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Finite Element Modeling of the Static and Quasi-static Deformation associated with the 2004 Sumatra Earthquake

机译:2004年苏门答腊地震的静态和准静态变形有限元模拟

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摘要

The great Sumatra-Andaman earthquake of December 26, 2004 was one of the largest earthquakes ever recorded since 1900. The earthquake resulted from complex slip on the fault along the subduction zone where the oceanic portion of the Indian Plate slides under the Eurasian Plate, by the Indonesian island of Sumatra. The direction of convergence of the subducting plate relative to the overriding plate is oriented oblique to the trench axis and the rupture occurred for 1200 km along the interplate megathrust.In the present work we use a new computational FEM strategy to model the co- and post-seismic deformation field associated with the Sumatra earthquake. We are able to study the joint effects of sphericity and 3D geometrical and reological heterogeneities on the investigated observables. The comparison between our synthetic results and the available deformation data will allow us to ascertain if complexities in the physical properties of the medium could play an important role in assessing the deformation field besides source properties.
机译:2004年12月26日的苏门答腊-安达曼大地震是1900年以来有史以来最大的地震之一。该地震是由沿俯冲带断层的复杂滑动所致,印度洋板块的海洋部分在欧亚板块下方滑动,印尼苏门答腊岛。俯冲板相对于俯冲板的收敛方向倾斜于沟槽轴线,破裂沿板间大推力发生了1200km。在目前的工作中,我们采用了一种新的计算有限元策略来模拟后倾角。苏门答腊地震相关的地震形变场。我们能够研究球形度以及3D几何和生物异质性对所研究的观测值的联合影响。我们的合成结果与可用的变形数据之间的比较将使我们能够确定,介质的物理特性的复杂性是否可以在评估变形场中发挥重要作用,而不仅仅是源特性。

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