Department of Mechanical Engineering, The University of Hong Kong, Pokfulam Road, Hong Kong.
J Acoust Soc Am. 2011 Jul;130(1):208-18. doi: 10.1121/1.3596459.
The acoustic properties of a compound micro-perforated panel (MPP) absorber array are investigated. The absorber array consists of three parallel-arranged MPP absorbers with different cavity depths. A finite element procedure is used to simulate its acoustic behaviors under normal incidence. Experimental studies are carried out to verify the numerical simulations. Due to different reactance matching conditions in the absorber array, strong local resonance occurs and the corresponding local resonance absorption dominates. Compared with single MPP absorber, the absorber array requires lower acoustic resistance for good absorption performance, and the resonance frequencies shift due to inter-resonator interactions. The different acoustic resistance requirement is explained by considering the reduced effective perforation rate of the MPP in the absorber array. The performance of the absorber array varies with the sizes and spatial arrangement of the component absorbers. When the distance between component absorbers is larger than a quarter-wavelength, the above-mentioned parallel absorption mechanism diminishes. In the experimental study, the normal incidence absorption coefficients of a prototype MPP absorber array are tested. The measured results compare well with the numerical predictions. The experimental study also shows that although other absorption mechanisms may exist, dissipation by the MPP is dominant in the MPP absorber array.
研究了一种复合微穿孔板(MPP)吸声体阵列的声学特性。该吸声体阵列由三个具有不同空腔深度的平行排列的 MPP 吸声器组成。采用有限元方法模拟其在正入射下的声学行为,并进行了实验研究以验证数值模拟。由于吸声体阵列中存在不同的电抗匹配条件,会发生强烈的局部共振,并且对应的局部共振吸收占主导地位。与单个 MPP 吸声器相比,吸声体阵列需要较低的声阻才能获得良好的吸声性能,并且由于谐振器之间的相互作用,共振频率会发生偏移。通过考虑吸声体阵列中 MPP 的有效穿孔率降低,可以解释不同的声阻要求。吸声体阵列的性能取决于组成吸声器的尺寸和空间排列。当组成吸声器之间的距离大于四分之一波长时,上述平行吸收机制会减弱。在实验研究中,测试了原型 MPP 吸声体阵列的正入射吸声系数。测量结果与数值预测吻合较好。实验研究还表明,尽管可能存在其他吸收机制,但在 MPP 吸声体阵列中,MPP 的耗散是主要的。