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Dynamics of the 2015 M7.8 Nepal earthquake

机译:2015年尼泊尔M7.8级地震的动态

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摘要

The 2015 M7.8 Nepal earthquake ruptured part of the Main Himalayan Thrust beneath Kathmandu. To study the dynamics of this event, we compute P wave spectra of the main shock and of two large aftershocks to estimate stress drop and radiated energy. We find that surface reflections (depth phases) of these shallow earthquakes produce interference that severely biases spectral measurements unless corrections are applied. Measures of earthquake dynamics for the main shock are within the range of estimates from global and regional earthquakes. We explore the azimuthal and temporal variations of radiated energy and highlight unique aspects of the M7.8 rupture. The beginning of the earthquake likely experienced a dynamic weakening mechanism immediately followed by an abrupt change in fault geometry. Correlation of backprojection results with frequency-dependent variations in the radiated energy rate and with the suggested geometry of the Main Himalayan Thrust yields new constraints on dynamic ruptures through geometrical barriers.
机译:2015年的尼泊尔M7.8地震使加德满都下方的喜马拉雅山主冲断层破裂。为了研究此事件的动力学,我们计算了主震和两个大余震的P波谱,以估计应力降和辐射能。我们发现,除非进行校正,否则这些浅层地震的地表反射(深度阶段)会产生干扰,从而严重干扰频谱测量结果。主震的地震动力学测度在全球和区域地震的估计范围内。我们探索了辐射能量的方位角和时间变化,并强调了M7.8破裂的独特方面。地震的开始很可能经历了动力减弱的机制,紧接着是断层几何形状的突然变化。反投影结果与辐射能量速率的频率相关变化以及建议的喜马拉雅山主推力的几何形状相关,从而对通过几何屏障的动态破裂产生了新的约束。

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