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首页> 外文期刊>Geophysical Research Letters >Faulting structure above the Main Himalayan Thrust as shown by relocated aftershocks of the 2015 M(w)7.8 Gorkha, Nepal, earthquake
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Faulting structure above the Main Himalayan Thrust as shown by relocated aftershocks of the 2015 M(w)7.8 Gorkha, Nepal, earthquake

机译:尼泊尔2015年M(w)7.8地震后的余震重定位显示喜马拉雅山主冲断层上方的断层结构

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The 25 April 2015, M(w)7.8 Gorkha, Nepal, earthquake ruptured a shallow section of the Indian-Eurasian plate boundary by reverse faulting with NNE-SSW compression, consistent with the direction of current Indian-Eurasian continental collision. The Gorkha main shock and aftershocks were recorded by permanent global and regional arrays and by a temporary local broadband array near the China-Nepal border deployed prior to the Gorkha main shock. We relocate 272 earthquakes with M-w > 3.5 by applying a multiscale double-difference earthquake relocation technique to arrival times of direct and depth phases recorded globally and locally. We determine a well-constrained depth of 18.5 km for the main shock hypocenter which places it on the Main Himalayan Thrust (MHT). Many of the aftershocks at shallower depths illuminate faulting structure in the hanging wall with dip angles that are steeper than the MHT. This system of thrust faults of the Lesser Himalaya may accommodate most of the elastic strain of the Himalayan orogeny.
机译:2015年4月25日,尼泊尔戈尔卡M(w)7.8级地震通过NNE-SSW压缩的反向断裂使印度-欧亚板块边界的浅层破裂,这与当前印度-欧亚大陆碰撞的方向一致。戈尔卡主震和余震由永久性的全球和区域性阵列以及在戈尔卡主震之前部署的中尼边境附近的临时本地宽带阵列记录。通过对全球和本地记录的直接和深度阶段的到达时间应用多尺度双差地震重定位技术,我们将M-w> 3.5的272个地震重定位。我们确定了主震震源的18.5 km约束深度,并将其放置在喜马拉雅主推力(MHT)上。许多深度较浅的余震以比MHT陡的倾角照亮了悬壁的断层结构。小喜马拉雅山的这种逆冲断层系统可以适应喜马拉雅造山带的大部分弹性应变。

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