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Use of reciprocity considerations for the two-dimensional BEM analysis of wave propagation in an elastic half-space with applications to acoustic emission

机译:利用互易性考虑对弹性半空间中波传播的二维BEm分析应用于声发射

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摘要

A simple numerical treatment of the infinite boundary in the BEM analysis of two-dimensional wave propagation problems in elastic half-spaces is proposed to avoid the spurious reflections of non-decaying Rayleigh waves introduced by the truncation of the boundary. The proposed method exploits the knowledge of the far-field asymptotic behavior of the solution to adequately correct the BEM displacement system matrix for the truncated problem to account for the contribution of the omitted part of the boundary. The reciprocal theorem of elastodynamics is used for a convenient computation of this contribution exclusively in terms of the boundary integrals of the original BEM system. The method is applied to the study of the acoustic emission from nucleating and propagating surface-breaking and buried cracks in a two-dimensional elastic half-space. It is shown to be particularly advantageous since it allows for an accurate calculation of the generated signal even when the observation point is located far from the acoustic emission source.
机译:提出了在弹性半空间中二维波传播问题的BEM分析中对无限边界的简单数值处理,以避免边界被截断而引入的非衰减瑞利波的杂散反射。所提出的方法利用解决方案的远场渐近行为的知识来充分校正截断问题的BEM位移系统矩阵,以解决边界的省略部分的影响。弹性动力学的互逆定理专门用于根据原始BEM系统的边界积分方便地计算此贡献。该方法用于研究在二维弹性半空间中形核和传播表面破裂和掩埋裂纹的声发射。由于它即使在观察点远离声发射源的情况下也可以精确地计算所产生的信号,因此显示出是特别有利的。

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