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Laboratory and in situ sound absorption measurement under a synthetized diffuse acoustic field

机译:合成的散射声场下的实验室和原位吸声测量

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This article reports numerical and experimental results concerning the estimation of the diffuse field sound absorption coefficient of several different materials under a synthetized diffuse acoustic field excitation in laboratory and in situ conditions. The proposed measurement method is based on a sound field reproduction approach and a synthetic array of acoustic monopoles facing the material to be tested. Numerical simulations are first conducted to optimize the geometrical parameters of the method and to compute theoretical sound absorption coefficients of the considered materials. Measurements on a set of six typical acoustic materials are then conducted following the standardized reverberant room method as well as the proposed approach in a hemi-anechoic room and in two realistic rooms. Albeit showing limitations in the low-frequency domain, the proposed method enables a significant reduction of the tested specimen dimensions compared with the reverberant room method and allows performing tests in non-ideal acoustic environments.
机译:本文报告了在实验室和现场条件下,在合成的散射声场激励下,几种不同材料的散射场吸声系数估算的数值和实验结果。所提出的测量方法基于声场再现方法和面向待测材料的声学单极子的合成阵列。首先进行数值模拟,以优化该方法的几何参数并计算所考虑材料的理论吸声系数。然后,按照标准的混响室方法以及在半消声室和两个实际室中建议的方法,对一组六种典型的声学材料进行测量。尽管在低频域中显示出局限性,但是与混响室方法相比,所提出的方法能够显着减小测试样本的尺寸,并允许在非理想的声学环境中进行测试。

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