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Self-induced Deformation on the Fault Plane During an Earthquake Part II: Continuous Tangential Displacements

机译:地震期间断层上的自感应变形第二部分:连续切向位移

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— This paper regards the on-fault displacement field generated by an earthquake on its own fault plane, with special attention to the tangential displacement vector. It is the continuation and the completion of a previous paper (Armigliato et al., 2003) concerning the analysis of the normal on-fault displacement component. It is here recognised that in addition to the discontinuous shear displacement, which is the main contribution to the seismic dislocation on the fault, there is a tangential displacement contribution that is continuous across the fault. The continuous tangential displacement is exclusively produced by the presence of the free earth's surface. The tangential displacement vector has non-vanishing components in both directions, parallel as well as perpendicular to the imposed uniform shear slip, the first being predominant on the second. We perform a set of computations aimed at evaluating the dependence of the tangential displacement magn itude on the relevant fault parameters for basic cases of rectangular faults embedded in a homogeneous half-space.
机译:—考虑地震在其自身的断层平面上产生的断层位移场,尤其要注意切向位移矢量。这是前一篇论文(Armigliato等,2003)的延续和完成,该论文涉及对正常断层位移分量的分析。在此认识到,除了不连续的剪切位移(这是断层上地震位错的主要贡献)之外,还有切向位移贡献在整个断层上是连续的。连续的切向位移仅由自由地表的存在产生。切向位移矢量在两个方向上均具有不变的分量,平行于或垂直于所施加的均匀剪切滑移,第一个在第二个上占主导地位。我们执行了一组计算,旨在评估均质半空间中嵌入的矩形断层基本情况下切向位移幅度对相关断层参数的依赖性。

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