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Absorption of oblique incidence sound by a finite micro-perforated panel absorber

机译:有限的微孔板式吸收器吸收倾斜入射声

摘要

In this paper, a theoretical model of a micro-perforated panel (MPP) backed by a finite cavity and flush-mounted in an infinite baffle is developed and its performance in terms of sound absorption is analyzed. The model allows an oblique incidence sound impinging upon the MPP absorber. The simplified Rayleigh integral method, thin plate theory and the acoustical impedance of the MPP are used to calculate the sound energy absorbed by the MPP's surface. Results show that the absorption coefficient of the absorber is a function of angle and frequency of the incident sound, and is controlled by the coupling between the MPP and the acoustical modes in the back cavity. In particular, grazing modes can be induced in the cavity by sound with an oblique angle of incidence, which may result in peak sound absorptions at the natural frequencies of the modes. The mechanism involved is used to explain the absorption properties of the MPP absorber for a diffuse incidence of sound.
机译:本文建立了一个以有限空腔为支撑,并齐平安装在无限挡板中的微孔板的理论模型,并对其吸声性能进行了分析。该模型允许倾斜的入射声撞击MPP吸收器。简化的瑞利积分法,薄板理论和MPP的声阻抗用于计算MPP表面吸收的声能。结果表明,吸声体的吸收系数是入射声的角度和频率的函数,并受MPP与后腔声学模式之间耦合的控制。特别地,掠射模式可以通过具有倾斜入射角的声音在空腔中诱发,这可能导致在模式的固有频率处达到峰值吸声。所涉及的机制用于解释MPP吸收器对声音的散射入射的吸收特性。

著录项

  • 作者

    Yang C; Cheng L; Pan J;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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