首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part K: Journal of Multi-body Dynamics >A study on the scattering field of SH-waves in a topographical area consisting of a semi-cylindrical hill and a subsurface horizontal hole
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A study on the scattering field of SH-waves in a topographical area consisting of a semi-cylindrical hill and a subsurface horizontal hole

机译:SH波在半圆柱形丘陵和地下水平孔组成的地形区域内的散射场研究

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摘要

This research intends to investigate the scattering field of SH-wave in a half-space containing a semicylindrical hill and a subsurface horizontal hole. A mathematical model is established in a two-dimensional plane on the basis of the characteristics of SH-waves, the ‘division-conjunction’ concept, the complex function, and moving-coordinate methods. The whole domain considered is divided into two subdomains, and the wave expressions are assumed in each subdomain. In the cylindrical subdomain, the wave function is constructed with the satisfaction of the zero-stress condition on the hill's surface automatically. In the other subdomain, the solution of the scattering waves is postulated under the stress-free condition on the horizontal surface. The analytical solutions of themodel established are obtained through a series of infinite linear algebraic equations, under the conditions that both the stress and displacement across the conjunction interface of the two subdomains are continuous. The numerical solutions are developed by truncating the infinite linear algebraic equations. The numerical simulations are performed for quantifying the displacements of the horizontal and semicylindrical hill surfaces subjected to incident SH waves, and the numerical results are verified with a comparison to the existing results of a case without subsurface hole.
机译:本研究旨在研究SH波在包含半圆柱形山丘和地下水平孔的半空间中的散射场。根据SH波的特征,“分合”概念,复函数和移动坐标法,在二维平面中建立了数学模型。所考虑的整个域分为两个子域,并且在每个子域中都假设了波动表达式。在圆柱子域中,波函数是在满足丘陵表面零应力条件的情况下自动构建的。在另一个子域中,散射波的解被假定为在无应力条件下在水平面上。在两个子域的联合界面上的应力和位移都是连续的条件下,通过一系列无限线性代数方程获得建立的模型的解析解。通过截断无限线性代数方程来开发数值解。进行了数值模拟,以量化受到SH波入射的水平和半圆柱山地表面的位移,并与没有地下孔的情况下的现有结果进行了比较,验证了数值结果。

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