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Self-induced Deformation on the Fault Plane During an Earthquake Part I: Continuous Normal Displacements

机译:地震过程中断层上的自感应变形第一部分:连续法向位移

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— The problem of the coseismic deformation induced by an earthquake on its own fault plane is investigated here. The analysis concentrates on the on-fault displacement field accompanying the occurrence of an earthquake in response to a prescribed uniform shear slip and it is carried out on the basis of the classical analytical model by Okada (1992) for a rectangular fault buried in an elastic homogeneous half-space delimited by a planar free surface. The analysis is subdivided into two separate papers: the first dealing with normal and the second with tangential on-fault displacements. In this first paper, concerning the study of the normal displacement component, the contributions of the source and of the correction introduced by the free surface are investigated separately and their dependence on the fault characteristics is thoroughly discussed. Particular attention is also devoted to the effects of the normal displacement on the fault surface geometry. It will be shown that the main effect is that of deforming the fault itself, with deformation consisting chiefly in a rotation of the plane and in a bending of the fault edges. The rotation angle is negligibly small (on the order of 1–10 μrad) for a single earthquake, although repeated seismic events occurring on the same fault might result in rotations of several degrees over geological time scales.
机译:—研究了​​地震在其自身的断层平面上引起的同震变形问题。该分析集中在伴随着规定的均匀剪切滑移而伴随地震发生的断层位移场上,并基于Okada(1992)的经典分析模型对埋在弹性体中的矩形断层进行了分析。由平面自由表面界定的均匀半空间。该分析分为两部分:第一篇涉及法线,第二篇涉及切向故障位移。在第一篇论文中,关于法向位移分量的研究,分别研究了源和自由表面引入的校正的贡献,并彻底讨论了它们对断层特征的依赖性。还特别注意法向位移对断层表面几何形状的影响。可以看出,主要作用是使断层本身变形,变形主要包括平面旋转和断层边缘弯曲。对于一次地震,旋转角很小(可以忽略不计(1–10μrad)),尽管在同一断层上发生重复的地震事件可能会导致整个地质时标旋转几度。

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