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Hybrid silencers with micro-perforated panels and internal partitions

机译:带有微孔板和内部隔板的混合消音器

摘要

A sub-structuring approach, along with a unit cell treatment, is proposed to model expansion chamber silencers with internal partitions and micro-perforated panels (MPPs) in the absence of internal flow. The side-branch of the silencer is treated as a combination of unit cells connected in series. It is shown that, by connecting multiple unit cells with varying parameters, the noise attenuation bandwidth can be enlarged. With MPPs, the hybrid noise attenuation mechanism of the silencer is revealed. Depending on the size of the perforation hole, noise attenuation can be dominated by dissipative, reactive, or combined effects together. For a broadband sound absorption, the hole size, together with the perforation ratio and other parameters, can be optimized to strike a balance between the dissipative and reactive effect, for ultimately achieving the desired noise attenuation performance within a prescribed frequency region. The modular nature of the proposed formulation allows doing this in a flexible, accurate, and cost effective manner. The accuracy of the proposed approach is validated through comparisons with finite element method and experiments.
机译:提出了一种子构造方法以及单元格处理,以在没有内部流动的情况下对带有内部隔板和微孔板(MPP)的膨胀室消音器进行建模。消音器的侧支路被视为串联连接的单元电池的组合。结果表明,通过连接多个具有变化参数的单位单元,可以增大噪声衰减带宽。通过MPP,揭示了消音器的混合噪声衰减机制。取决于穿孔的大小,噪声的衰减可以由耗散,电抗或组合效应共同控制。对于宽带吸声,可以对孔的大小以及穿孔率和其他参数进行优化,以在耗散和电抗效应之间取得平衡,从而最终在规定的频率范围内实现所需的噪声衰减性能。所提出的制剂的模块化性质允许以灵活,准确和成本有效的方式做到这一点。通过与有限元方法和实验的比较,验证了所提方法的准确性。

著录项

  • 作者

    Yu X; Cheng L; You X;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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