首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Post-Seismic Deformation from the 2009 Mw 6.3 Dachaidan Earthquake in the Northern Qaidam Basin Detected by Small Baseline Subset InSAR Technique
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Post-Seismic Deformation from the 2009 Mw 6.3 Dachaidan Earthquake in the Northern Qaidam Basin Detected by Small Baseline Subset InSAR Technique

机译:利用小型基线子集InSAR技术检测到的2009年柴达木北部达世丹6.3级地震发生的地震后变形

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摘要

On 28 August 2009, one thrust-faulting Mw 6.3 earthquake struck the northern Qaidam basin, China. Due to the lack of ground observations in this remote region, this study presents high-precision and high spatio-temporal resolution post-seismic deformation series with a small baseline subset InSAR technique. At the temporal scale, this changes from fast to slow with time, with a maximum uplift up to 7.4 cm along the line of sight 334 days after the event. At the spatial scale, this is more obvious at the hanging wall than that at the footwall, and decreases from the middle to both sides at the hanging wall. We then propose a method to calculate the correlation coefficient between co-seismic and post-seismic deformation by normalizing them. The correlation coefficient is found to be 0.73, indicating a similar subsurface process occurring during both phases. The results indicate that afterslip may dominate the post-seismic deformation during 19–334 days after the event, which mainly occurs with the fault geometry and depth similar to those of the c-seismic rupturing, and partly extends to the shallower and deeper depths.
机译:2009年8月28日,中国柴达木盆地北部发生了一次推力断层6.3级地震。由于在该偏远地区缺乏地面观测,因此本研究提出了一种高精度,高时空分辨率的地震后变形序列,并采用了较小的基线子集InSAR技术。在时间尺度上,随时间从快到慢变化,在事件发生后334天沿视线的最大隆起可达7.4 cm。在空间尺度上,这在吊壁处比在下壁处更为明显,并且在中部处从中部到两侧都减小。然后,我们提出了一种通过归一化计算同震变形和震后变形之间的相关系数的方法。发现相关系数为0.73,表明在两个阶段都发生了类似的地下过程。结果表明,滑坡可能在事件发生后的19–334天内主导地震后的变形,主要发生在断层的几何形状和深度与c地震破裂的深度相似,并且部分延伸到更浅和更深的深度。

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