流体-流体界面附近物体声散射的统一快速多极边界元方法。

IF 2.3 2区 物理与天体物理 Q2 ACOUSTICS
Daniel R Wilkes, Alec J Duncan
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引用次数: 0

摘要

本文采用统一快速多极边界元法(FMBEM)来处理位于两个半无限流体半空间界面附近(或嵌入其中)的弹性包裹体的声散射。采用平行宽带亥姆霍兹FMBEM对每个流体域进行建模,而采用有限元方法或类似的弹性动力学FMBEM对弹性包裹体进行建模。为了考虑入射声场在界面平面上的透射和反射,建立了每个流体半空间的边界积分方程,因此只计算了界面表面上弹性包裹体和/或局部表面散射特征的散射场。在没有专门的方法来吸收出波的情况下,散射场将从代表流体-流体界面的截断边界元网格的边缘反射。数值算例表明,当截断网格比散射特征大几倍时,得到的误差可以最小化。截断的流体-流体界面的仅边界离散化,FMBEM的计算成本为O(N log N),边界网格的简化截断产生了一个计算效率高的模型,可以对这类问题配置进行完全的三维分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A unified fast multipole boundary element method for acoustic scattering from objects near a fluid-fluid interface.

The unified fast multipole boundary element method (FMBEM) has been adapted to treat acoustic scattering from an elastic inclusion located near to (or embedded on) the interface between two semi-infinite fluid half-spaces. The parallel broadband Helmholtz FMBEM is used to model each fluid domain, while the elastic inclusion is modelled using either the finite element method, or an analogous elastodynamic FMBEM. The boundary integral equation for each fluid half-space is formulated to account for the transmission and reflection of the incident acoustic field from the planar surface of the interface, and so only the scattered field from the elastic inclusion and/or localised surface scattering features on the interface surface are evaluated. In the absence of specialised methods to absorb the outgoing waves, the scattered field will reflect from the edge of the truncated boundary element mesh representing the fluid-fluid interface. Numerical examples demonstrate that the resulting errors can be minimised when the truncated mesh is made a few times larger than the scattering feature. The boundary-only discretisation of the truncated fluid-fluid interface, O(N log N) computational cost of the FMBEM, and simplified truncation of the boundary mesh yield a computationally efficient model for fully three-dimensional analysis for this type of problem configuration.

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来源期刊
CiteScore
4.60
自引率
16.70%
发文量
1433
审稿时长
4.7 months
期刊介绍: Since 1929 The Journal of the Acoustical Society of America has been the leading source of theoretical and experimental research results in the broad interdisciplinary study of sound. Subject coverage includes: linear and nonlinear acoustics; aeroacoustics, underwater sound and acoustical oceanography; ultrasonics and quantum acoustics; architectural and structural acoustics and vibration; speech, music and noise; psychology and physiology of hearing; engineering acoustics, transduction; bioacoustics, animal bioacoustics.
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