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Widespread ground motion distribution caused by rupture directivity during the 2015 Gorkha, Nepal earthquake

机译:在2015年尼泊尔戈尔卡地震中,由于破裂方向性引起的地震动分布广泛

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The ground motion and damage caused by the 2015 Gorkha, Nepal earthquake can be characterized by their widespread distributions to the east. Evidence from strong ground motions, regional acceleration duration, and teleseismic waveforms indicate that rupture directivity contributed significantly to these distributions. This phenomenon has been thought to occur only if a strike-slip or dip-slip rupture propagates to a site in the along-strike or updip direction, respectively. However, even though the earthquake was a dip-slip faulting event and its source fault strike was nearly eastward, evidence for rupture directivity is found in the eastward direction. Here, we explore the reasons for this apparent inconsistency by performing a joint source inversion of seismic and geodetic datasets, and conducting ground motion simulations. The results indicate that the earthquake occurred on the underthrusting Indian lithosphere, with a low dip angle, and that the fault rupture propagated in the along-strike direction at a velocity just slightly below the S-wave velocity. This low dip angle and fast rupture velocity produced rupture directivity in the along-strike direction, which caused widespread ground motion distribution and significant damage extending far eastwards, from central Nepal to Mount Everest.
机译:2015年尼泊尔戈尔卡地震造成的地震动和破坏的特点是其在东部的广泛分布。强烈的地面运动,区域加速持续时间和远震波形的证据表明,破裂方向性对这些分布有很大贡献。据认为,仅当走滑或倾滑断裂分别沿沿走动方向或向上倾斜的方向传播时,才会出现这种现象。但是,即使地震是一次滑滑断裂事件,其震源断裂走向也几乎是东移,但还是在东移方向发现了破裂指向性的证据。在这里,我们通过进行地震和大地测量数据集的联合源反演并进行地震动模拟,来探究这种明显不一致的原因。结果表明,地震发生在俯冲角较小的印度下冲岩石圈中,断层破裂以沿着地震波走向的速度略低于S波速度传播。如此低的倾角和快速的破裂速度在沿冲击的方向上产生了破裂方向性,从而导致了广泛的地面运动分布,并造成了从尼泊尔中部到珠穆朗玛峰向东延伸的严重破坏。

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