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Application of the multi-level time-harmonic fast multipole BEM to 3-D visco-elastodynamics

机译:多级时谐快速多极边界元法在三维粘弹动力学中的应用

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This article extends previous work by the authors on the single- and multi-domain time-harmonic elastodynamic multi-level fast multipole BEM formulations to the case of weakly dissipative viscoelastic media. The underlying boundary integral equation and fast multipole formulations are formally identical to that of elastodynamics, except that the wavenumbers are complex-valued due to attenuation. Attention is focused on evaluating the multipole decomposition of the viscoelastodynamic fundamental solution. A damping-dependent modification of the selection rule for the multipole truncation parameter, required by the presence of complex wavenumbers, is proposed. It is empirically adjusted so as to maintain a constant accuracy over the damping range of interest in the approximation of the fundamental solution, and validated on numerical tests focusing on the evaluation of the latter. The proposed modification is then assessed on 3D single-region and multi-region visco-elastodynamic examples for which exact solutions are known. Finally, the multi-region formulation is applied to the problem of a wave propagating in a semi-infinite medium with a lossy semi-spherical inclusion (seismic wave in alluvial basin). These examples involve problem sizes of up to about 3 × 10~5 boundary unknowns.
机译:本文将作者先前在单域和多域时谐弹性动力学多级快速多极BEM公式上的工作扩展到弱耗散粘弹性介质的情况。底层边界积分方程和快速多极公式在形式上与弹性动力学方程式完全相同,不同之处在于波数由于衰减而复数值。注意力集中在评估粘弹性动力学基本解的多极分解上。提出了复杂波数的存在对多极截断参数选择规则的依赖于阻尼的修改。根据经验对它进行调整,以便在基本解决方案的近似值范围内,在目标阻尼范围内保持恒定的精度,并在数值测试中进行了验证,重点是对后者的评估。然后在已知精确解决方案的3D单区域和多区域粘弹动力学实例上评估提出的修改方案。最后,将多区域公式化应用于波浪在有损耗半球形夹杂物(冲积盆地中的地震波)的半无限介质中传播的问题。这些示例涉及的问题大小最多约为3×10〜5个边界未知数。

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