On the Passive Noise Control of the Flow-Induced Noise Using Porous Materials

Reon Nishikawa, O. Terashima, A. Inasawa
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引用次数: 1

Abstract

A passive noise control technique for the flow-induced noise using a porous material was studied experimentally. The purpose of this study was to decrease the aerodynamic sound using porous material that permeated only sound and clarify that reduction mechanism. In the experiment, flow-induced noises emitted from two types of rectangular cylinders was measured in a low-noise wind tunnel. One cylinder was made of four aluminum plates and the other was two aluminum and porous material plates each. Measurement results show that the frequency of the distinct tonal noise was different between two cylinders, that frequency was higher for using porous material. It was also found that the sound pressure level of the noise was also different and that of the cylinder using porous material plate was 25 dB smaller at maximum. Velocity field of the wake of cylinders were examined by the PIV measurement and that showed that time and space scale of separated vortices around cylinder were smaller for using porous material. It is assumed that the change of aerodynamic sound was caused by that change in velocity field.
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多孔材料对流致噪声的被动控制研究
实验研究了一种基于多孔材料的流致噪声被动控制技术。本研究的目的是利用只渗透声音的多孔材料来减少空气动力声音,并阐明这种减少机制。实验在低噪声风洞中测量了两种矩形圆柱体的流致噪声。一个圆筒由四块铝板制成,另一个由两块铝板和多孔材料制成。测量结果表明,两圆柱体的明显音调噪声频率不同,多孔材料的频率更高。噪声的声压级也不同,采用多孔材料板的圆柱体的声压级最大要小25 dB。采用PIV测量方法对圆柱尾迹的速度场进行了测试,结果表明,采用多孔材料后,圆柱周围分离涡的时间和空间尺度更小。假设气动声的变化是由速度场的变化引起的。
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