Les Saintes群岛(瓜德罗普岛,法属西印度群岛)的构造演化:与小安的列斯弧体系的关系

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Verati Chrystèle, Y. Mazabraud, J. Lardeaux, M. Corsini, D. Schneider, E. Voitus, F. Zami
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引用次数: 13

摘要

在本文中,我们提供了Les Saintes群岛(小安的列斯瓜德罗普岛)的第一张结构图。有限应变图显示出4类断裂系统:N000-N020、N050-N070、N090-N110和N130-N140走向断裂系统。因此,我们的陆上结果强调了一个断层网络,比之前在Les Saintes群岛周围进行的海上地球物理调查所描绘的断层网络要复杂得多,后者只显示了N120-N150趋势系统。根据现有火山岩的K-Ar定年和野外断层的相对年代学,确定了Les Saintes岛近3 Ma以来的变形历史。突出显示的4个走向断裂系自上新世以来就处于活动状态,与瓜德罗普群岛现今的伸展构造相一致,与活动弧尺度上继承构造的再激活相适应。我们认为Les Saintes群岛的构造演化是地震脊(Tiburon和Barracuda脊)俯冲和斜辐合相互作用的结果。此外,我们在Terre-de-Haut岛发现了一个与现今活跃的Bouillante地热系统非常相似的古地热系统。在上新世,它的持续时间估计为每小时400公里。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tectonic evolution of Les Saintes archipelago (Guadeloupe, French West Indies): relation with the Lesser Antilles arc system
In this paper, we provide the first structural map of Les Saintes archipelago (Guadeloupe, Lesser Antilles). The finite strain pattern displays four families of fault systems characterized by their statistical structural orientations: N000-N020, N050-N070, N090-N110 and N130-N140 trending fault systems. Our onshore results thus underline a fault network much more complex than the one depicted by the previous offshore geophysical investigations around Les Saintes archipelago, which show only N120-N150 trending system. According to the available K-Ar dating of the volcanic rocks and the relative chronology of the faults defined in the field, we determine the deformation history in Les Saintes islands since the last 3 Ma. The four highlighted trending fault systems are already active since the Pliocene and are consistent with the present-day extensional tectonics in the Guadeloupe archipelago compatible with the reactivation of inherited structures at the active arc scale. We interpret the tectonic evolution of Les Saintes islands as the result of interplay between subduction of aseismic ridges (Tiburon and Barracuda ridges) and oblique convergence. Furthermore, we recognized an exhumed geothermal paleo-system in Terre-de-Haut island which is a good analogue of the present-day active Bouillante geothermal system. Its duration is estimated at 400 k.y. during the Pliocene.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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