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The 2010 MW 6.8 Yushu (Qinghai, China) earthquake: constraints provided by InSAR and body wave seismology

机译:2010年mW 6.8玉树(中国青海)地震:InsaR和体波地震学提供的限制

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摘要

By combining observations from satellite radar, body wave seismology and optical imagery, we have determined the fault segmentation and sequence of ruptures for the 2010 Mw 6.8 Yushu (China) earthquake. We have mapped the fault trace using displacements from SAR image matching, interferometric phase and coherence, and 2.5 m SPOT-5 satellite images. Modeling the event as an elastic dislocation with three segments fitted to the fault trace suggests that the southeast and northwest segments are near vertical, with the central segment dipping 70° to the southwest; slip occurs mainly in the upper 10 km, with a maximum slip of 1.5 m at a depth of 4 km on the southeastern segment. The maximum slip in the top 1 km (i.e., near surface) is up to 1.2 m, and inferred locations of significant surface rupture are consistent with displacements from SAR image matching and field observations. The radar interferograms show rupture over a distance of almost 80 km, much larger than initial seismological and field estimates of the length of the fault. Part of this difference can be attributed to slip on the northwestern segment of the fault being due to an Mw 6.1 aftershock two hours after the main event. The remaining difference can be explained by a non-uniform slip distribution with much of the moment release occurring at depths of less than 10 km. The rupture on the central and southeastern segments of the fault in the main shock propagated at a speed of 2.5 km/s southeastward toward the town of Yushu located at the end of this segment, accounting for the considerable building damage. Strain accumulation since the last earthquake on the fault segment beyond Yushu is equivalent to an Mw 6.5 earthquake.
机译:通过结合卫星雷达,体波地震学和光学图像的观测结果,我们确定了2010年玉树6.8级(中国)地震的断层分割和破裂序列。我们使用SAR图像匹配,干涉相位和相干以及2.5 m SPOT-5卫星图像的位移绘制了故障迹线。将事件建模为弹性错位,并在断层迹线上拟合了三个部分,表明东南和西北部分接近垂直,中央部分与西南方向成70°。滑移主要发生在上10 km,东南段4 km的深度最大滑移为1.5 m。最高1 km(即近地表)的最大滑动量最大为1.2 m,并且推断出的明显地表破裂位置与SAR图像匹配和野外观测的位移一致。雷达干涉图显示在近80 km的距离上破裂,远大于对断层长度的初始地震学和现场估计。这种差异的部分原因可以归因于断层西北段的滑移,这是由于主事件两小时后发生了6.1兆瓦余震。剩余的差异可以通过不均匀的滑移分布来解释,其中大部分力矩释放发生在小于10 km的深度处。主震断层中部和东南部的断裂以向东南方向2.5 km / s的速度向该段末端的玉树镇传播,这造成了相当大的建筑破坏。自玉树以外的断裂带上次地震以来的应变累积相当于6.5兆瓦地震。

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