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3D elastic wave propagation modelling in the presence of 2D fluid-filled thin inclusions

机译:存在2D流体填充的薄夹杂物时的3D弹性波传播建模

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摘要

In this paper, the traction boundary element method (TBEM) and the boundary element method (BEM), formulated in the frequency domain, are combined so as to evaluate the 3D scattered wave field generated by 2D fluid-filled thin inclusions. This model overcomes the thin-body difficulty posed when the classical BEM is applied. The inclusion may exhibit arbitrary geometry and orientation, and may have null thickness. The singular and hypersingular integrals that appear during the model's implementation are computed analytically, which overcomes one of the drawbacks of this formulation. Different source types such as plane, cylindrical and spherical sources, may excite the medium. The results provided by the proposed model are verified against responses provided by analytical models derived for a cylindrical circular fluid-filled borehole.
机译:本文结合频域中提出的牵引边界元法(TBEM)和边界元法(BEM),对二维充液薄包裹体产生的3D散射波场进行了评价。该模型克服了应用经典BEM时造成的薄体难题。夹杂物可以表现出任意的几何形状和取向,并且可以具有零厚度。通过模型计算模型执行过程中出现的奇异和超奇异积分,从而克服了该公式的缺点之一。诸如平面,圆柱和球形光源之类的不同光源可能会激发介质。所提出的模型提供的结果与圆柱状圆形充满流体的钻孔的分析模型所提供的响应进行了验证。

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