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Impedance-to-scattering matrix method for large silencers Part Ⅱ: Integral formulation, acoustic reciprocity and practical issues

机译:大消音器的阻抗散射矩阵方法Ⅱ:积分配方,声学互惠和实际问题

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摘要

The collocation-based impedance-to-scattering matrix method recently developed in conjunction with the boundary element method (BEM) for large silencer analysis is reformulated by using the reciprocal identity integral. The reciprocal identity integral also forms the foundation of the classical theory of acoustic reciprocity for silencers. Contrary to the conventional wisdom, when the inlet and the outlet of a large silencer are switched, the transmission loss (TL) may not remain the same at frequencies above the plane-wave cutoff of the inlet and outlet. Numerical results using the BEM as well as the finite element method (FEM) are provided to confirm the hypothesis. Some practical issues related to the application of the impedance-to-scattering matrix method are also investigated. One issue is on the combination of subsystems in series connection using the scattering matrices. It is found that the more stable Redheffer star product must be used instead of the simple matrix multiplication using the transfer scattering matrices. Another practical issue is on the modeling of large silencers with a 1/2 or a 1/4 reflective symmetry. A more restrictive selection of modes must be used in place of the general complete modal expansion in cylindrical coordinates.
机译:通过使用互易成分积分来重新重新重新制定最近与大型消音器分析结合使用的基于搭配的阻抗到散射矩阵方法,通过使用互易识别积分来重新制定。互惠身份积分还构成了消声器声学互惠的经典理论的基础。与传统智慧相反,当切换大消音器的入口和出口时,在入口和出口的平面波截止的频率下,传输损耗(TL)可能不会相同。提供了使用BEM的数值结果以及有限元方法(FEM)来确认假设。还研究了一些与应用阻抗散射矩阵方法相关的实际问题。一个问题是使用散射矩阵串联连接的子系统组合。发现必须使用更稳定的Redheffer星产品而不是使用传输散射矩阵来代替简单的矩阵乘法。另一个实际问题是在具有1/2或1/4反射对称的大型消音器的建模上。必须使用更限制的模式选择,以代替圆柱形坐标中的一般完全模态扩展。

著录项

  • 来源
    《Engineering analysis with boundary elements》 |2020年第10期|235-245|共11页
  • 作者

    P. Wang; T.W. Wu; K. Ruan; H. Zhou;

  • 作者单位

    Department of Mechanical Engineering University of Kentucky Lexington KY 40506-0503 USA;

    Department of Mechanical Engineering University of Kentucky Lexington KY 40506-0503 USA;

    Department of Mechanical Engineering University of Kentucky Lexington KY 40506-0503 USA;

    Department of Mechanical Engineering University of Kentucky Lexington KY 40506-0503 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 21:12:09

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