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Causal mechanism of injection-induced earthquakes through the Mw 5.5 Pohang earthquake case study

机译:注射诱导地震通过MW 5.5的因果机制5.5浦项地震案例研究

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Causal mechanisms for fluid injection-induced earthquakes remain a challenge to identify. Past studies largely established spatiotemporal correlations. Here, we propose a multi-process causal mechanism for injection-induced earthquakes through a case study of the 2017 M w 5.5 induced earthquake near Pohang Enhanced Geothermal System, Korea, where detailed hydraulic stimulation and on-site seismicity monitoring data provide an unprecedented opportunity. Pore pressure modeling reveals that pore pressure changes initiate seismicity on critically stressed faults and Coulomb static stress transfer modeling reveals that earthquake interactions promote continued seismicity, leading to larger events. On the basis of these results, we propose the following causal mechanism for induced seismicity: pore pressure increase and earthquake interactions lead to fault weakening and ultimately triggering larger earthquakes later in the process. We suggest that it is prudent that pore pressure change, initial seismicity locations, and Coulomb static stress transfer from seismicity earlier in the sequence are assessed in real-time.
机译:流体注射诱导的地震的因果机制仍然是识别的挑战。过去研究大部分建立了时尚的相关性。在此,我们通过韩国浦项增强地热系统附近的2017 M W 5.5诱导地震的案例研究提出了一种多过程的因果机制。韩国详细的液压刺激和现场地震性监测数据提供了前所未有的机会。孔隙压力建模揭示了孔隙压力变化引发了危险的断层的地震性,库仑静态应力转移建模揭示了地震相互作用促进了持续的地震性,导致更大的事件。在这些结果的基础上,我们提出了诱导地震性的以下因果机制:孔隙压力增加和地震相互作用导致故障削弱和最终在此过程后面引发大地震。我们建议实时地评估孔隙压力变化,初始地震性位置和序列中的地震性的震动静应力转移是谨慎的。

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