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Scattering of SH waves by a shallow rectangular cavity in an elastic half space

机译:弹性半空间中浅矩形腔对SH波的散射

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Scattering of plane SH waves by a rectangular cavity embedded at shallow depth in an elastic half-space is investigated using a method that is a combination of the wave-function expansion and the weighed residual methods. The proposed method consists of partitioning the half-space using an auxiliary circle that encloses tightly the cavity, representing the motion in each region by a convenient expansion, and determining the coefficients of expansion by imposing continuity of stresses and displacements on the auxiliary circle, which is a transparent boundary. In the four regions inside the circle, representations are used in local coordinate systems such that satisfy automatically the zero-stress condition on the cavity walls, and in the outer region, such that satisfies the radiation condition. The coefficients of expansion are determined approximately, by projecting the displacement and stress residuals along the auxiliary circle onto a set of orthogonal weight functions on [-pi, pi] and setting all projections simultaneously to zero in the least squares sense. The method is verified by comparison with Finite Element Method solutions obtained using ANSYS, and then used to study the effects of the model parameters, such as embedment depth, cavity aspect ratio, frequency and angle of incidence, on the ground surface and cavity wall displacements. While restricted to rectangular cavity shape and still approximate, this method is computationally much more efficient than the Finite Element Method, and therefore is convenient for parametric studies of scattering of seismic waves by rectangular cavities. (C) 2016 Elsevier Ltd. All rights reserved.
机译:利用波函数展开法和加权残差法相结合的方法,研究了在弹性半空间中埋入浅深度的矩形空腔对平面SH波的散射。所提出的方法包括使用一个紧密围绕空腔的辅助圆对半空间进行分割,该辅助圆通过方便的扩展表示每个区域中的运动,并通过在该辅助圆上施加应力和位移的连续性来确定扩展系数。是透明的边界。在圆内部的四个区域中,在局部坐标系中使用表示,以便自动满足型腔壁上的零应力条件,而在外部区域中,满足辐射条件。通过将沿辅助圆的位移和应力残差投影到π-pi上的一组正交权函数,并在最小二乘意义上将所有投影同时设置为零,可以大致确定膨胀系数。通过与使用ANSYS获得的有限元方法解决方案进行比较,验证了该方法,然后用于研究模型参数(例如埋深,腔纵横比,入射频率和入射角)对地表和腔壁位移的影响。 。尽管限于矩形腔形状并且仍然近似,但是该方法在计算上比有限元方法有效得多,因此方便了矩形腔对地震波散射的参数研究。 (C)2016 Elsevier Ltd.保留所有权利。

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