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Seismic response of an embedded pile in a transversely isotropic half-space under incident P-wave excitations

机译:入射P波激励下横观各向同性半空间中埋入式桩的地震反应

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A rigorous mathematical formulation is presented for the analysis of a thin cylindrical shell embedded in a transversely isotropic half-space under vertically incident P-wave excitation. By virtue of a set of ring-loads Green's functions for the shell and a group of dynamic fundamental solutions for the half-space under arbitrary interfacial dynamic loads, the problem is shown to be reducible to a pair of Fredholm integral equations. By utilizing an adaptive-gradient family capable of capturing regular-to-singular solution transitions smoothly, an accurate numerical procedure is developed. To assess the effect of material anisotropy on the dynamic load-transfer process, a set of comprehensive numerical results presented for various material and geometrical conditions. The accuracy of the proposed numerical scheme is confirmed by its comparison with a benchmark solution for the corresponding isotropic problem.
机译:提出了严格的数学公式,用于分析在垂直入射P波激励下嵌入在横向各向同性半空间中的薄圆柱壳。借助于在壳体上的一组环形载荷格林函数和在任意界面动态载荷下半空间的一组动态基本解,该问题可以简化为一对Fredholm积分方程。通过利用能够平稳捕获规则到奇异解转换的自适应梯度族,开发了一种精确的数值程序。为了评估材料各向异性对动态载荷传递过程的影响,针对各种材料和几何条件给出了一组综合的数值结果。通过与相应的各向同性问题的基准解决方案进行比较,证实了所提出数值方案的准确性。

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