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首页> 外文期刊>Journal of Sound and Vibration >A NOVEL TECHNIQUE IN BOUNDARY INTEGRAL EQUATIONS FOR ANALYZING ACOUSTIC RADIATION FROM AXISYMMETRIC BODIES
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A NOVEL TECHNIQUE IN BOUNDARY INTEGRAL EQUATIONS FOR ANALYZING ACOUSTIC RADIATION FROM AXISYMMETRIC BODIES

机译:轴对称体的声辐射分析的一种新的边界积分方程技术

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摘要

A novel technique is suggested to avoid singular integrals of boundary integral equations (BIE) for exterior sound radiation problems. The technique, reproduction of diagonal terms (RDT), utilizes special solutions of some monopole sources, which give the distribution of theoretical surface pressure and velocity to reproduce diagonal terms in the BIE matrices. It is proposed to employ three monopole sources in reproduction of diagonal terms in both pressure and velocity matrices. Although the interior points are applied to generate monopole solutions, the concept is basically different from that of general interior Helmholtz equations. So the present technique is different from those traditional methods to improve BIE method through added interior Helmholtz equations. Several examples are presented to demonstrate the effectiveness of the proposed technique for closed axisymmetric surfaces. Numerical results show that the technique of RDT can improve the accuracy of the solution up to 10 times compared to the conventional techniques such as SHF, CHIEF-SHF.
机译:提出了一种新颖的技术来避免边界积分方程(BIE)的奇异积分引起的外部声辐射问题。该技术,对角项再现(RDT),利用某些单极子源的特殊解决方案,这些解决方案给出了理论表面压力和速度的分布,以在BIE矩阵中再现对角项。建议在压力和速度矩阵中采用三个单极源来再现对角项。尽管将内部点应用于生成单极子解,但该概念与一般的内部亥姆霍兹方程基本不同。因此,本技术不同于通过添加内部亥姆霍兹方程来改进BIE方法的传统方法。提出了几个例子来证明所提出的技术对于闭合轴对称表面的有效性。数值结果表明,与传统技术如SHF,CHIEF-SHF相比,RDT技术可以将求解精度提高多达10倍。

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