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Scattering of plane qP- and qSV-waves by a canyon in a multi-layered transversely isotropic half-space

机译:多层横向各向同性多层半空间中峡谷对平面qP和qSV波的散射

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摘要

An indirect boundary element method (IBEM) is developed to study the scattering and diffraction of plane qP- and qSV-waves by a canyon in a multi-layered transversely isotropic (TI) half-space. First, the exact dynamic stiffness matrix for in-plane motion is constructed to determine the free fields of the multi-layered TI half-space for incident plane qP- and qSV-waves. Dynamic Green's functions for uniformly distributed loads acting on an inclined line are then derived and the scattered fields are expressed as the summation of dynamic responses of a set of fictitious distributed loads applied on the canyon surface. Finally, the boundary condition is introduced to determine the densities of the distributed loads and the total dynamic responses are recovered by adding the free fields to the scattered fields. The proposed IBEM has the merits of distributed loads being directly applied on the real boundary of the irregularity without the problem of singularity, and the discretization effort being restricted to the surface of the canyon. Comparisons with existing numerical solutions for the isotropic (special) case are conducted to confirm the validity of the proposed formulations. And parametric studies are performed in both the frequency and time domains to investigate the influence of material anisotropy, frequency of excitation, incident angle and layering on the surface motions. Numerical results show that the surface motions for the TI medium can be significantly different from those of the isotropic case and that the responses are highly dependent on the TI parameters, especially for the layered TI half-space.
机译:开发了一种间接边界元方法(IBEM),用于研究多层横向各向同性(TI)多层空间中峡谷对平面qP和qSV波的散射和衍射。首先,构造用于平面内运动的精确动态刚度矩阵,以确定入射平面qP和qSV波的多层TI半空间的自由场。然后推导了动态Green函数,用于作用在倾斜线上的均匀分布的载荷,并将散射场表示为施加在峡谷表面上的一组虚拟分布载荷的动力响应之和。最后,引入边界条件来确定分布载荷的密度,并通过将自由场添加到散射场来恢复总的动态响应。所提出的IBEM具有将分布载荷直接施加在不规则性的真实边界上的优点,而没有奇异性的问题,并且离散化作用限于峡谷的表面。与各向同性(特殊)情况下的现有数值解进行了比较,以确认所提出公式的有效性。并且在频域和时域都进行了参数研究,以研究材料各向异性,激发频率,入射角和分层对表面运动的影响。数值结果表明,TI介质的表面运动可能与各向同性情况显着不同,并且响应高度依赖于TI参数,尤其是对于分层的TI半空间。

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