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首页> 外文期刊>Journal of structural geology >A 'slice-and-view' (FIB-SEM) study of clay gouge from the SAFOD creeping section of the San Andreas Fault at similar to 2.7 km depth
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A 'slice-and-view' (FIB-SEM) study of clay gouge from the SAFOD creeping section of the San Andreas Fault at similar to 2.7 km depth

机译:来自圣安德烈亚斯断层SAFOD蠕变段的黏土凿的“切片观察”(FIB-SEM)研究,深度约为2.7 km

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摘要

The San Andreas Fault is one of the most studied earthquake-generating structures on Earth, but the reason that some sections are anomalously weak, and creep without apparent seismicity, remains poorly understood. Here, we present results from nanoscale (FIB-SEM) 3D microstructural observations of weak (friction coefficient of 0.095) SAFOD clay fault gouge containing serpentinite clasts, recovered from the active Central Deforming Zone at similar to 2.7 km vertical depth. Our nanoscale observations confirm that frictional slip and extreme weakness occur via deformation of smectite clay that forms a shear fabric within the fault zone. We infer that creep initiates by fracture-controlled, substrate growth of oriented Mg-smectite on R, P and Y shears, followed by clay smearing and ductile flow of an evolving and expanding clay matrix. At the crystal-scale, pervasive sliding occurs along hydrated smectite interlayers and surfaces occupied by exchangeable Mg- and Ca-ions, with slip typically spaced at 3-5 lattice layers apart. We conclude that the strength and seismic behaviour of major tectonic faults at shallow crustal levels evolves as clay fabric develops with accumulated fault slip. (C) 2014 Elsevier Ltd. All rights reserved.
机译:圣安德烈亚斯断层是地球上研究最多的地震构造之一,但对某些断层异常弱且蠕变而无明显地震活动的原因仍然知之甚少。在这里,我们介绍了从纳米级(FIB-SEM)3D微观结构观察到的结果,该观察结果是从活动的中央变形区以近似于2.7 km的垂直深度回收的,含蛇纹岩碎屑的弱(摩擦系数为0.095)SAFOD粘土断层泥。我们的纳米级观测结果证实,通过在断层带内形成剪切织物的蒙脱石粘土变形,会产生摩擦滑移和极弱。我们推断蠕变是由裂缝控制的,定向的Mg-蒙脱石在R,P和Y剪切机上的基质生长,然后是黏土涂抹和不断发展和扩展的黏土基质的延性流动引起的。在晶体尺度上,水合蒙脱石中间层和被可交换的Mg和Ca离子占据的表面普遍发生滑动,滑移通常间隔3-5个晶格层。我们得出的结论是,随着黏性织物的发展,随着累积的断层滑移,浅层地壳的主要构造断层的强度和地震行为会发生变化。 (C)2014 Elsevier Ltd.保留所有权利。

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