot.[30][31]

Robotic exploration edit

In 1992, the inside of the volcano was explored by Dante I, an eight legged tethered robotic explorer.[32] Dante was designed to acquire gas samples from the magma lake inside the inner crater of Mount Erebus to understand the chemistry better through the use of the on-board gas chromatograph, as well as measuring the temperature inside the volcano and the radioactivity of the materials present in such volcanoes. Dante successfully scaled a significant portion of the crater before technical difficulties emerged with the fibre-optic cable used for communications between the walker and base station. Since Dante had not yet reached the bottom of the crater, no data of volcanic significance was recorded. The expedition proved to be highly successful in terms of robotic and computer science, and was possibly the first expedition by a robotic platform to Antarctica.

Air New Zealand Flight 901 edit

Air New Zealand Flight 901 was a scheduled sightseeing service from Auckland Airport in New Zealand to Antarctica and return with a scheduled stop at Christchurch Airport to refuel before returning to Auckland.[33] The Air New Zealand flyover service, for the purposes of Antarctic sightseeing, was operated with McDonnell Douglas DC-10-30 aircraft and began in February 1977. The flight crashed into Mount Erebus on November 28, 1979, killing all 257 people on board. Passenger photographs taken seconds before the collision ruled out the "flying in a cloud" theory, showing perfectly clear visibility well beneath the cloud base, with landmarks 13 miles (21 km) to the left and 10 miles (16 km) to the right of the aircraft visible.[34] The mountain directly ahead was lit by sunlight shining from directly behind the aircraft through the cloud deck above, resulting in a lack of shadows that made Mount Erebus effectively invisible against the overcast sky beyond in a classic whiteout (more accurately, "flat-light") phenomenon.[35] Further investigation of the crash showed an Air New Zealand navigational error and a cover-up that resulted in about $100 million in lawsuits. Air New Zealand discontinued its flyovers of Antarctica. Its final flight was on February 17, 1980. During the Antarctic summer, snow melt on the flanks of Mount Erebus continually reveals debris from the crash that is visible from the air.[33]

Image gallery edit

See also edit

References edit

  1. ^ a b c "Mount Erebus". Global Volcanism Program. Smithsonian Institution. Retrieved 29 December 2008.
  2. ^ . Geographic Names Information System. United States Geological Survey, United States Department of the Interior. Retrieved 30 July 2011.
  3. ^ . Australian Antarctic Division. Archived from the original on 22 May 2010. Retrieved 29 December 2008.
  4. ^ "Antarctica Ultra-Prominences", peaklist.org, Aaron Maizlish
  5. ^ Kyle, P. R., ed. (1994). Volcanological and Environmental Studies of Mount Erebus, Antarctica. Antarctic Research Series. Washington DC: American Geophysical Union. ISBN 0-87590-875-6. OCLC 1132108108.
  6. ^ Aster, R.; Mah, S.; Kyle, P.; McIntosh, W.; Dunbar, N.; Johnson, J. (2003). "Very long period oscillations of Mount Erebus volcano". J. Geophys. Res. 108 (B11): 2522. Bibcode:2003JGRB..108.2522A. doi:10.1029/2002JB002101.
  7. ^ Burgisser, Alain; Oppenheimer, Clive; Alletti, Marina; Kyle, Philip R.; Scaillet, Bruno; Carroll, Michael R. (November 2012). "Backward Tracking of Gas Chemistry Measurements at Erebus Volcano" (PDF). Geochemistry, Geophysics, Geosystems. 13 (11). Bibcode:2012GGG....1311010B. doi:10.1029/2012GC004243. S2CID 14494732.
  8. ^ "VOGRIPA". www.bgs.ac.uk.
  9. ^ Hecht, Jeff (7 September 1991). "Science: Antarctic gold dust". New Scientist. Retrieved 24 August 2022.
  10. ^ "Plumbing Erebus: Scientists use seismic technique to map interior of Antarctic volcano".
  11. ^ Zandomeneghi, D.; Aster, R.; Kyle, P.; Barclay, A.; Chaput, J.; Knox, H. (2013). "Internal structure of Erebus volcano, Antarctica imaged by high-resolution active-source seismic tomography and coda interferometry". Journal of Geophysical Research. 118 (3): 1067–1078. Bibcode:2013JGRB..118.1067Z. doi:10.1002/jgrb.50073. S2CID 129121276.
  12. ^ For photographs of ice fumaroles, see Ice Towers 2015-01-01 at the Wayback Machine Mount Everest Volcano Observatory
  13. ^ . Astrobiology Magazine. 17 February 2017. Archived from the original on 6 May 2021. Retrieved 5 July 2019.{{cite web}}: CS1 maint: unfit URL (link)
  14. ^ AnOther (18 June 2015). "Mount Erebus: A Tale of Ice and Fire". AnOther. Retrieved 5 July 2019.
  15. ^ "Secret Life May Thrive Under Warm Antarctic Caves". Geology In. 9 September 2017.
  16. ^ Tebo, Bradley M.; Davis, Richard E.; Anitori, Roberto P.; Connell, Laurie B.; Schiffman, Peter; Staudigel, Hubert (2015). "Microbial communities in dark oligotrophic volcanic ice cave ecosystems of Mt. Erebus, Antarctica". Frontiers in Microbiology. 6: 179. doi:10.3389/fmicb.2015.00179. ISSN 1664-302X. PMC 4356161. PMID 25814983.
  17. ^ Wall, Mike (9 December 2011). "Antarctic Cave Microbes Shed Light on Life's Diversity". Livescience.
  18. ^ Harris, Rosie (2019). "Micro-organisms in the volcanic vents of Erebus - a key to life on other planets?". Antarctic. 38 (3 & 4): 14–15. ISSN 0003-5327.
  19. ^ . Geographic Names Information System. United States Geological Survey, United States Department of the Interior. Retrieved 27 July 2018.
  20. ^ . Geographic Names Information System. United States Geological Survey, United States Department of the Interior. Retrieved 11 January 2019.
  21. ^ . Geographic Names Information System. United States Geological Survey. Retrieved 11 January 2019.
  22. ^ . Geographic Names Information System. United States Geological Survey, United States Department of the Interior. Retrieved 11 January 2019.
  23. ^ . Geographic Names Information System. United States Geological Survey. Retrieved 11 January 2019.
  24. ^ The Royal Society: Katharine Cashman Retrieved 2021-05-10
  25. ^ . Geographic Names Information System. United States Geological Survey. Retrieved 28 May 2020.
  26. ^ Ross, J.C. (1847). A Voyage of Discovery and Research in the Southern and Antarctic Regions, During the Years 1839-43. Vol. 1. John Murray. p. 216-218.
  27. ^ Hesiod, Theogony 116–124.
  28. ^ "List of Historic Sites and Monuments approved by the ATCM (2013)" (PDF). Antarctic Treaty Secretariat. 2013. Retrieved 9 January 2014.
  29. ^ Mear, Roger; Swan, Robert; Fulcher, Lindsay (1987). A Walk to the Pole: To the Heart of Antarctica in the Footsteps of Scott. Crown. pp. 95–104. ISBN 978-0-517-56611-4. OCLC 16092953.
  30. ^ Wheeler, Sara (1998). Terra Incognita. Random House. ISBN 9780679440789.
  31. ^ Johnson, Nicholas (2005). Big Dead Place. Feral House. ISBN 9780922915996.
  32. ^ Wettergreen, David; Thorpe, Chuck; Whittaker, Red (December 1993). "Exploring Mount Erebus by Walking Robot". Robotics and Autonomous Systems. 11 (3–4): 171–185. CiteSeerX 10.1.1.46.6546. doi:10.1016/0921-8890(93)90022-5. S2CID 1190583.
  33. ^ a b Holmes, Paul (2011). Daughters of Erebus. Hodder Moa. p. 31. ISBN 978-1-86971-250-1. OCLC 740446014.
  34. ^ Royal Commission Report, para 28
  35. ^ Royal Commission Report, para 40(a)
General
  • Sims, Kenneth W. W.; Aster, Richard C.; Gaetani, Glenn \; Blichert-Toft, Janne; Phillips, Erin H.; Wallace, Paul J.; Mattioli, Glen S.; Rasmussen, Dan; Boyd, Eric S. (2021). "Mount Erebus" (PDF). Geological Society of London, Memoirs. doi:10.1144/m55-2019-8. eISSN 2041-4722. ISSN 0435-4052. S2CID 233522516.
  • The Mount Erebus Volcano Observatory

External links edit

  • Erebus glacier tongue
  • A panoramic view from the summit of Mount Erebus
  • Video of Mount Erebus erupting in 2005
  • List of published research about Mount Erebus, maintained by Mount Erebus Volcano Observatory

  Mount Erebus travel guide from Wikivoyage

mount, erebus, confused, with, mount, elbrus, canada, second, highest, volcano, antarctica, after, mount, sidley, highest, active, volcano, antarctica, southernmost, active, volcano, earth, sixth, highest, ultra, mountain, island, second, highest, antarctica, . Not to be confused with Mount Elbrus or Mount Erebus Canada Mount Erebus ˈ ɛr ɪ b e s is the second highest volcano in Antarctica after Mount Sidley the highest active volcano in Antarctica and the southernmost active volcano on Earth It is the sixth highest ultra mountain on an island and the second highest in Antarctica 1 4 With a summit elevation of 3 794 metres 12 448 ft it is located in the Ross Dependency on Ross Island which is also home to three inactive volcanoes Mount Terror Mount Bird and Mount Terra Nova Mount ErebusMount ErebusHighest pointElevation3 794 m 12 448 ft 1 Prominence3 794 m 12 448 ft 1 Ranked 34thIsolation121 km 75 mi ListingUltraCoordinates77 31 47 S 167 09 12 E 77 52972 S 167 15333 E 77 52972 167 15333 2 GeographyMount ErebusMount Erebus in AntarcticaLocationRoss Island Antarctica claimed by New Zealand as part of the Ross Dependency Topo mapRoss IslandGeologyAge of rock1 3 million yearsMountain typeStratovolcano composite cone Volcanic beltMcMurdo Volcanic GroupLast eruptionCurrently eruptingClimbingFirst ascent1908 by Edgeworth David and party 3 Easiest routeBasic snow amp ice climbThe volcano has been active since about 1 3 million years ago and has a long lived lava lake in its inner summit crater that has been present since at least the early 1970s The volcano was the site of the Air New Zealand Flight 901 accident the Mount Erebus disaster which occurred in November 1979 Contents 1 Geology and volcanology 2 Ice fumaroles 3 Named features 4 History 4 1 Discovery and naming 4 2 Historic sites 4 3 Climbing 4 4 Robotic exploration 4 5 Air New Zealand Flight 901 5 Image gallery 6 See also 7 References 8 External linksGeology and volcanology edit nbsp Anorthoclase crystal 45 mm long from Mt ErebusMount Erebus is the world s southernmost active volcano It is the current eruptive centre of the Erebus hotspot The summit contains a persistent convecting phonolitic lava lake one of five long lasting lava lakes on Earth Characteristic eruptive activity consists of Strombolian eruptions from the lava lake or from one of several subsidiary vents all within the volcano s inner crater 5 6 The volcano is scientifically remarkable in that its relatively low level and unusually persistent eruptive activity enables long term volcanological study of a Strombolian eruptive system very close hundreds of metres to the active vents a characteristic shared with only a few volcanoes on Earth such as Stromboli in Italy Scientific study of the volcano is also facilitated by its proximity to McMurdo Station U S and Scott Base New Zealand both sited on the same island around 35 km away Mount Erebus is classified as a polygenetic stratovolcano The bottom half of the volcano is a shield and the top half is a stratocone The composition of the current eruptive products of Erebus are anorthoclase porphyritic tephritic phonolite and phonolite which are the bulk of exposed lava flow on the volcano The oldest eruptive products consist of relatively undifferentiated and nonviscous basanite lavas that form the low broad platform shield of Erebus Slightly younger basanite and phonotephrite lavas crop out on Fang Ridge an eroded remnant of an early Erebus volcano and at other isolated locations on the flanks of Erebus Erebus is the world s only presently erupting phonolite volcano 7 Lava flows of more viscous phonotephrite and trachyte erupted after the basanite The upper slopes of Mount Erebus are dominated by steeply dipping about 30 tephritic phonolite lava flows with large scale flow levees A conspicuous break in slope around 3 200 m ASL calls attention to a summit plateau representing a caldera The summit caldera was created by an explosive VEI 6 eruption that occurred 18 000 7 000 years ago 8 It is filled with small volume tephritic phonolite and phonolite lava flows In the center of the summit caldera is a small steep sided cone composed primarily of decomposed lava bombs and a large deposit of anorthoclase crystals known as Erebus crystals The active lava lake in this summit cone undergoes continuous degassing Following studies conducted in the early 1990s it was found that Mount Erebus releases small amounts of gold crystals in the gases produced from the volcano these crystals range in size from 20 to 60 micrometres It is estimated that around 80 grams of gold are released by the volcano in this manner each day 9 Researchers spent more than three months during the 2007 08 field season installing an atypically dense array of seismometers around Mount Erebus to listen to waves of energy generated by small controlled blasts from explosives they buried along its flanks and perimeter and to record scattered seismic signals generated by lava lake eruptions and local ice quakes By studying the refracted and scattered seismic waves the scientists produced an image of the uppermost top few km of the volcano to understand the geometry of its plumbing and how the magma rises to the lava lake 10 11 These results demonstrated a complex upper volcano conduit system with appreciable upper volcano magma storage to the northwest of the lava lake at depths hundreds of meters below the surface Ice fumaroles editMt Erebus is notable for its numerous ice fumaroles ice towers that form around gases that escape from vents in the surface 12 The ice caves associated with the fumaroles are dark in polar alpine environments starved in organics and with oxygenated hydrothermal circulation in highly reducing host rock The life is sparse mainly bacteria and fungi This makes it of special interest for studying oligotrophs organisms that can survive on minimal amounts of resources The caves on Erebus are of special interest for astrobiology 13 as most surface caves are influenced by human activities or by organics from the surface brought in by animals e g bats and birds or ground water 14 The caves at Erebus are at high altitude yet accessible for study Some of the caves can reach temperatures of 25 degrees Celsius 77 degrees Fahrenheit and with light near the cave mouths in some caves covered by thin overlying ice the light reach even deeper is sufficient to sustain an ecosystem of flora and fauna consisting of moss algae arthropods and nematodes 15 They are dynamic systems that collapse and rebuild but persist over decades The air inside the caves has 80 to 100 humidity and up to 3 carbon dioxide CO2 and some carbon monoxide CO and hydrogen H2 but almost no methane CH4 or hydrogen sulfide H2S Many of them are completely dark so cannot support photosynthesis Organics can only come from the atmosphere or from ice algae that grow on the surface in summer which may eventually find their way into the caves through burial and melting As a result most micro organisms there are chemolithoautotrophic i e microbes that get all of their energy from chemical reactions with the rocks and that do not depend on any other lifeforms to survive The organisms survive using CO2 fixation and some may use CO oxidization for the metabolism The main types of microbe found there are Chloroflexota and Acidobacteriota 16 17 In 2019 the Marsden Fund granted nearly NZ 1 million to the University of Waikato and the University of Canterbury to study the micro organisms in the geothermal fumaroles 18 Named features editMount Erebus is large enough to have several named features on its slopes including a number of craters and rock formations Named craters located on Mount Erebus include Side Crater a nearly circular crater named for its location on the side of the main summit cone and Western Crater named for the slope on which it sits 19 20 There are many rock formations on Mount Erebus On the northwest upper slope of the active cone near a former exploration camp site lava flow has formed a prominent outcropping called Nausea Knob named for the nausea caused by elevation sickness 21 Also on the northwest slope sits Tarr Nunatak named by the New Zealand Geographic Board NZGB in 2000 after Sgt L W Tarr an aircraft mechanic with the New Zealand contingent of the Commonwealth Trans Antarctic Expedition 22 On the southwest rim of the summit caldera sits Seismic Bluff named for a seismic station nearby 23 The Cashman Crags are two rock summits at about 1 500 metres 4 900 ft high on the west slope of Mount Erebus 0 6 nautical miles 1 1 km southwest of Hoopers Shoulder The crags were named by the Advisory Committee on Antarctic Names after Katharine Cashman 24 United States Antarctic Research Program team member 25 History editDiscovery and naming edit Mount Erebus was discovered on 27 January 1841 and observed to be in eruption 26 by polar explorer Sir James Clark Ross on his Antarctic expedition who named it and its companion Mount Terror after his ships HMS Erebus and HMS Terror which were later used by Sir John Franklin on his disastrous Arctic expedition Present with Ross on HMS Erebus was the young Joseph Hooker future president of the Royal Society and close friend of Charles Darwin Erebus is a dark region in Hades in Greek mythology personified as the Ancient Greek primordial deity of darkness the son of Chaos 27 Historic sites edit nbsp Photograph of Mount Erebus and Adelie penguins taken by the Terra Nova expedition in 1913The mountain was surveyed in December 1912 by a science party from Robert Falcon Scott s Terra Nova expedition who also collected geological samples Two of the camp sites they used have been recognised for their historic significance Upper Summit Camp site HSM 89 consists of part of a circle of rocks which were probably used to weight the tent valances Lower Camp E site HSM 90 consists of a slightly elevated area of gravel as well as some aligned rocks which may have been used to weight the tent valances They have been designated historic sites or monuments following a proposal by the United Kingdom New Zealand and the United States to the Antarctic Treaty Consultative Meeting 28 Climbing edit Main article Nimrod Expedition Mount Erebus summit crater rim was first achieved by members of Sir Ernest Shackleton s party Professor Edgeworth David Sir Douglas Mawson Dr Alister Mackay Jameson Adams Dr Eric Marshall and Phillip Brocklehurst who did not reach the summit in 1908 Its first known solo ascent and the first winter ascent was accomplished by British mountaineer Roger Mear on 7 June 1985 a member of the In the Footsteps of Scott expedition 29 On 19 20 January 1991 Charles J Blackmer an iron worker for many years at McMurdo Station and the South Pole accomplished a solo ascent in about 17 hours completely unsupported by snow mobile and on foot 30 31 Robotic exploration edit In 1992 the inside of the volcano was explored by Dante I an eight legged tethered robotic explorer 32 Dante was designed to acquire gas samples from the magma lake inside the inner crater of Mount Erebus to understand the chemistry better through the use of the on board gas chromatograph as well as measuring the temperature inside the volcano and the radioactivity of the materials present in such volcanoes Dante successfully scaled a significant portion of the crater before technical difficulties emerged with the fibre optic cable used for communications between the walker and base station Since Dante had not yet reached the bottom of the crater no data of volcanic significance was recorded The expedition proved to be highly successful in terms of robotic and computer science and was possibly the first expedition by a robotic platform to Antarctica Air New Zealand Flight 901 edit Main article Mount Erebus disaster Air New Zealand Flight 901 was a scheduled sightseeing service from Auckland Airport in New Zealand to Antarctica and return with a scheduled stop at Christchurch Airport to refuel before returning to Auckland 33 The Air New Zealand flyover service for the purposes of Antarctic sightseeing was operated with McDonnell Douglas DC 10 30 aircraft and began in February 1977 The flight crashed into Mount Erebus on November 28 1979 killing all 257 people on board Passenger photographs taken seconds before the collision ruled out the flying in a cloud theory showing perfectly clear visibility well beneath the cloud base with landmarks 13 miles 21 km to the left and 10 miles 16 km to the right of the aircraft visible 34 The mountain directly ahead was lit by sunlight shining from directly behind the aircraft through the cloud deck above resulting in a lack of shadows that made Mount Erebus effectively invisible against the overcast sky beyond in a classic whiteout more accurately flat light phenomenon 35 Further investigation of the crash showed an Air New Zealand navigational error and a cover up that resulted in about 100 million in lawsuits Air New Zealand discontinued its flyovers of Antarctica Its final flight was on February 17 1980 During the Antarctic summer snow melt on the flanks of Mount Erebus continually reveals debris from the crash that is visible from the air 33 Image gallery edit nbsp Topographic map of Ross Island 1 250 000 scale Mount Erebus is in the lower left Mount Bird is in the upper left Mount Terra Nova is in the middle Mount Terror is in the right nbsp Aerial view of Mount Erebus craters nbsp Satellite picture of Mount Erebus showing glow from its persistent lava lake nbsp Mount Erebus in December 1955See also editCharles Neider Coleman Peak Erebus Glacier Erebus Ice Tongue Ice Tower Ridge List of volcanoes in Antarctica Lower Erebus Hut home of MEVO Volcanic Seven Summits Volcanic Seven Second Summits Helo Cliffs a prominent feature on the calderaReferences edit a b c Mount Erebus Global Volcanism Program Smithsonian Institution Retrieved 29 December 2008 Mount Erebus Geographic Names Information System United States Geological Survey United States Department of the Interior Retrieved 30 July 2011 Antarctic explorers Australian Antarctic Division Archived from the original on 22 May 2010 Retrieved 29 December 2008 Antarctica Ultra Prominences peaklist org Aaron Maizlish Kyle P R ed 1994 Volcanological and Environmental Studies of Mount Erebus Antarctica Antarctic Research Series Washington DC American Geophysical Union ISBN 0 87590 875 6 OCLC 1132108108 Aster R Mah S Kyle P McIntosh W Dunbar N Johnson J 2003 Very long period oscillations of Mount Erebus volcano J Geophys Res 108 B11 2522 Bibcode 2003JGRB 108 2522A doi 10 1029 2002JB002101 Burgisser Alain Oppenheimer Clive Alletti Marina Kyle Philip R Scaillet Bruno Carroll Michael R November 2012 Backward Tracking of Gas Chemistry Measurements at Erebus Volcano PDF Geochemistry Geophysics Geosystems 13 11 Bibcode 2012GGG 1311010B doi 10 1029 2012GC004243 S2CID 14494732 VOGRIPA www bgs ac uk Hecht Jeff 7 September 1991 Science Antarctic gold dust New Scientist Retrieved 24 August 2022 Plumbing Erebus Scientists use seismic technique to map interior of Antarctic volcano Zandomeneghi D Aster R Kyle P Barclay A Chaput J Knox H 2013 Internal structure of Erebus volcano Antarctica imaged by high resolution active source seismic tomography and coda interferometry Journal of Geophysical Research 118 3 1067 1078 Bibcode 2013JGRB 118 1067Z doi 10 1002 jgrb 50073 S2CID 129121276 For photographs of ice fumaroles see Ice Towers Archived 2015 01 01 at the Wayback Machine Mount Everest Volcano Observatory Descent into a Frozen Underworld Astrobiology Magazine 17 February 2017 Archived from the original on 6 May 2021 Retrieved 5 July 2019 a href Template Cite web html title Template Cite web cite web a CS1 maint unfit URL link AnOther 18 June 2015 Mount Erebus A Tale of Ice and Fire AnOther Retrieved 5 July 2019 Secret Life May Thrive Under Warm Antarctic Caves Geology In 9 September 2017 Tebo Bradley M Davis Richard E Anitori Roberto P Connell Laurie B Schiffman Peter Staudigel Hubert 2015 Microbial communities in dark oligotrophic volcanic ice cave ecosystems of Mt Erebus Antarctica Frontiers in Microbiology 6 179 doi 10 3389 fmicb 2015 00179 ISSN 1664 302X PMC 4356161 PMID 25814983 Wall Mike 9 December 2011 Antarctic Cave Microbes Shed Light on Life s Diversity Livescience Harris Rosie 2019 Micro organisms in the volcanic vents of Erebus a key to life on other planets Antarctic 38 3 amp 4 14 15 ISSN 0003 5327 Side Crater Geographic Names Information System United States Geological Survey United States Department of the Interior Retrieved 27 July 2018 Western Crater Geographic Names Information System United States Geological Survey United States Department of the Interior Retrieved 11 January 2019 Nausea Knob Geographic Names Information System United States Geological Survey Retrieved 11 January 2019 Tarr Nunatak Geographic Names Information System United States Geological Survey United States Department of the Interior Retrieved 11 January 2019 Seismic Bluff Geographic Names Information System United States Geological Survey Retrieved 11 January 2019 The Royal Society Katharine Cashman Retrieved 2021 05 10 Cashman Crags Geographic Names Information System United States Geological Survey Retrieved 28 May 2020 Ross J C 1847 A Voyage of Discovery and Research in the Southern and Antarctic Regions During the Years 1839 43 Vol 1 John Murray p 216 218 Hesiod Theogony 116 124 List of Historic Sites and Monuments approved by the ATCM 2013 PDF Antarctic Treaty Secretariat 2013 Retrieved 9 January 2014 Mear Roger Swan Robert Fulcher Lindsay 1987 A Walk to the Pole To the Heart of Antarctica in the Footsteps of Scott Crown pp 95 104 ISBN 978 0 517 56611 4 OCLC 16092953 Wheeler Sara 1998 Terra Incognita Random House ISBN 9780679440789 Johnson Nicholas 2005 Big Dead Place Feral House ISBN 9780922915996 Wettergreen David Thorpe Chuck Whittaker Red December 1993 Exploring Mount Erebus by Walking Robot Robotics and Autonomous Systems 11 3 4 171 185 CiteSeerX 10 1 1 46 6546 doi 10 1016 0921 8890 93 90022 5 S2CID 1190583 a b Holmes Paul 2011 Daughters of Erebus Hodder Moa p 31 ISBN 978 1 86971 250 1 OCLC 740446014 Royal Commission Report para 28 Royal Commission Report para 40 a GeneralLeMasurier W E Thomson J W eds 1990 Volcanoes of the Antarctic Plate and Southern Oceans American Geophysical Union ISBN 0 87590 172 7 Sims Kenneth W W Aster Richard C Gaetani Glenn Blichert Toft Janne Phillips Erin H Wallace Paul J Mattioli Glen S Rasmussen Dan Boyd Eric S 2021 Mount Erebus PDF Geological Society of London Memoirs doi 10 1144 m55 2019 8 eISSN 2041 4722 ISSN 0435 4052 S2CID 233522516 The Mount Erebus Volcano ObservatoryExternal links edit nbsp Wikimedia Commons has media related to Mount Erebus A picture from space of the lava lake at the summit of Mount Erebus Erebus glacier tongue A panoramic view from the summit of Mount Erebus Video of Mount Erebus erupting in 2005 List of published research about Mount Erebus maintained by Mount Erebus Volcano Observatory nbsp Mount Erebus travel guide from Wikivoyage Retrieved from https en wikipedia org w index php title Mount Erebus amp oldid 1186513643, 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.