Английская Википедия:Corrida de Cori
Шаблон:Short description Шаблон:Good article
Шаблон:Coord Corrida de Cori is a mountain range in Argentina and Chile. It consists of several aligned volcanoes, including Cerro Escorial, which exceed Шаблон:Convert in elevation. The range, together with several local volcanoes, forms an alignment that may be controlled by a fault system. The volcanoes erupted mainly andesite and basaltic andesite, they were active in the Plio-Pleistocene with the most recent activity occurring at Cerro Escorial and at a cinder cone east of the range. There are two mines in the area, with a weather station nearby.
Geography and geomorphology
Corrida de Cori a range of Plio-Pleistocene volcanoes[1] of small to medium dimensions.[2]Шаблон:Rp It is located in the Puna of South America,[3]Шаблон:Rp Salta province of Argentina[4] and the Antofagasta Region of Chile. The boundary between the two countries was defined to run over this mountain range[5] and a number of border incidents relative to Argentina exploiting sulfur deposits in Chilean territory occurred in the mid-20th century.[6]
Cerro Escorial is part of this range,[7]Шаблон:Rp Cerro Negro (Шаблон:Convert) and Cerro Corrida de Cori (Шаблон:Circa Шаблон:Convert) are other summits, Lastarria may also be linked.[8][9] The Cerro Negro-Corrida de Cori chain and Cerro Escorial sectors run in north-northwest to south-southeast direction along the Argentina–Chile border. South-southeast of Cerro Escorial the chain continues southeastward into Argentina.[10] Some glacial activity in the area has degraded volcanic landforms, but very little erosion is evident[8] and on the Argentine side well-preserved lava flows are evidence.[2]Шаблон:Rp
It forms a volcanic chain with Llullaillaco that extends towards Antofalla and Galán. This lineament is known as "Archibarca lineament".[11] Cerro Corrida de Cori and Cerro Negro are associated with the intersections between this lineament and east-northeast trending lineaments.[12] Fault zones on the area have controlled the rise of magma to the surface, probably facilitating the eruption of basaltic lavas.[1] Among these faults is the Imilac–Salina del Fraile lineament.[13]
Geological history
The Puna began to develop 15–20 mya and continued to contract until 1–2 mya.[3]Шаблон:Rp Activity commenced in the Miocene with basaltic andesites and dacitic ignimbrites and ended in the late Quaternary with basaltic andesites in form of cinder cones.[9] K-Ar dates of 12 mya and 8.0 ± 0.3 have been found at Cerro Negro.[14]
A major ignimbrite is found in the Escorial area and extends in a butterfly shape over Шаблон:Convert with a thickness of Шаблон:Circa Шаблон:Convert. Probably erupted from Cerro Escorial, it extends Шаблон:Convert away from Escorial. It has a total volume of Шаблон:Circa Шаблон:Convert and consists of crystal rich dacite with large amounts of xenoliths. Where the ignimbrite was dammed by older lava flows, it formed internal wave structures. The surface of the ignimbrite is grooved and rippled in appearance and is heavily influenced by aeolian (wind-driven landscape changes) activity. Dating is uncertain, with older dates including 1.3 ± 0.6 mya but a more precise recent date is 0.457 ± 0.013 mya.[14][15] This ignimbrite was likely formed by a column collapse[16] and is known as the Caletones Cori,[17] Escorial or Corrida de Cori Ignimbrite.[3]Шаблон:Rp Another ignimbrite is the La Casualidad Ignimbrite, it was erupted about 1.2 million years ago at Cerro Escorial.[2]Шаблон:Rp
Lava flows found on Escorial and Cerro Corrida de Cori are the latest volcanic events and post-date the hydrothermal alteration; one date from Escorial is 0.342 ± 0.025 mya. Most Escorial lava flows head southwest.[15] These flows are accompanied by andesitic blocks from possibly Vulcanian explosive activity. East of Corrida de Cori range a cinder cone accompanied by a much smaller vent was constructed on top of older eruption products and generated a lava flow that descended towards Salar Rio Grande. This cone may be of Holocene age,[18] considering the appearance of the blockly lava flows.[19] Present day geothermal activity is found at Lastarria and in form of fumarole spires, mud vents and warm springs at Escorial. Some of these originate by the summit lava flow of Cerro Escorial.[8][18]
Rocks and minerals
Corrida de Cori volcanism is calc-alkaline and consists of potassium rich andesite as well as basaltic andesites. The Cerro Escorial ignimbrite may have originated in the crust and is dacitic.[7]Шаблон:Rp Trachydacite is found at Cerro Negro.[20] Phenocrysts include augite, hypersthene and plagioclase with rare olivine.[2]Шаблон:Rp The basement beneath Corrida de Cori is mostly buried, but occasional outcrops indicate Paleozoic granites and sedimentary and volcanic rocks.[8]
Alteration by hydrothermal and fumarolic processes is widespread in this range. It has formed superficial sulfur deposits that have been mined at Cerro Escorial in the Mina Julia as well as deeper alteration which has been brought to the surface by the Cerro Escorial ignimbrite in form of quartz veins.[1] This hydrothermal alteration of susceptible rocks makes Corrida de Cori's peaks look snow-covered from a distance.[18] The Mina Julia sulfur mine was active until ~20 years before 2002,[8] from where a funicular bucket railway transported sulfur towards Mina la Casualidad by the salar.[18] Another mine is found east of Cerro Corrida de Cori.[3]Шаблон:Rp
Climate
Weather measurements have been made in a weather station by a sulfur mine worker's camp,[21]Шаблон:Rp at an elevation of Шаблон:Convert[22] or Шаблон:Convert.[23] The dry air, high insolation and strong winds result in high potential evaporation[24]Шаблон:Rp reaching Шаблон:Convert. Based on precipitation maps, the annual precipitation reaches only Шаблон:Convert[24]Шаблон:Rp but a reported precipitation value is Шаблон:Convert.[23]
Weather reporting began in 1942.[25] Research in 1976–1977 found average temperatures of Шаблон:Convert with a daily variability of Шаблон:Circa Шаблон:Convert.[26]Шаблон:Rp Wind in Corrida de Cori has been reported to have "a cooling power in winter similar to the South Pole in summer."[27] Wind speed reported in 1976–1977 after a row of measurements is Шаблон:Convert and air humidity about 40%.[26]Шаблон:Rp Winds are westerly and strongest in winter.[21]Шаблон:Rp During winter, the lower summits of Corrida de Cori can be snow-covered.[8]
References
Sources
- ↑ 1,0 1,1 1,2 Ошибка цитирования Неверный тег
<ref>
; для сносокRichardsVilleneuve161
не указан текст - ↑ 2,0 2,1 2,2 2,3 Ошибка цитирования Неверный тег
<ref>
; для сносокZappettini2001
не указан текст - ↑ 3,0 3,1 3,2 3,3 Ошибка цитирования Неверный тег
<ref>
; для сносокFiedrichHeinrich2020
не указан текст - ↑ Ошибка цитирования Неверный тег
<ref>
; для сносокPeralta2008
не указан текст - ↑ Ошибка цитирования Неверный тег
<ref>
; для сносокSilva Echavarría1997
не указан текст - ↑ Ошибка цитирования Неверный тег
<ref>
; для сносокFracchia2023
не указан текст - ↑ 7,0 7,1 Ошибка цитирования Неверный тег
<ref>
; для сносокRichardsUllrich2006
не указан текст - ↑ 8,0 8,1 8,2 8,3 8,4 8,5 Ошибка цитирования Неверный тег
<ref>
; для сносокRichardsVilleneuve175
не указан текст - ↑ 9,0 9,1 Ошибка цитирования Неверный тег
<ref>
; для сносокRichardsVilleneuve174
не указан текст - ↑ Ошибка цитирования Неверный тег
<ref>
; для сносокGrosse2017
не указан текст - ↑ Ошибка цитирования Неверный тег
<ref>
; для сносокRichardsJourdan2013
не указан текст - ↑ Ошибка цитирования Неверный тег
<ref>
; для сносокRichardsVilleneuve183
не указан текст - ↑ Ошибка цитирования Неверный тег
<ref>
; для сносокNaranjoVilla636
не указан текст - ↑ 14,0 14,1 Ошибка цитирования Неверный тег
<ref>
; для сносокRichardsVilleneuve177
не указан текст - ↑ 15,0 15,1 Ошибка цитирования Неверный тег
<ref>
; для сносокRichardsVilleneuve180
не указан текст - ↑ Ошибка цитирования Неверный тег
<ref>
; для сносокRichardsVilleneuve190
не указан текст - ↑ Ошибка цитирования Неверный тег
<ref>
; для сносокNaranjoVilla635
не указан текст - ↑ 18,0 18,1 18,2 18,3 Ошибка цитирования Неверный тег
<ref>
; для сносокRichardsVilleneuve181182
не указан текст - ↑ Ошибка цитирования Неверный тег
<ref>
; для сносокGVP
не указан текст - ↑ Ошибка цитирования Неверный тег
<ref>
; для сносокRichardsVilleneuve185
не указан текст - ↑ 21,0 21,1 Ошибка цитирования Неверный тег
<ref>
; для сносокSpringerVienna51
не указан текст - ↑ Ошибка цитирования Неверный тег
<ref>
; для сносокDeForest1999
не указан текст - ↑ 23,0 23,1 Ошибка цитирования Неверный тег
<ref>
; для сносокRuthsatz2000
не указан текст - ↑ 24,0 24,1 Ошибка цитирования Неверный тег
<ref>
; для сносокHenning1981
не указан текст - ↑ Ошибка цитирования Неверный тег
<ref>
; для сносокGalmarini1943
не указан текст - ↑ 26,0 26,1 Ошибка цитирования Неверный тег
<ref>
; для сносокSpringerVienna
не указан текст - ↑ Ошибка цитирования Неверный тег
<ref>
; для сносокProhaska1970
не указан текст
- Английская Википедия
- Страницы с неработающими файловыми ссылками
- Volcanoes of Salta Province
- Holocene volcanism
- Salta Province
- Miocene volcanism
- Pliocene volcanism
- Страницы, где используется шаблон "Навигационная таблица/Телепорт"
- Страницы с телепортом
- Википедия
- Статья из Википедии
- Статья из Английской Википедии
- Страницы с ошибками в примечаниях