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Measuring oblique incidence sound absorption using a local plane wave assumption

机译:使用局部平面波假设来测量倾斜入射吸声

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In this paper a method for the measurement of the oblique incidence sound absorption coefficient is presented. It is based on a local field assumption, in which the acoustic field is locally approximated by one incident and one specularly reflected plane wave. The amplitudes of these waves can be determined with an unidirectional sound intensity probe. The local active and incident acoustic intensity are straightforwardly obtained. The area-averaged sound absorption coefficient is calculated after spatial integration of these quantities over the surface area of interest. Alternatively, one may use a three-dimensional intensity probe. In that case, the determination of the amplitudes of the plane waves can be formulated as a least-squares problem. Measurements performed for a sound absorbing foam demonstrate that accurate results can be obtained, even under non-ideal acoustic conditions. Measurements carried out for a periodic absorber show that the method is accurate below the cut-on frequency of scattering as long as the amplitude of the evanescent surface waves is significantly smaller than that of the specularly reflected wave.
机译:本文提出了一种测量斜入射吸声系数的方法。它基于局部场假设,在该假设中,声场由一个入射和一个镜面反射的平面波局部近似。这些波的幅度可以用单向声强探头确定。可以直接获得局部声强和入射声强。在将这些数量在目标表面积上进行空间积分之后,将计算出面积平均吸声系数。或者,可以使用三维强度探针。在那种情况下,可以将平面波的振幅的确定公式化为最小二乘问题。对吸声泡沫进行的测量表明,即使在非理想的声学条件下,也可以获得准确的结果。对周期吸收器进行的测量表明,只要渐逝表面波的幅度明显小于镜面反射波的幅度,该方法在散射的截止频率以下仍是准确的。

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