水下混响场法测量材料混响吸收系数的研究

Yang Song, Zhen-qi Zhao, Wei Zhang, Sheng-qi Yu
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引用次数: 1

摘要

本文建立了橡胶板水下混响时间模型。然后根据混响室内声场的能量关系,给出了混响时间T(rm,λm)的理论公式。当声波注入橡胶板时,Rm为反射分数,λm为吸收分数。Rm和λm可以根据波动理论和边界条件进行求解。另外,rm和λm与橡胶板的声学参数有关。将公式计算的T(rm,λm)和在无材料水下空间测得的混响时间T0均代入Eyring公式,从而预测被测材料的混响吸收系数。这种方法避免了由于材料而产生的边缘效应。仿真结果表明,混响时间和吸声系数符合实际规律。在水池实验中,测量了两种情况下的混响时间。一种情况是实验水域只有水,另一种情况是将样品放入水中。水池的测量结果表明,有橡胶板的混响时间T(rm,λm)比没有橡胶板的混响时间T0短,这是由于橡胶板的吸收加速了混响衰减的速度。实验得到的混响时间T(rm,λm)与理论结果吻合。混响吸收系数的采样频率特性与理论结果吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on the reverberation absorption coefficient of material measured by underwater reverberation field method
In this article, an underwater reverberation time model of a rubber board is established. Then a theory formula of reverberation time T(rmm) is given according to the energy relation of sound field in the reverberation chamber. rm is the reflecting fraction and λm is the absorption fraction, when sound wave is injected to a rubber board. rm and λm can be resolved base on the wave theory and boundary condition. In addition, rm and λm are related to acoustic parameters of the rubber board. T(rmm)computed by formula and reverberation time T0 measured in underwater space without material are all taken to Eyring formula, thus reverberant absorption coefficient of measured material can be forecasted. The edge effect due to the material is avoided using this method. In the simulation results of reverberation time and sound absorption coefficient agree with fact ruler. In pool experiment, reverberation time was measured in two cases. One case is that there is only water in the experimental water area, and another case is that the sample is put in water. The measurement results of the pool show the reverberant time T(rmm)with rubber board is shorter than the reverberant time T0 without rubber board, since absorption rubber board accelerates the speed of reverberant attenuation. The reverberant time T(rmm) by experiment agree with the theory result. The sample frequency characteristic of the reverberation absorption coefficient accords with theory result.
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