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首页> 外文期刊>Engineering analysis with boundary elements >A fast multipole boundary element method for 3D multi-domain acoustic scattering problems based on the Burton-Miller formulation
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A fast multipole boundary element method for 3D multi-domain acoustic scattering problems based on the Burton-Miller formulation

机译:基于Burton-Miller公式的3D多域声散射问题的快速多极边界元方法

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摘要

A fast multipole boundary element method (FMBEM) for 3D multi-domain acoustic scattering problems based on the Burton-Miller formulation is presented in this paper. A multi-tree structure is designed for the multi-domain FMBEM. It results in mismatch of leaves and well separate cells definition in different domains and complicates the implementation of the algorithm, especially for preconditioning. A preconditioner based on boundary blocks is devised for the multi-domain FMBEM and its efficiency in reducing the number of iterations in solving large-scale multi-domain scattering problems is demonstrated. In addition to the analytical moment, another method, based on the anti-symmetry of the moment kernel, is developed to reduce the moment computation further by a factor of two. Frequency sweep analysis of a penetrable sphere shows that the multi-domain FMBEM based on the Burton-Miller formulation can overcome the non-unique solution problem at the fictitious eigenfrequencies. Several other numerical examples are presented to demonstrate the accuracy and efficiency of the developed multi-domain FMBEM for acoustic problems. In spite of the high cost of memory and CPU time for the multi-tree structure in the multi-domain FMBEM, a large BEM model studied with a PC has 0.3 million elements corresponding to 0.6 million unknowns, which clearly shows the potential of the developed FMBEM in solving large-scale multi-domain acoustics problems.
机译:本文提出了一种基于Burton-Miller公式的3D多域声散射问题的快速多极边界元方法(FMBEM)。多树结构是为多域FMBEM设计的。这会导致叶子不匹配,并且在不同域中的单元格定义会完全分开,并使算法的实现复杂化,尤其是对于预处理而言。设计了一种基于边界块的预处理器用于多域FMBEM,并证明了其在解决大规模多域散射问题中减少迭代次数的效率。除了解析力矩外,还开发了另一种基于力矩内核反对称性的方法,将力矩计算进一步减少了两倍。对可穿透球体的频率扫描分析表明,基于Burton-Miller公式的多域FMBEM可以克服虚拟特征频率下的非唯一解问题。提出了其他几个数值示例,以证明开发的多域FMBEM用于声学问题的准确性和效率。尽管多域FMBEM中多树结构的内存和CPU时间成本很高,但使用PC研究的大型BEM模型具有30万个元素,对应于60万个未知数,这清楚地表明了开发的潜力。 FMBEM解决大型多域声学问题。

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