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Coseismic deformation of the 2015 Mw 6.4 Pishan, China, earthquake estimated from Sentinel-1A and ALOS2 data

机译:根据Sentinel-1A和ALOS2数据估算的2015年中国Pi山6.4级地震的同震形变

摘要

The 2015 Mw 6.4 Pishan earthquake is the largest to have occurred in the Tarim basin since 1976. It caused great damage to infrastructures and private houses in the city of Pishan and the surrounding areas. We use ascending and descending interferometric Sentinel-1A (S1A) and Advanced Land Observation Satellite 2 data to constrain the source parameters of this earthquake. The coseismic fault-slip model obtained from a joint inversion indicates that the rupture is dominated by a thrust motion with a 7 km buried depth. The fault slip is centralized on a roughly 30 km (along-strike) × 15 km (down-dip) rectangular asperity, with ∼1 m maximum slip at a depth of 11 km. The total seismic moment 5:6 × 1018 N·m, corresponding to a moment magnitude Mw 6.47, is slightly larger than the seismological estimate. The absence of fault slip in the upper 7 km of the crust suggests that this earthquake left an unruptured up-dip fault under the city of Pishan. Both the coseismic fault-slip distribution and the early postseismic deformation demonstrate that the S1A data have obvious superiority in monitoring earthquakes worldwide. Online Material: Figures of fault-slip models, checkerboard tests, and comparison of observed, predicted, and residual interferograms, and tables of the Advanced Land Observation Satellite 2 (ALOS2) and Sentinel-1A (S1A) images used and of fault-slip distribution of the 2015 Mw 6.4 Pishan earthquake.
机译:2015年的Pishan 6.4级地震是1976年以来塔里木盆地发生的最大地震。它对Pishan市及周边地区的基础设施和私人住宅造成了严重破坏。我们使用上升和下降干涉Sentinel-1A(S1A)和高级陆地观测卫星2数据来约束这次地震的震源参数。从联合反演得到的同震断层滑移模型表明,该破裂以埋藏深度为7km的推力运动为主。断层滑动集中在大约30 km(沿走向)×15 km(下倾)的矩形凹凸上,最大滑动约1 m,深度为11 km。总地震矩5:6×1018 N·m,对应于矩震级Mw 6.47,略大于地震估计值。地壳上部7 km没有断层滑动,表明这次地震在Pishan市下留下了一个未破裂的上倾断层。同震断层滑移分布和地震后的早期变形都表明,S1A数据在监测全球地震方面具有明显的优势。在线资料:断层滑动模型,棋盘测试的图形,以及观测,预测和残余干涉图的比较,以及所使用的高级陆地观测卫星2(ALOS2)和Sentinel-1A(S1A)图像以及断层滑动的表格2015年皮山6.4级地震的分布。

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