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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >The recent fault scarps of the Western Alps (France): Tectonic surface ruptures or gravitational sackung scarps? A combined mapping, geomorphic, levelling, and Be-10 dating approach
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The recent fault scarps of the Western Alps (France): Tectonic surface ruptures or gravitational sackung scarps? A combined mapping, geomorphic, levelling, and Be-10 dating approach

机译:西阿尔卑斯山(法国)最近的断层陡峭带:构造表面破裂还是重力凹坑陡峭带?组合的地图,地貌,水准和Be-10测年方法

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In the Western Alps, some recent scarps were previously interpreted as surface ruptures of tectonic reverse and normal faults that agree with microseismicity and GPS measurements. Our analysis shows that in fact there are hundreds of recent scarps, up to 30 m high and 2.1 km long, with only pure normal motions. They share the same characteristics as typical sackung scarps. The scarps are mainly uphill facing, parallel to the ridge crests and the contour lines. They are relatively short (less than 2.1 km) with respect to tectonic fault ruptures, and organized in swarms. They cut screes and relict rock glaciers with a slow (commonly 1 mm/year) average slip rate. In the Aiguilles Grives massif these sackung scarps clearly express the gravitational toppling of sub-vertical bedding planes in hard rocks. In contrast, the Belledonne Outer Crystalline Massif exhibits scarps that stem from the gravitational reactivation of conjugate tectonic faults. The recent faults extend to about 1600 m beneath the Rognier ridge crest, but are always above the valley floor. The main scarp swarm is 9.2 km long and constitutes the largest sackung ever described in the Western Alps. Be-10 dating of a scarp and offset surfaces shows that > 4 m slip may have occurred rapidly (in less than 3800 years) sometimes between the end of the glaciation and 8800 1900 years ago. This dating, together with the location of some faults far from the deep glacial valleys, suggests that sagging might have been triggered by strong earthquakes during a post-glacial period of probably enhanced seismicity. The Belledonne and Synclinal Median faults (just beneath the Rognier sackung) could have been the sources of this seismicity. (c) 2006 Elsevier B.V. All rights reserved.
机译:在西方阿尔卑斯山,最近的一些陡坡以前被解释为构造逆转和正常断层的表面破裂,与微震性和GPS测量结果一致。我们的分析表明,实际上最近有数百条陡坡,最高纯净运动为30m高,长2.1km。它们具有与典型的袋scar一样的特征。陡坡主要面向上坡,与山脊波峰和轮廓线平行。就构造断层破裂而言,它们相对较短(不到2.1 km),并且成群分布。他们以缓慢(通常为1毫米/年)的平均滑移速率切割砂浆和遗留岩石冰川。在Aiguilles Grives断层中,这些袋状陡崖清楚地表达了硬岩石中次垂直顺层平面的重力倾覆。相比之下,贝勒多纳外结晶地块表现出由共轭构造断层的重力重新激活引起的断层。最近的断层延伸到Rognier脊顶下方约1600 m,但始终位于山谷底板以上。主要的赤蜂群长9.2公里,是西阿尔卑斯山有史以来最大的袋鼠。 Be-10对陡峭和偏斜表面的测年表明,可能在冰川期结束至1900年前的8800年之间(不到3800年)迅速发生了> 4 m的滑移。这个年代,再加上一些远离深冰河谷的断层的位置,表明在可能增强地震活动的后冰期,强烈的地震可能引起下垂。 Belledonne和向斜中部断裂(就在Rognier袋下方)可能是这种地震活动的来源。 (c)2006 Elsevier B.V.保留所有权利。

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