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FLOW INDUCED AERODYNAMIC NOISE ANALYSIS OF PERFORATED TUBE MUFFLERS

机译:穿孔管的流动引起的空气动力噪声分析

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摘要

Despite the analysis of muffler performance for many years, most works focus mainly on reducing inlet sound and fail to consider the flow effect. Most of their results correlate well with the experimental measurements. Subsequent works have considered the mean flow effect. Owing to Doppler's effect, transmission loss curve of the muffler will shift in its corresponding frequency. However, the correlation is worse than the experimental results since the flow induced noise does not include in the analysis. This work elucidates how flow induced noise affects muffler performance by analyzing a uniform flow that passes through perforated mufflers. The flow field is calculated with the CFD method, followed by evaluation of the aerodynamic noise based on the simulation results. Additionally, the procedure is simplified by computing and comparing only the total sound power induced by the flow in the muffler interior. Two muffler types, Helmholtz resonator and plug perforated tube muffler, are analyzed and discussed.
机译:尽管多年来对消音器性能进行了分析,但大多数工作仍主要集中在降低进气声和不考虑流动效果方面。他们的大多数结果与实验测量结果很好地相关。随后的工作考虑了平均流量效应。由于多普勒效应,消声器的传输损耗曲线将以其相应的频率移动。但是,相关性比实验结果差,因为在分析中不包括流动引起的噪声。这项工作通过分析穿过穿孔消声器的均匀流动来阐明流动引起的噪声如何影响消声器性能。用CFD方法计算流场,然后根据仿真结果评估空气动力噪声。此外,通过仅计算和比较消声器内部流动引起的总声功率,简化了程序。分析和讨论了两种消声器类型,即亥姆霍兹谐振器和塞孔多孔管消声器。

著录项

  • 来源
    《Journal of Mechanics》 |2013年第2期|225-231|共7页
  • 作者单位

    Department of Engineering Science and Ocean Engineering National Taiwan University Taipei, Taiwan 10617, R.O.C.;

    Department of Engineering Science and Ocean Engineering National Taiwan University Taipei, Taiwan 10617, R.O.C.;

    Department of Engineering Science and Ocean Engineering National Taiwan University Taipei, Taiwan 10617, R.O.C.;

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

    Acoustics; Aerodynamic noise; Muffler; BNS model;

    机译:声学;空气动力噪声;围巾;BNS模型;

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