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Lateral variation of the Main Himalayan Thrust controls the rupture length of the 2015 Gorkha earthquake in Nepal

机译:喜马拉雅山主推力的横向变化控制了尼泊尔2015年戈尔卡地震的破裂长度

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The Himalaya orogenic belt produces frequent large earthquakes that affect population centers along a length of over 2500 km. The 2015 Gorkha, Nepal earthquake (Msubw/sub 7.8) ruptured the Main Himalayan Thrust (MHT) and allows direct measurements of the behavior of the continental collision zone. We study the MHT using seismic waveforms recorded by local stations that completely cover the aftershock zone. The MHT exhibits clear lateral variation along geologic strike, with the Lesser Himalayan ramp having moderate dip on the MHT beneath the mainshock area and a flatter and deeper MHT beneath the eastern end of the aftershock zone. East of the aftershock zone, seismic wave speed increases at MHT depths, perhaps due to subduction of an Indian basement ridge. A similar magnitude wave speed change occurs at the western end of the aftershock zone. These gross morphological structures of the MHT controlled the rupture length of the Gorkha earthquake.
机译:喜玛拉雅造山带频繁发生大地震,影响到超过2500公里的人口中心。 2015年尼泊尔戈尔卡地震(M w 7.8)破坏了喜马拉雅山主推力(MHT),可以直接测量大陆碰撞带的行为。我们使用完全覆盖余震带的地方台站记录的地震波形研究了MHT。 MHT沿地质走向表现出明显的横向变化,小喜马拉雅斜坡在主震区下方的MHT处有适度的倾角,而在余震区东端下方的MHT则较平缓和深。在余震区以东,地震波的速度在MHT深度增加,这可能是由于印度基底脊的俯冲所致。在余震区的西端发生了类似的幅度波速变化。 MHT的这些总体形态结构控制了Gorkha地震的破裂长度。

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