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Experimental Investigation on Circular Cylinders with Metal Foam for Noise Reduction

机译:金属泡沫圆柱形降噪试验研究

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Covering the circular cylinder with metal foam is one of the effective methods to reduce aerodynamic noises. In order to investigate the mechanism of noise reduction of porous metal, acoustic and velocity measurements were conducted in an aeroacoustic wind tunnel using microphone and constant temperature anemometry, respectively. The results show that the tonal noise produced by the cylinder covered with the metal foam is reduced significantly. By further analysis of the velocity field of the cylinder wake, it shows that metal foam decreases the frequency of the vortex shedding and reduces the velocity in the wake. In addition, the width of the wake region is broadened for cylinder covered with metal foam.
机译:用金属泡沫覆盖圆柱形是减少空气动力学噪声的有效方法之一。为了研究多孔金属的降噪机制,分别使用麦克风和恒温性低温体系中的流动风隧道进行声学和速度测量。结果表明,由金属泡沫覆盖的气缸产生的音调噪声显着降低。通过进一步分析气缸唤醒的速度场,表明金属泡沫降低了涡旋脱落的频率并降低了瓶中的速度。此外,对于覆盖有金属泡沫的圆柱体,唤醒区域的宽度宽。

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