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首页> 外文期刊>The Journal of the Acoustical Society of America >Sound absorption and transmission through flexible micro-perforated panels backed by an air layer and a thin plate
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Sound absorption and transmission through flexible micro-perforated panels backed by an air layer and a thin plate

机译:通过带有空气层和薄板的柔性微孔板吸收和传播声音

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This paper describes theoretical and experimental investigations into the sound absorption and transmission properties of micro-perforated panels (MPP) backed by an air cavity and a thin plate. A fully coupled modal approach is proposed to calculate the absorption coefficient and the transmission loss of finite-sized micro-perforated panels-cavity-panel (MPPCP) partitions with conservative boundary conditions. It is validated against infinite partition models and experimental data. A practical methodology is proposed using collocated pressure-velocity sensors to evaluate in an anechoic environment the transmission and absorption properties of conventional MPPCPs. Results show under which conditions edge scattering effects should be accounted for at low frequencies. Coupled mode analysis is also performed and analytical approximations are derived from the resonance frequencies and mode shapes of a flexible MPPCP. It is found that the Helmholtz-type resonance frequency is deduced from the one associated to the rigidly backed MPPCP absorber shifted up by the mass-air mass resonance of the flexible non-perforated double-panel. Moreover, it is shown analytically and experimentally that the absorption mechanisms at the resonances are governed by a large air-frame relative velocity over the MPP surface, with either in-phase or out-of-phase relationships, depending on the MPPCP parameters.
机译:本文介绍了对带有气孔和薄板的微孔板(MPP)的吸声和传输特性的理论和实验研究。提出了一种完全耦合的模态方法来计算具有保守边界条件的有限尺寸微孔板-腔-板(MPPCP)隔板的吸收系数和传输损耗。已针对无限分区模型和实验数据进行了验证。提出了一种实用的方法,该方法使用并置的压力-速度传感器来评估在无声环境中常规MPPCP的传输和吸收特性。结果表明,在哪种情况下应考虑低频下的边缘散射效应。还执行了耦合模式分析,并且从柔性MPPCP的谐振频率和模式形状中得出了解析近似值。已经发现,亥姆霍兹型共振频率是从与挠性无孔双面板的质量-空气质量共振向上移动的刚性背衬MPPCP吸收器相关的频率推导而来的。此外,分析和实验表明,共振时的吸收机理是由MPP表面上较大的机身相对速度决定的,该速度取决于MPPCP参数的同相或异相关系。

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