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A Study of Ground Motion Excitation Based on the Earthquake of September 8, 2017: Evidence that Normal Faults Influence the Stress Parameter

机译:基于2017年9月8日地震的地震激励研究:正常故障影响压力参数的证据

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We performed a study of ground motion modeling based on multiple linear regression and random vibration theory using the earthquake sequence of September 8, 2017 (Mw=8.2). Our results show that there is high attenuation in the region of Oaxaca-Chiapas and central Mexico; however, the peak amplitude excitations of normal fault earthquakes are higher than those of thrust fault earthquakes. The earthquake sequence involved a large number of events, but not all the seismic events were aftershocks because many earthquakes had different rupture styles. The thrust events follow a simple scaling relation with a constant stress parameter, but the normal fault events are difficult to represent with a constant self-similar model. Our best result consists of a Q0=240 +/- 032 with a frequency-dependent factor of 0.63 +/- 0.05. The excitation term is well determined with a stress parameter of 80 bars for the thrust faults, but for the normal faults, the stress parameter is at least 180 bars with a non-self-similar model. Our results show that it is necessary to include new ground motion prediction equations in seismic hazard analysis for meganormal faults, which have not previously been considered in subduction zones.
机译:我们使用2017年9月8日(MW = 8.2)的地震序列,基于多元线性回归和随机振动理论进行了基于多元线性回归和随机振动理论的地面运动建模研究。我们的研究结果表明,奥克萨卡 - 恰帕斯和墨西哥中部地区有高衰减;然而,正常故障地震的峰值激发高于推力故障地震的峰值激励。地震序列涉及大量事件,但并非所有地震事件都是余震,因为许多地震发生了不同的破裂风格。推力事件遵循与恒定应力参数的简单缩放关系,但是难以使用恒定的自相似模型表示正常故障事件。我们的最佳结果由Q0 = 240 +/- 032组成,频率相关因子0.63 +/- 0.05。激发术语通过用于推力故障的80巴的应力参数很好地确定,但对于正常故障,应力参数是至少180巴,具有非自相似模型。我们的结果表明,有必要在俯冲区内未被考虑的Meganormal缺陷进行地震危害分析中的新地面运动预测方程。

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