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Drum silencer with shallow cavity filled with helium

机译:带有浅腔的鼓式消音器充满氦气

摘要

The motivation of this study is twofold: (a) to produce a flow-through silencer with zero pressure loss for pressure-critical applications, and (b) to tackle low frequency noise with limited sideway space using cavities filled with helium. The work represents a further development of our recently conceived device of a drum-like silencer with conventional air cavity [Huang, J. Acoust. Soc. Am. 112, 2014-2025 (2002); Choy and Huang, ibid. 112, 2026-2035 (2002)]. Theoretical predictions are validated by experimental data. The new silencer consists of two highly tensioned membranes lining part of a duct, and each membrane is backed by a cavity filled with helium. For a typical configuration of a duct with height h, membrane length L = 7 h, cavity depth hc = 0.2h, and tension T = 0.52ρ0c0 2h2, where ρ0 and c0 are the ambient density and speed of sound in air, respectively, the transmission loss has a continuous stop band of TL>6.35 dB for frequency 0.03c0/h to 0.064c0/h, which is much better than traditional duct lining. In addition to the mechanisms at work for drum silencers with air cavity, the low density of helium reduces the masslike reactance of the cavity on the second in vacuo mode of membrane vibration. The reduction greatly enhances the membrane response at this mode, which is found to be critical for achieving a broadband performance in the low-frequency regime. © 2003 Acoustical Society of America.
机译:这项研究的动机是双重的:(a)生产用于压力关键型应用的具有零压力损失的流通式消音器,以及(b)使用充有氦气的空腔在有限的侧向空间内解决低频噪声。这项工作代表了我们最近构想的带有传统气腔的鼓状消音器的进一步发展[Huang,J. Acoust。 Soc。上午。 112,2014-2025(2002); Choy和Huang,同上。 112,2026-2035(2002)]。理论预测得到了实验数据的验证。新型消音器由两个高张力膜组成,衬里覆盖着管道的一部分,每个膜都有一个充有氦气的空腔作为支撑。对于典型的高度为h的管道,膜长度L = 7 h,腔体深度hc = 0.2h,张力T =0.52ρ0c02h2,其中ρ0和c0分别是环境密度和空气中的声速,在频率从0.03c0 / h到0.064c0 / h的情况下,传输损耗具有TL> 6.35 dB的连续阻带,这比传统的管道衬里好得多。除了具有气腔的鼓式消音器的工作机理外,氦的低密度还降低了膜振动的第二真空模式下腔体的类似质量的电抗。降低极大地增强了该模式下的膜响应,这对于在低频状态下实现宽带性能至关重要。 ©2003美国声学学会。

著录项

  • 作者

    Choy YS; Huang L;

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  • 年度 2003
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  • 原文格式 PDF
  • 正文语种 eng
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