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Boundary collocation method for acoustic eigenanalysis of three-dimensional cavities using radial basis function

机译:基于径向基函数的三维腔声学特征分析的边界配置方法

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摘要

In this paper, a theoretical formulation based on the collocation method is presented for the eigenanalysis of arbitrarily shaped acoustic cavities. This article can be seen as the extension of non-dimensional influence function (NDIF) method proposed by Kang et al. (1999, 2000a) extending from two-dimensional to three-dimensional case. Unlike the conventional collocation techniques in the literature, approximate functions used in this paper are two-point functions of which the argument is only the distance between the two points. Based on this radial basis expansion, the acoustic field can be represented more exactly. The field solution is obtained through the linear superposition of radial basis function, and boundary conditions can be applied at the discrete points. The influence matrix is symmetric regardless of the boundary shape of the cavity, and the calculated eigenvalues rapidly converge to the exact values by using only a few boundary nodes. Moreover, the method results in true and spurious boundary modes, which can be obtained from the right and left unitary vectors of singular value decomposition, respectively. By employing the updating term and document of singular value decomposition (SVD), the true and spurious eigensolutions can be sorted out, respectively. The validity of the proposed method are illustrated through several numerical examples.
机译:本文提出了一种基于搭配方法的理论公式,用于任意形状的声腔的本征分析。本文可以看作是Kang等人提出的无量纲影响函数(NDIF)方法的扩展。 (1999,2000a)从二维案例扩展到三维案例。与文献中的常规配置技术不同,本文使用的近似函数是两点函数,其参数仅是两点之间的距离。基于此径向扩展,可以更精确地表示声场。通过径向基函数的线性叠加获得场解,并且边界条件可以应用于离散点。无论腔体的边界形状如何,影响矩阵都是对称的,并且仅使用几个边界节点即可将计算出的特征值快速收敛到精确值。此外,该方法产生真实和虚假的边界模式,可以分别从奇异值分解的左右unit矢量获得。通过使用更新项和奇异值分解(SVD)的文档,可以分别选出真实的和虚假的本征解。通过几个数值例子说明了该方法的有效性。

著录项

  • 来源
    《Computational Mechanics》 |2002年第5期|392-408|共17页
  • 作者单位

    Department of Harbor and River Engineering National Taiwan Ocean University Keelung Taiwan e-mail: jtchen@mail.ntou.edu.tw;

    Department of Harbor and River Engineering National Taiwan Ocean University Keelung Taiwan e-mail: jtchen@mail.ntou.edu.tw;

    Department of Harbor and River Engineering National Taiwan Ocean University Keelung Taiwan e-mail: jtchen@mail.ntou.edu.tw;

    Department of Naval Architecture National Kaohsiung Institute of Marine Technology Kaohsiung Taiwan e-mail: chen-i-lin@kimo.com.tw;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Keywords Boundary collocation method; Acoustic analysis; Radial basis function; SVD; Imaginary-part kernel;

    机译:边界配置法;声学分析;径向基函数;SVD;虚部内核;

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