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Characteristics of subevents and three-stage rupture processes of the 2015 Mw 7.8 Gorkha Nepal earthquake from multiple-array back projection

机译:从多阵列反投影看2015年尼泊尔7.8级戈尔卡地震的子事件特征和三阶段破裂过程

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On 25 April 2015 an Mw 7.8 earthquake occurred in Nepal and caused" about 9000 casualties. This earthquake ruptured part of the Main Himalaya Thrust fault, which is due to the convergence of the subducting Indian plate to the overriding Eurasian plate, and showed thrust mechanisrri with a very small fault dip angle (about 7-10 degrees). We apply teleseismic multiple-array back projection analysis to study the rupture process of this earthquake and find 6 clear high frequency radiation sources (subevents). Our results illustrate a simple unilateral eastward rupture of similar to 160 km with relative stable rupture speed of similar to 2.8 kmis and a duration of 56 s. The entire rupture processes can be divided into 3 stages. The high frequency radiation appears to be mainly located at the edge of the large slip area, but the subevents have different characteristics in the western and eastern rupture areas. For this 2015 Nepal earthquake, the scales of asperities appear to be mainly controlled by depth, which dominates the overall patterns of slip and high frequency radiation. We finally propose a multiple-scale asperity model with stress and structural heterogeneities along the rupture direction to explain the distribution of high frequency subevents, co-seismic slip, and aftershocks. (C) 2016 Elsevier Ltd. All rights reserved.
机译:2015年4月25日,尼泊尔发生7.8兆瓦地震,造成“约9000人伤亡。该地震使喜马拉雅山主冲断层部分破裂,这是由于俯冲印度板块向上覆的欧亚板块汇聚造成的,并显示了推力作用。断层倾角很小(约7-10度),我们应用远震多阵列反投影分析研究了地震的破裂过程,发现了6个清晰的高频辐射源(子事件),我们的结果说明了一个简单的单边向东破裂约160 km,相对稳定破裂速度约2.8 kmis,持续时间56 s,整个破裂过程可分为3个阶段,高频辐射主要位于大块的边缘。滑移区,但西部和东部破裂区的子事件具有不同的特征。对于这次2015年尼泊尔地震,粗糙程度似乎主要是相反的。深度的影响,主要是滑移和高频辐射的总体模式。我们最终提出了一个多尺度的粗糙模型,其破裂方向上具有应力和结构异质性,以解释高频子事件,同震滑动和余震的分布。 (C)2016 Elsevier Ltd.保留所有权利。

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