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Abstracts of Papers in Acoustical Science and Technology

机译:声学科学与技术的论文摘要

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摘要

The authors have previously proposed the normal-incidence absorption coefficient measurement method using multiple microphones which enables a measurement in the frequency range beyond the cut-on frequencies of the higher order acoustic modes in an impedance measurement tube. The maximum measurement frequency of the method is determined by the cut-on frequency of the first radial mode, (0,1)mode, in the cylindrical tube. In this study, in order to extent the measurement frequency range more, the method which can reduce the factor of the (0,1) mode in the sensing signals is investigated. The method consists of two techniques. The first one is a microphone placement way to make the (0,1)mode signal undetectable by placing the acoustic centers of the microphones at a node of the mode. The second one is related to a sound source structure not to excite the (0,1)mode. Using these techniques, the normal-incidence absorption coefficient can be evaluated under the cut-on frequency of the (4, 0) mode, which is about 2.89 times higher than that of the conventional two-microphone transfer function method. The results of numerical simulations and experiments are shown to prove the validity and the feasibility of the proposed method.
机译:使用多个麦克风这使得在超出频率范围内的测量的作者已经先前提出的垂直入射吸收系数测量方法切口在阻抗测量管中的较高阶声模的频率。该方法的最大测量频率由第一径向模式的切割频率(0,1)模式,圆柱形管中的切割频率决定。在本研究中,为了更重要的是测量频率范围更多,研究了可以在感测信号中降低(0,1)模式的因子的方法。该方法包括两种技术。第一个是一种麦克风放置方式,使(0,1)模式信号通过将麦克风的声色中心放置在模式的节点中而无法侦测。第二个与声源结构有关,而不是激发(0,1)模式。使用这些技术,可以在(4,0)模式的切割频率下评估正常入射吸收系数,其比传统的双麦克风转移功能方法高约2.89倍。数值模拟和实验的结果显示出证明了该方法的有效性和可行性。

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