An Efficient Boundary Element Method Using a Modal Transformation for Transient Acoustic Problem

M. Tanabe, T. Deura, H. Okuda
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Abstract

In this paper, a simple and efficient boundary element method using a modal transformation is presented to solve a transient acoustic problem in the open space around a structure caused by the vibration due to the impact force on it. After the transient vibration of the structure is obtained by the finite element analysis, the velocity response of the surface of the structure is transformed to frequency domain. Transient acoustic pressures at points of interest are calculated as a combination of steady-state acoustic boundary element solutions under the velocity boundary conditions at discrete frequencies. However, high frequency terms exceeding an allowable frequency, which is decided from the boundary element mesh, are automatically omitted to obtain a stable solution while saving the computation time considerably. To get the boundary element solution effectively, a modal transformation using vibration modes of the structure is made to the boundary element matrices at each frequency, since the acoustic behavior on the surface of the structure is considered to be related deeply to that of the vibration. However, extra modes are added to express the acoustic field around the surface where displacements are fixed.Based on the present method, a boundary element transient acoustic analysis program, ASA/ACOUSTICS has been developed. Numerical examples are demonstrated.
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瞬态声学问题的有效边界元模态变换方法
本文提出了一种简单有效的边界元方法,利用模态变换来求解结构周围开放空间中由于冲击力引起的振动所引起的瞬态声问题。通过有限元分析得到结构的瞬态振动后,将结构表面的速度响应转换到频域。在离散频率的速度边界条件下,以稳态声学边界元解的组合计算感兴趣点处的瞬态声压。然而,对于边界元网格中确定的超过允许频率的高频项,自动省略,从而获得稳定的解,同时大大节省了计算时间。考虑到结构表面的声学特性与振动特性密切相关,为了有效地得到边界元解,利用结构的振动模态对各频率的边界元矩阵进行模态变换。然而,增加了额外的模态来表示固定位移表面周围的声场。在此基础上,开发了边界元瞬态声学分析程序ASA/ACOUSTICS。给出了数值算例。
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