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首页> 外文期刊>Bulletin of the Seismological Society of America >Refined rupture-velocity estimation of the 2009 L'Aquila earthquake (M_w 6.3, Central Italy) derived from apparent source time functions
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Refined rupture-velocity estimation of the 2009 L'Aquila earthquake (M_w 6.3, Central Italy) derived from apparent source time functions

机译:根据表观震源时间函数推导的2009年拉奎拉地震(M_w 6.3,意大利中部)的精细破裂速度估算

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摘要

In this paper, we obtain an accurate estimation of the rupture velocity of the 6 April 2009 M_w 6.3 L'Aquila earthquake (Central Apennines) by analyzing its apparent source time functions (ASTFs). These ASTFs have been extracted by deconvolving an empirical Green's function (EGF) at seismic stations located 200-800 km from the earthquake. From the study of duration, shape, and directivity of ASTFs at numerous and well-distributed stations, we show that the area between the two main slip patches of the earthquake ruptured at a relatively slow velocity (1:6 km=s). We next validate simultaneously the ASTFs and the slip model independently obtained through the joint inversion of strong-motion, broadband teleseismic, Global Positioning System, and Interferometric Synthetic Aperture Radar data. The good agreement in shape and duration between the observed and theoretical ASTFs is an indication for the reliability of the inferred source model and for the robustness of the rupture velocity estimations of this study.
机译:在本文中,我们通过分析其表观震源时间函数(ASTFs),准确估算了2009年4月6日的拉奎拉6.3级拉奎拉地震(中亚平宁山脉)的破裂速度。这些ASTF是通过在距离地震200-800 km的地震台站上对经验格林函数(EGF)进行反卷积来提取的。通过对大量分布良好的ASTF的持续时间,形状和方向性的研究,我们发现地震的两个主要滑动斑块之间的区域以相对较慢的速度破裂(1:6 km = s)。接下来,我们将同时验证通过强运动,宽带远震,全球定位系统和干涉式合成孔径雷达数据的联合反演而独立获得的ASTF和滑模模型。观测到的ASTF与理论上的ASTF在形状和持续时间上的良好一致性表明,推断源模型的可靠性以及本研究的破裂速度估计的鲁棒性。

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