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3D dynamic responses of a 2D hill in a layered half-space subjected to obliquely incident plane P-, SV- and SH-waves

机译:层状半空间中2D小山在斜入射平面P波,SV波和SH波作用下的3D动态响应

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An indirect boundary element method (IBEM) is proposed to investigate the three-dimensional (3D) dynamic responses of a two-dimensional (2D) hill in a layered elastic half-space subjected to obliquely incident plane P-, SV-, and SH-waves. The proposed IBEM is characterized by adopting the full-space Green's function of moving distributed loads to construct the scattered field in the closed regions, while using the half-space Green's function of moving distributed loads to simulate the scattered field in the opened half-space region. This new method thus combines the merits of these two Green's function and is especially suitable for addressing 2.5D multi-domain coupled multilayered wave scattering problems with the advantages of singularity-free, low computational cost and flexibility. The accuracy and validity of the method is verified by comparing its results with a number of existing solutions. Numerical calculations are performed by taking semi-circular as well as semi-elliptical hills as examples, and the effects of the hill height, frequency of excitation, incident angle, and layering on the dynamic responses are analyzed in detail. It is found that the proposed method can treat the oblate as well as prolate hills, which demonstrate that the new IBEM has good adaptability to the shape of hills. In addition, numerical results show that significant focusing effects and standing-wave patterns are formed inside the hills under incident plane waves; the presence of the hill amplifies the ground motion significantly, which is highly related to the hill height, frequency of excitation, incident angle and dynamic characteristics of the site; And there exist pronounced dynamic interaction between the hill and the layer, which leads to the much more complex topographic effects.
机译:提出了一种间接边界元方法(IBEM)来研究层状弹性半空间中倾斜入射平面P-,SV-和SH引起的二维(2D)丘陵的三维(3D)动力响应-波浪。所提出的IBEM的特征在于采用全空间格林函数移动分布载荷来构造封闭区域的散射场,同时利用半空间格林函数移动分布载荷来模拟开放半空间中的散射场。区域。因此,这种新方法结合了这两种格林函数的优点,特别适合解决2.5D多域耦合多层波散射问题,并且具有无奇点,计算成本低和灵活性强的优点。通过将其结果与许多现有解决方案进行比较,验证了该方法的准确性和有效性。以半圆形和半椭圆形的山丘为例进行了数值计算,并详细分析了山丘高度,激发频率,入射角和分层对动力响应的影响。结果表明,所提方法可以同时处理扁圆形山和扁圆形山,这说明新的IBEM对山形具有很好的适应性。此外,数值结果表明,在入射平面波作用下,山丘内部形成了明显的聚焦效应和驻波模式。丘陵的存在极大地放大了地面运动,这与丘陵高度,激发频率,入射角和场地的动力特性高度相关;丘陵与地层之间存在明显的动力相互作用,这导致了更为复杂的地形影响。

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