GLACIAL AND VOLCANIC GEOMORPHOLOGY OF THE CHIMBORAZO-CARIHUAIRAZO MASSIF, ECUADORIAN ANDES

被引:39
作者
CLAPPERTON, CM
机构
[1] Department of Geography, University of Aberdeen
来源
TRANSACTIONS OF THE ROYAL SOCIETY OF EDINBURGH-EARTH SCIENCES | 1990年 / 81卷
关键词
andesite; cone collapse; corries; dacite; debris avalanche; glacial valleys; lahar; late Quaternary sequence; moraines; rhyodacite; volcanic evolution model;
D O I
10.1017/S0263593300005174
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
The Chimborazo (6,310 m)–Carihuairazo (5,102 m) massif is one of the largest ice-capped central volcanic complexes in the northern Andes. Combined evidence from volcanic and glacial landforms and sediments suggests cyclical evolution during the Pleistocene. Effusive eruptions of mixed high-silica andesite (SiO2%wt c. 60) predominated and built the bulk of the edifice. Explosive activity developed as the parental magma evolved to dacite-rhyolite (SiO2%wt 64–74), culminating with cone collapse and large-scale debris avalanching. Post-collapse activity evolved from the production of high-silica andesite to terminate with monogenetic eruptions of basic andesite (SiO2%wt 54–56) from flank fissures. The last eruption occurred before 11,000 yBP. The interstratification of volcanic and glacial deposits shows that glaciers expanded and contracted several times during the later Pleistocene, while the volcanic edifices were evolving. Glaciers expanded to altitudinal limits of 3,400–3,600 m during the early last glaciation and reached similar limits sometime after 33,000 yBP; an intervening interstadial interval lasted for 10,000 y. By 20,000–18,000 yBP, glaciers receded slightly because of decreased precipitation, but later readvances culiminated at 12,000–10,000 yBP and during the last 5,000 y. Glacier reconstruction and estimation of former equilibrium line altitudes suggest that the mean annual temperatures during the full glacial, late-glacial and Neoglaciation intervals were lower than now by c. 5–6°C, 2–3°C and 1°C, respectively, but these may be underestimates because of the assumption that precipitation was constant. © 1990, Royal Society of Edinburgh. All rights reserved.
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页码:91 / 116
页数:26
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共 74 条
[31]  
Herd D., Glacial and volcanic geology of the Ruiz-Tolima volcanic complex, Cordillera Central, Colómbia, PUBL GEOL ESPEC INGEMOMÍNAS, BOGOTÁ, 8, pp. 1-48, (1974)
[32]  
Hradecka L., Hradecky P., Kruta M., Lysenko V., Mloch B., Paulo A., La exploración geológica del volcan Cotopaxi en el Ecuador, (1974)
[33]  
Jordan T., Die vergletscherung des Cotopaxi, Ecuador, Z GLETSCHERK GLAZIALGEOL, 18, pp. 55-84, (1983)
[34]  
Jordan T., Recent glacier distribution and present climate distribution in the Central Andes of South America, Z GLETSCHERKD GLAZIALGEOL, 21, pp. 213-224, (1985)
[35]  
Kilian R., Der Chimborazo (6310m) und Carihuairazo (5102m) in Ecuador-Aufbau und Entwicklung eines grossen stratovulkan-komplexes, (1987)
[36]  
Kilian R., The development of the Chimborazo (6310m), Carihuairazo (5102m) and other volcanoes in Ecuador, ZENTRALBL GEOL PALAEONTOL, 1, 78, pp. 955-965, (1987)
[37]  
Knight P., The basal ice and debris sequence at the margin of an equatorial ice cap, El Cotopaxi, Ecuador, GEOGR ANN, 70A, 1-2, pp. 9-13, (1988)
[38]  
Loffler E., Pleistocene and present day glaciations, Biogeography and Ecology of New Guinea, (1982)
[39]  
Lonsdale P., Ecuadorian subduction system, AM ASSOC PET GEOL BULL, 62, pp. 2454-2477, (1978)
[40]  
Lonsdale P., Klitgord K., Structure and tectonic history of the eastern Panama Basin, GEOL SOC AM BULL, 89, pp. 981-999, (1978)