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Theoretical and experimental investigation of the insertion loss of a dissipative muffler

机译:消散消声器插入损耗的理论和实验研究

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摘要

By using a global theory of sound propagation in a circular duct with a dissipative material, the equivalent acoustical impedance of the cross section of the duct was calculated at low frequencies. Plane wave theory was then used to calculate the four-pole parameters of the duct using empirical formulas of the propagation constant and specific impedance of a dissipative porous material. The insertion loss of a single chamber dissipative muffler was calculated for different geometries and dissipative materials, and the insertion loss was measured using two microphone probes and white noise. The measurements were performed with different geometries and with different porous materials. The acoustical properties of the porous materials were calculated on the basis of the measured flow resistance and the calculated acoustical properties were compared with results obtained by using a standing wave tube method. A good agreement was found between the calculated and measured insertion loss of the single chamber dissipative muffler in the frequency range below the cutoff frequency of the muffler.
机译:通过使用具有耗散材料的圆形管道中的声音传播的整体理论,可以在低频下计算管道横截面的等效声阻抗。然后使用平面波理论使用耗散多孔材料的传播常数和比阻抗的经验公式来计算管道的四极参数。计算了不同几何形状和耗散材料的单腔消声器的插入损耗,并使用两个麦克风探头和白噪声测量了插入损耗。用不同的几何形状和不同的多孔材料进行测量。基于测得的流动阻力来计算多孔材料的声学性质,并将所计算的声学性质与通过驻波管法获得的结果进行比较。在消声器截止频率以下的频率范围内,单腔消声器的插入损耗的计算值与测量值之间找到了很好的一致性。

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