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A method to determine the acoustic reflection and absorption coefficients of porous media by using modal dispersion in a waveguide

机译:利用波导中的模态色散确定多孔介质的声反射系数和吸收系数的方法

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The measurement of acoustic material characteristics using a standard impedance tube method is generally limited to the plane wave regime below the tube cut-on frequency. This implies that the size of the tube and, consequently, the size of the material specimen must remain smaller than a half of the wavelength. This paper presents a method that enables the extension of the frequency range beyond the plane wave regime by at least a factor of 3, so that the size of the material specimen can be much larger than the wavelength. The proposed method is based on measuring of the sound pressure at different axial locations and applying the spatial Fourier transform. A normal mode decomposition approach is used together with an optimization algorithm to minimize the discrepancy between the measured and predicted sound pressure spectra. This allows the frequency and angle dependent reflection and absorption coefficients of the material specimen to be calculated in an extended frequency range. The method has been tested successfully on samples of melamine foam and wood fiber. The measured data are in close agreement with the predictions by the equivalent fluid model for the acoustical properties of porous media. (C) 2014 Acoustical Society of America.
机译:使用标准阻抗管方法对声学材料特性的测量通常仅限于低于管接通频率的平面波状态。这意味着管子的尺寸以及因此材料样本的尺寸必须保持小于波长的一半。本文提出了一种方法,该方法可以将频率范围扩展到平面波范围之外至少三倍,从而使材料样本的尺寸可以远大于波长。所提出的方法基于在不同轴向位置处的声压的测量并应用空间傅里叶变换。将正常模式分解方法与优化算法一起使用,以最小化测得的声压谱和预测的声压谱之间的差异。这允许在扩展的频率范围内计算材料样本的频率和角度相关的反射系数和吸收系数。该方法已在三聚氰胺泡沫和木纤维样品上成功测试。测得的数据与等效流体模型对多孔介质声学特性的预测非常吻合。 (C)2014美国声学学会。

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