首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Dynamic rupture simulations with heterogeneous initial stresses inversed from a given slip distribution: A case study of the 2017 Mw 6.5 Jiuzhaigou earthquake
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Dynamic rupture simulations with heterogeneous initial stresses inversed from a given slip distribution: A case study of the 2017 Mw 6.5 Jiuzhaigou earthquake

机译:动态破裂模拟与给定滑动分布中反转的异质初始应力:2017 MW 6.5九寨沟地震的案例研究

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Heterogeneous initial stresses are extremely important in understanding the physics of earthquake rupture processes. We propose a method to estimate heterogeneous initial stresses by comparing the slip from dynamic rupture simulations and the input joint inversion result and apply it to the 2017 Mw 6.5 Jiuzhaigou earthquake, which occurred in the intersection area of the Minjiang, Tazang and Huya faults, in Sichuan Province, China, with the slip distributed on two distinct left-lateral strike-slip faults as shown in previous geodetic and seismic joint inversion. We use the seismic efficiency empirical relation to infer the average stress, and the average stress drop is estimated using the static stress drop. With the angle of the maximum principal stress and the nucleation fault determined from the relocated aftershocks, different principal stresses are calculated with different combinations of average stress and average stress drop. The initial normal and residual stresses can be determined using the projection of the principal stresses. The initial shear stresses are generated by adding the residual stress and the heterogeneous stress drop, which is generated by a set of Gaussian random numbers with a given mean and the variance, and mapped one-by-one with the given slip on the fault so that the area with a large slip has a large stress drop. By comparing the slip from dynamic rupture simulations and the input joint inversion result, we show that the case with a 36 MPa average stress and 2.1 MPa average stress drop provides the best-fitting slip snapshots. The dynamic Coulomb stress change shows that the 2017 Mw 6.5 Jiuzhaigou earthquake could bring the southeast of the Tazang fault and the middle of the Minjiang fault closer to failure. This work provides a new insight to understand the initial stresses of nature earthquakes.
机译:在理解地震破裂过程物理学方面,异构初始应力非常重要。我们提出了一种方法来估计异构初始应力,通过比较动态破裂模拟和输入联合反演结果,并将其应用于2017 MW 6.5九寨沟地震,该地区发生在岷江,塔坦和桓义故障的交叉面积中,中国四川省,双滑动分布在两个不同的左侧防滑断层上,如以前的大地和地震关节反转所示。我们使用地震效率的经验关系推断平均应力,并且使用静态应力下降估计平均应力下降。利用最大主应力和从重新定位的余震确定的成核故障的角度,用不同的平均应力和平均应力下降的不同组合计算不同的主应力。可以使用主应力的投影来确定初始正常和残余应力。通过添加残余应力和异构应力下降来产生初始剪切应力,该残余应力下降由一组高斯随机数产生,其具有给定均值和方差,并且逐个映射到故障上的给定滑动具有大滑块的区域具有大的应力下降。通过比较来自动态破裂模拟的滑动和输入联合反演结果,我们表明,36 MPa平均应力和2.1MPa平均应力下降的情况提供了最佳的滑动快照。动态库仑压力变化表明,2017 MW 6.5九寨沟地震可能会带来塔邦故障的东南部,中间江断层越来越近。这项工作提供了了解自然地震的初始压力的新洞察力。

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