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The 2009 L’Aquila earthquake coseismic rupture: open issues and new insights from 3D finite element inversion of GPS, InSAR and strong motion data

机译:2009年L'Aquila地震COSEISMIC破裂:从GPS,INSAR和强运动数据的3D有限元反转开放问题和新见解

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摘要

We present a Finite Element inverse analysis of the static deformation field for the Mw= 6.3, 2009 L’Aquila earthquake, in order to infer the rupture slip distribution on the fault plane. An univocal solution for the rupture slip distribution has not been reached yet with negative impact for reliable hazard scenarios in a densely populated area. In this study, Finite Element computed Green’s functions were implemented in a linear joint inversion scheme of geodetic (GPS and InSAR) and seismological (strong motion) coseismic deformation data. In order to fully exploit the informative power of our dense dataset and to honor the complexities of the real Earth, we implemented an optimized source model, represented by a fault plane subdivided in variable size patches, embedded in a high-resolution realistic three-dimensional model of the Apenninic seismo-tectonic setting, accounting for topographic reliefs and rheological heterogeneities deduced from local tomography. We infer that the investigated inversion domain contains two minima configurations in the solution space, i.e. a single- and a double-patch slip distribution, which are almost equivalent, so that the available datasets and numerical models are not able to univocally discriminate between them. Nevertheless our findings suggest that a two high-slip patch pattern is slightly favoured.
机译:我们介绍了MW = 6.3,2009 L'Aquila地震的静态变形场的有限元逆分析,以推断断裂平面的破裂滑动分布。尚未达到用于破裂滑动分布的单一内部解决方案,对于密集地区的可靠危险情景,尚未达到破裂滑移分布。在这项研究中,有限元计算绿色的功能是以大地测量(GPS和INSAR)的线性关节反演方案和地震(强运动)电影变形数据的实现。为了充分利用我们密度数据集的信息丰富,并尊重现实地球的复杂性,我们实现了一个优化的源模型,由一个在变量大小补丁中细分的故障平面表示,嵌入在高分辨率逼真的三维中奥班学地震构造模型,占局部断层扫描推导的地形浮雕和流变异质性。我们推G调查的反转域中的溶液空间中的两个最小配置,即单个和双跳闸滑动分布,几乎等效,使得可用的数据集和数字模型无法在它们之间无限度地区分。尽管如此,我们的研究结果表明,两个高滑贴图案略有青睐。

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