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首页> 外文期刊>Soil Dynamics and Earthquake Engineering >A hybrid indirect boundary element―discrete wave number method applied to simulate the seismic response of stratified alluvial valleys
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A hybrid indirect boundary element―discrete wave number method applied to simulate the seismic response of stratified alluvial valleys

机译:混合间接边界元离散波数法模拟分层冲积谷地震响应

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摘要

A hybrid indirect boundary element - discrete wavenumber method is presented and applied to model the ground motion on stratified alluvial valleys under incident plane SH waves from an elastic half-space. The method is based on the single-layer integral representation for diffracted waves. Refracted waves in the horizontally stratified region can be expressed as a linear superposition of solutions for a set of discrete wavenumbers. These solutions are obtained in terms of the Thomson-Haskell propagators formalism. Boundary conditions of continuity of displacements and tractions along the common boundary between the half-space and the stratified region lead to a system of equations for the sources strengths and the coefficients of the plane wave expansion. Although the regions share the boundary, the discretization schemes are different for both sides: for the exterior region, it is based on the numerical and analytical integration of exact Green's functions for displacements and tractions whereas for the layered part, a collocation approach is used. In order to validate this approach results are compared for well-known cases studied in the literature. A homogeneous trapezoidal valley and a parabolic stratified valley were studied and excellent agreement with previous computations was found. An example is given for a stratified inclusion model of an alluvial deposit with an irregular interface with the half-space. Results are displayed in both frequency and time domains. These results show the significant influence of lateral heterogeneity and the emergence of locally generated surface waves in the seismic response of alluvial valleys.
机译:提出了一种混合间接边界元-离散波数方法,并将其应用到弹性半空间入射平面SH波下的分层冲积谷地运动模型中。该方法基于衍射波的单层积分表示。水平分层区域中的折射波可以表示为一组离散波数的解的线性叠加。这些解决方案是根据Thomson-Haskell传播者形式主义获得的。沿半空间和分层区域之间的公共边界的位移和牵引力连续性的边界条件导致了源强度和平面波扩展系数的方程组。尽管区域共享边界,但离散化方案在两侧都是不同的:对于外部区域,它基于位移和牵引力的格林函数精确的数值和分析积分,而对于分层部分,则使用搭配方法。为了验证这种方法,对文献中研究的著名案例的结果进行了比较。研究了一个均匀的梯形谷和一个抛物线形的谷,并发现与先前的计算有很好的一致性。给出了一个与半空间不规则界面的冲积物的分层包含模型的例子。结果显示在频域和时域中。这些结果表明,横向非均质性和冲积谷地地震响应中局部产生的表面波的出现具有重大影响。

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