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首页> 外文期刊>Journal of geodynamics >The stress evolution before the 2013 M7.0 Lushan earthquake in the Longmen Shan area since 1900
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The stress evolution before the 2013 M7.0 Lushan earthquake in the Longmen Shan area since 1900

机译:自1900年以来龙门山区2013年M7.0庐山地震前的压力演变

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Strong earthquakes can disturb the regional stress field. The variation in the static Coulomb stress changes induced by earthquakes can explain the spatial distribution of certain aftershocks, and cascade earthquake sequences. However, the coseismic Coulomb stress change is not the only stress perturbation, interseismic and postseismic viscoelastic relaxation can also affect the evolution of the stress field. This study focuses on how stress perturbation from four strong earthquakes (the 1933 M7.5 Diexi, 1955 M7.5 Kangding, 1976 M7.2 Songpan and 2008 M8.0 Wenchuan) occurred around the Longmen Shan area in western China affect the occurrence of the 2013 Lushan M7.0 earthquake. In addition, we examine the stress evolution along the Longmen Shan fault zone and its adjacent faults to assess the regional seismic hazard. We construct a 3D viscoelastic finite element model that includes the fault structure, inhomogeneous medium, tectonic stress, gravity to simulate the evolutionary stress field when using observed Global Positioning System (GPS) vectors as the boundary conditions. The simulated results show that the coseismic Coulomb stress change induced by the Kangding, Songpan, and Wenchuan earthquakes is positive at the hypocenter of Lushan earthquake. In particular, the coseismic Coulomb stress change imparted by the Wenchuan earthquake exceeds the earthquake-triggering threshold of 0.01MPa, Additionally, the tectonic stress at the hypocenter of the Lushan earthquake increases with time, indicating the stress cumulates gradually at this location. We also compare the distribution of the earthquakes (from 1933 to 2013) with the effective and Coulomb evolutionary stress fields. Almost 70% of the earthquakes in the research region are located in the effective and Coulomb stress-enhanced areas. Our study helps to better understand the origin of Lushan earthquake and provide a theroetical basis for assesing regional seismic hazard.
机译:强烈地震可能会扰乱区域压力领域。地震引起的静态库仑应力变化的变化可以解释某些余震和级联地震序列的空间分布。然而,CoSebic Coulomb胁迫变化不是唯一的压力扰动,故事和后粘弹性弛豫也会影响应力场的演变。本研究重点介绍四大地震(1933年M7.5 Diexi,1955 M7.5康普坦,1976 M7.2松潘和2008年M8.0汶川)的强调扰动程度如何发生在中国西部的龙门山域影响发生的情况下2013年庐山M7.0地震。此外,我们沿着龙门山断裂带及其相邻断层来研究压力演变,以评估区域地震危害。我们构建一个3D粘弹性有限元模型,包括故障结构,不均匀介质,构造应力,重力,以模拟使用观察到的全球定位系统(GPS)向量作为边界条件时的进化应力场。模拟结果表明,康明,松潘和汶川地震引起的电影院库仑应力变化在庐山地震的低蜂窝中是阳性的。特别地,由汶川地震赋予的电动发电机豆间应力变化超过了0.01MPa的地震触发阈值,另外,庐山地震的斜视下的构造应力随时间增加,表明应力在该位置逐渐累积。我们还比较地震的分布(从1933年到2013年),具有有效和库仑进化应力领域。研究区域的近70%的地震位于有效和库仑应力增强区域。我们的研究有助于更好地了解庐山地震的起源,并为禁止区域地震危害提供了一种依据。

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