Influence of interaction with tangential lean blade and box type casing on blade passing frequency noise level in small axial-flow fans

T. Iwase, Tetsuya Hioki, Yoshihiko Kato, Taro Tanno, Osamu Sekiguchi, M. Furukawa
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引用次数: 3

Abstract

Influence of interaction with a tangential lean blade and a box type casing on blade passing frequency (BPF) noise level in small axial-flow fans was investigated by measurement and computational fluid dynamics (CFD). Noise level of five fans having different tangential lean angles was measured. By increasing tangential lean angle, BPF noise level and broadband noise level reduced. An unsteady CFD simulation of tangential lean angle 31-degrees and 63-degrees was conducted to analyze the cause of BPF noise reduction. By increasing tangential lean angle, the inward blade force of the 63-degrees blade was increased compared to the 31-degrees blade. The increase of the inward blade force decreased centrifugal flow in radial direction at the exit of casing, because the inward blade force gave a momentum to the flow in radial inward direction. The decrease of the centrifugal flow suppressed interaction of the flow with the casing wall. The suppression of the interaction reduced static pressure fluctuation for BPF of the casing wall. The reduction of static pressure fluctuation for BPF was found to have a great influence on the BPF noise reduction. It is therefore clarified that increasing tangential lean angle was effective in reduction of the BPF noise.
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小轴流风机切向斜叶片与箱型机匣相互作用对叶片通过频率噪声水平的影响
采用测量与计算流体力学(CFD)相结合的方法,研究了小型轴流风机与切向贫叶片和箱型机匣相互作用对叶片通过频率噪声级的影响。测量了五种不同切向倾斜角风机的噪声水平。通过增加切向倾角,BPF噪声水平和宽带噪声水平均有所降低。为了分析BPF降噪的原因,对31°和63°切向倾角进行了非定常CFD仿真。通过增加切向倾斜角,63度叶片的向内叶片力比31度叶片增大。叶片向内力的增大减少了机匣出口径向的离心流动,这是由于叶片向内力给径向向内流动提供了动量。离心流量的减小抑制了流体与机匣壁面的相互作用。相互作用的抑制降低了套管壁BPF的静压波动。研究发现,减小BPF的静压波动对BPF的降噪有很大的影响。因此,明确了增加切向倾斜角是有效的降低BPF噪声。
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