Hybrid collapse mechanism at Piton de la Fournaise volcano, Reunion Island, Indian Ocean -: art. no. 2166

被引:61
作者
Merle, O [1 ]
Lénat, JF [1 ]
机构
[1] Univ Clermont Ferrand, CNRS, OPGC, Lab Magmas & Volcans, F-63038 Clermont Ferrand, France
关键词
volcano; Piton de La Fournaise; analogue modelling; collapse; hydrothermal system; caldera;
D O I
10.1029/2002JB002014
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
[1] Recent studies have shown that hydrothermal alteration in the core of volcanoes may weaken the edifice and trigger sector collapse [Lopez and Williams, 1993; Day, 1996; Voight and Elsworth, 1997; van Wyk de Vries et al., 2000; Reid et al., 2001]. Alteration of volcanic products must take place over long periods of times before collapse can occur, so this process is considered to be less frequent than volcanic failure generated by magmatic intrusion and flank spreading. However, acceleration of this slow process may occur along one direction as a result of a weak lateral confinement following outward gravitational sliding of a flank of the volcano. We present here evidence that the Enclos-Fouque 'depression of Piton de la Fournaise volcano results from such a hybrid mechanism. Seaward sliding of the Grand Brule trough on top of an ancient hypovolcanic complex led to a lateral unconfined boundary along which collapse of the altered core of the edifice took place. The result is a caldera-like structure breached on the Grand Brule slide. Scaled experiments to simulate this process of pseudocaldera formation reveal tectonic features remarkably similar to those encountered in the field and demonstrate the mechanical consistency of the model. Similar processes may have played a role in the evolution of other volcanoes.
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页数:11
相关论文
共 51 条
[1]   Seismic monitoring and modeling of an active volcano for prediction [J].
Aki, K ;
Ferrazzini, V .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 2000, 105 (B7) :16617-16640
[2]  
BACHELERY P, 1981, THESIS U CLERMONT 2
[3]  
BACHELERY P, 1995, RAPPORT QUADRIENNAL, P107
[4]  
BACHELERY P, 1990, VOLCANISME REUNION M, P213
[5]  
BRIOLE P, 1998, P 2 WORKSH EUR LAB V, P467
[6]  
Chevallier L, 1981, B VOLCANOL, V44, P723, DOI DOI 10.1007/BF02597094
[7]  
COURTEAUD M, 1996, THESIS U REUNION ST
[8]   Hydrothermal pore fluid pressure and the stability of porous, permeable volcanoes [J].
Day, SJ .
VOLCANO INSTABILITY ON THE EARTH AND OTHER PLANETS, 1996, (110) :77-93
[9]   A past giant lateral collapse and present-day flank instability of Fogo, Cape Verde Islands [J].
Day, SJ ;
da Silva, SINH ;
Fonseca, JFBD .
JOURNAL OF VOLCANOLOGY AND GEOTHERMAL RESEARCH, 1999, 94 (1-4) :191-218
[10]  
de Vries BV, 1998, J VOLCANOL GEOTH RES, V81, P1