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首页> 外文期刊>Earth, planets and space: EPS >Source process of the 12 May 2008 Wenchuan, China, earthquake determined by waveform inversion of teleseismic body waves with a data covariance matrix
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Source process of the 12 May 2008 Wenchuan, China, earthquake determined by waveform inversion of teleseismic body waves with a data covariance matrix

机译:2008年5月12日中国汶川地震的震源过程,是通过远震体波的波形反演和数据协方差矩阵确定的

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We have estimated the spatio-temporal slip distribution of the 12 May, 2008, Wenchuan earthquake from teleseismic P-wave data. Teleseismic body wave observations are useful geophysical observations for estimating the overall seismic source process immediately after a great earthquake. However, it is difficult to constrain the slip vectors of later sub-events during a large earthquake such as the 2008 Wenchuan earthquake because the modeling error due to the Green's function uncertainty generally increases with time. In this study, we have applied a new waveform inversion method that incorporates the uncertainty of the Green's function, and we have assumed a simple fault plane model to evaluate our inversion scheme for a rapid analysis of the seismic source process. The results show that the slip history of the Wenchuan earthquake include six distinct sub-events. The derived source parameters were a seismic moment M0 = 1.4 × 1021 N m (Mw 8.0) and a source duration = 125 s. The total slip vector distribution and segmentations obtained in our study are consistent with results obtained from InSAR data. The manner of the rupture propagation suggests that the two major source faults, the Beichuan fault and the Pengguan fault, intersected in the deep part of the seismogenic zone.
机译:我们利用远震P波资料估算了2008年5月12日汶川地震的时空滑移分布。远震体波观测是有用的地球物理观测,可用于估计大地震后的总体震源过程。但是,由于格林函数不确定性导致的建模误差通常会随时间增加,因此很难约束大地震(例如2008年汶川地震)中后来的子事件的滑动矢量。在这项研究中,我们采用了一种新的波形反演方法,该方法结合了格林函数的不确定性,并且我们假设了一个简单的断层平面模型来评估我们的反演方案,以便对地震源过程进行快速分析。结果表明,汶川地震的滑动历史包括六个不同的子事件。推导出的震源参数为地震矩M0 = 1.4×1021 N m(Mw 8.0),震源持续时间= 125 s。在我们的研究中获得的总滑动矢量分布和分段与从InSAR数据获得的结果一致。破裂传播的方式表明,北川断裂和彭关断裂这两个主要的震源断层相交在成地震带的深部。

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