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Duplex in the Main Himalayan Thrust illuminated by aftershocks of the 2015 M-w 7.8 Gorkha earthquake

机译:在2015 M-W 7.8 Gorkha地震的余震中照亮的主要喜马拉雅山脉的双工

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In April 2015, the lower locked portion of the Main Himalayan Thrust ruptured beneath Nepal, causing the disastrous M-w 7.8 Gorkha earthquake. Elucidating the enigmatic geometry of this plate boundary fault is important for understanding the nucleation and arrest of large earthquake ruptures as well as the seismic hazard, topography and tectonics of the Himalaya. Here we interpret the geometry of the Main Himalayan Thrust from the spatial distribution and rupture patterns of a dynamic sequence of aftershocks following the Gorkha earthquake, which were recorded by a rapidly deployed dense seismic network. We find that the thrust comprises two north-dipping subhorizontal planes that are connected by a system of bounded imbricate thrust faults; this structure is known as a duplex. We propose that this duplex acts as an impediment to plate convergence and accommodates tectonic stress along its complex system of faults. Such a prominent structure to the Main Himalayan Thrust is consistent with surface geological studies but challenges geophysically derived conventional models with simpler geometries.
机译:2015年4月,主要喜马拉雅大的锁定部分在尼泊尔下面破裂了,导致灾难性的M-W 7.8 Gorkha地震。阐明这种板边界故障的神秘几何形状对于了解大地震破裂以及喜马拉雅大的地震危害,地形和构造的核心和逮捕是重要的。在这里,我们将主要喜马拉雅大的几何形状解释了Gorkha地震后余震的动态序列的空间分布和破裂模式的几何形状,这被迅速展开的致密地震网络记录。我们发现推力包括两个北浸的脱色平面,该平面通过有界覆盖推力故障的系统连接;这种结构被称为双工。我们建议这种双工作用作为板块收敛的障碍,并沿其复杂的故障系统适应构造应力。这种主要的喜马拉雅突出的结构与表面地质研究一致,但具有更简单的几何形状的地球物物学衍生的传统模型挑战。

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