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Site Effects Due To Wave Path Inhomogeneity By Bem

机译:Bem因波道不均匀而产生的现场效应

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The time-harmonic response of a multi-layered soil deposit resting on the elastic half-plane under the influence of incoming pressure and shear waves is numerically investigated by a hybrid boundary integral equation-plane wave decomposition method. The multi-layered deposit is finite-sized, with non-parallel layers and contains a free-surface relief, while the half-plane into which it is embedded is elastic, isotropic and inhomogeneous. Two basic types of material inhomogeneity are considered for the half-plane, namely a shear modulus that varies (a) quadratically and (b) exponentially with respect to the depth coordinate. In all cases, Poisson's ratio is fixed at one-quarter and conditions of plane strain are assumed to hold. This boundary-value problem is solved by using the direct boundary element method, while free-field motions in the surrounding inhomogeneous half-plane that include contributions of incident as well as of reflected waves, are computed by an analytical plane wave decomposition method. In order to handle both internal (the multi-layered region) and external (the half-plane domain) components of this problem, boundary conditions in the form of displacement and stress field continuity along the common interface between these two regions are imposed. Finally, a detailed simulation study of a complex geological region is conducted in the frequency domain, and the results clearly demonstrate the importance of local site effects on the propagation of obliquely incident waves following a wave path that is continuously inhomogeneous.
机译:采用混合边界积分方程-平面波分解方法,数值研究了在弹性半平面上停留的多层土层在输入压力和剪切波作用下的时谐响应。多层沉积物是有限大小的,具有不平行的层,并包含自由表面起伏,而其嵌入其中的半平面是弹性的,各向同性的和不均匀的。半平面考虑了两种基本类型的材料不均匀性,即剪切模量相对于深度坐标呈(a)平方变化,(b)呈指数变化。在所有情况下,泊松比都固定为四分之一,并且假定平面应变条件成立。通过使用直接边界元方法解决了该边值问题,而通过分析平面波分解方法计算了周围非均匀半平面中的自由场运动,其中包括入射波和反射波的贡献。为了处理此问题的内部(多层区域)和外部(半平面域)组件,沿这两个区域之间的公共界面施加了位移和应力场连续性形式的边界条件。最后,在频域中对复杂的地质区域进行了详细的模拟研究,结果清楚地证明了局部场地效应对连续不均匀波路径后斜入射波传播的重要性。

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