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Numerical simulation on the influences of Wenchuan earthquake on the surrounding faults

机译:汶川地震对周围断层影响的数值模拟

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Abstract On 12 May 2008, the devastating Wenchuan earthquake struck the Longmenshan fault zone, which comprised the eastern margin of the Tibetan Plateau, and this fault zone was predominantly a convergent boundary with a right-lateral strike-slip component. After such a large-magnitude earthquake, it was crucial to analyze the influences of the earthquake on the surrounding faults and the potential seismic activity. In this paper, a complex viscoelastic model of western Sichuan and eastern Tibet regions was constructed including the topography. Based on the findings of co-seismic static slip distribution, we calculated the stress change caused by the Wenchuan earthquake with the post-seismic relaxation into consideration. Our preliminary results indicated that: (1) The tectonic stressing rate was relatively high in Kunlun mountain pass-Jiangcuo, Ganzi-Yushu, Xianshuihe and Zemuhe faults; while in the east Kunlun and Longriba was medium; also the value was less in the Minjiang, Longmenshan, Anninghe and Huya faults. As to the Longmenshan fault, the value was 0.28×10_(?3) MPa/a to 0.35×10_(?3) MPa/a, which is coincident with the previous long recurrence interval of Wenchuan earthquake; (2) The Wenchuan earthquake not only caused the Coulomb stress decrease in the source region, but also the stress increase in the two terminals, especially the northeastern segment, which is comparatively consistent with the aftershock distribution. Meanwhile, the high concentration areas of the static slip distribution were corresponding to the Coulomb stress reductions; (3) The Coulomb stress change caused by Wenchuan earthquake showed significant increase on five major faults, which were northwestern segment of Xianshuihe fault, eastern Kunlun fault, Longriba fault, Minjiang fault and Huya fault respectively; also the Coulomb stress on the fault plane of the Yushu earthquake was faintly increased; (4) We defined the recurrence interval as the time needed to accumulate the magnitude of the stress drop, and the recurrence interval of Wenchuan earthquake was estimated about 1 714 a to 2 143 a correspondingly.
机译:摘要2008年5月12日,毁灭性的汶川地震席卷了由青藏高原东缘组成的龙门山断裂带,该断裂带主要是由右走向走滑分量组成的会聚边界。在发生了如此大的地震之后,分析地震对周围断层的影响和潜在的地震活动至关重要。本文构建了包括地形在内的四川西部和西藏东部地区的复杂粘弹性模型。基于同震静滑分布的发现,我们考虑了地震后的松弛,计算了汶川地震引起的应力变化。我们的初步结果表明:(1)昆仑山口江措,甘孜—玉树,咸水河和泽木河断裂带的构造应力率较高; 2。而在东部的昆仑和隆里巴则中等。闽江,龙门山,安宁河和虎牙断裂的价值也较小。对于龙门山断裂,其值为0.28×10 _(?3)MPa / a至0.35×10 _(?3)MPa / a,与汶川地震以前的长复发间隔相吻合。 (2)汶川地震不仅使震源区库仑应力降低,而且使两个航站区特别是东北段的库仑应力增加,与余震分布相对一致。同时,静滑分布的高集中区域对应于库仑应力的减小; (3)汶川地震引起的库仑应力变化在咸水河断层西北段,东部昆仑断层,隆里巴断层,Min江断层和虎牙断层的五个主要断层上显示出明显的增加;玉树地震断裂面上的库仑应力也略有增加。 (4)将复发间隔定义为累积应力下降幅度所需的时间,据估计汶川地震的复发间隔约为1 714 a至2 143 a。

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