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Experimental investigation of holes interaction effect on the sound absorption coefficient of micro-perforated panels under high and medium sound levels

机译:中高声级下孔相互作用对微孔板吸声系数影响的实验研究

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摘要

This paper experimentally investigates the holes interaction effect on the sound absorption coefficient of micro-perforated panels under high and medium sound levels. The theoretical formulations are based on a semi-empirical approach and the use of Fok's function to model the acoustic surface impedance. For the high sound level regime, an empirical power law involving three coefficients is adapted. It is shown theoretically and experimentally that these coefficients can lead to optimized absorption performance and particularly, a formula relating the critical Reynolds number (Reynolds number value after which the absorption coefficient decreases with the increase of sound level) and the center-to-center distance between the perforations is derived. It is demonstrated that the first coefficient of the nonlinear acoustic resistance strongly depends on the separation distance between the apertures and decreases with a decrease of this latter distance. Analysis of the data reveals the fact that even with Holes Interaction Effect (HIE), the nonlinear reactance dependence on velocity is still very low compared to the resistance-velocity dependence. Four perforated panels of 1.5 mm thickness with different separation distances between the holes (from widely to closely separation) were built and tested. Experimental results performed with an impedance tube are compared with the described model for HIE. To test the dependence of the coefficients on frequency, the experiments are carried out for two different excitation frequencies (292 Hz and 506 Hz). The results can be used for designing optimal perforated panels for ducts, silencers and for the automotive industry.
机译:本文通过实验研究了孔在高,中声级下对微孔板吸声系数的影响。理论公式基于半经验方法,并使用Fok函数对声表面阻抗建模。对于高声级系统,采用了涉及三个系数的经验功率定律。从理论上和实验上表明,这些系数可以带来最佳的吸收性能,尤其是一个公式,该公式与临界雷诺数(雷诺数值,其后吸收系数随声级的增加而减小)和中心到中心的距离有关在穿孔之间得出。已经证明,非线性声阻的第一个系数强烈地取决于孔之间的分离距离,并且随着该后一个距离的减小而减小。数据分析揭示了一个事实,即即使具有空穴相互作用效应(HIE),与电抗的速度依赖性相比,对速度的非线性电抗依赖性仍然非常低。制作并测试了四块1.5毫米厚的穿孔板,孔之间的间隔距离不同(从宽到近)。将使用阻抗管执行的实验结果与所描述的HIE模型进行比较。为了测试系数对频率的依赖性,针对两个不同的激励频率(292 Hz和506 Hz)进行了实验。结果可用于设计用于风管,消音器和汽车行业的最佳穿孔板。

著录项

  • 来源
    《Applied Acoustics》 |2011年第10期|p.777-784|共8页
  • 作者单位

    Laboratoire de Recherche en Mecanique et Acoustique (DRIVE-LRMA), Universite de Bourgogne, ISAT, 49 Rue Mademoiselle Bourgeois, 58027 Nevers, France;

    Laboratoire de Recherche en Mecanique et Acoustique (DRIVE-LRMA), Universite de Bourgogne, ISAT, 49 Rue Mademoiselle Bourgeois, 58027 Nevers, France;

    Laboratoire de Recherche en Mecanique et Acoustique (DRIVE-LRMA), Universite de Bourgogne, ISAT, 49 Rue Mademoiselle Bourgeois, 58027 Nevers, France;

  • 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

    holes interaction effect; high sound pressure levels; micro-perforations; HIE; absorption coefficient;

    机译:空穴相互作用效应;高声压级;微孔;HIE;吸收系数;
  • 入库时间 2022-08-17 13:30:38

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