几何参数对无叶风扇气动与声学性能的影响

Ang Li, Jun Chen, Yangfan Liu, J. Bolton, P. Davies
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引用次数: 1

摘要

近年来,没有可见叶轮的无叶风机在家用电器中得到了广泛的应用。由于客户对风机产生的噪音和风力强度特别敏感,因此需要在设计阶段对风机的气动性能和声学性能进行准确的表征。本文采用计算流体力学(CFD)和计算气动声学(CAA)技术对某型无叶风机不同设计方案的性能进行了研究。研究了风道截面翼型选择、狭缝宽度、截面高度和狭缝位置4个参数的影响。结果表明,减小出口可显著提高气流速度,但同时噪声水平也有所提高。此外,随着风扇截面高度的增加,产生的噪声也随之增加,截面高度为4mm时气动性能最优。当狭缝越靠近最大厚度位置时,无叶风扇的性能越好。此外,通过改变截面轮廓,性能不会发生显著变化。最后,确定了最优的几何参数,为今后的无叶风机设计提供指导。
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Influence of Geometric Parameters on Aerodynamic and Acoustic Performances of Bladeless Fans
In recent years, the bladeless fan that does not have visible impellers have been widely applied in household appliances. Since the customers are particularly sensitive to noise and the strength of wind generated by the fan, the aerodynamic and acoustic performances of the fan need to be accurately characterized in the design stage. In this study, computational fluid dynamic (CFD) and computational aeroacoustics (CAA) are applied to investigate the performances of different designs of a bladeless fan model. The influence of four parameters, namely the airfoil selection for cross-section of the wind channel, the slit width, the height of cross-section and the location of the slit, is investigated. The results indicate the streamwise air velocity increases significantly by narrowing the outlet, but the noise level increases simultaneously. In addition, the generated noise increases while the height of fan cross-section increases, and a 4mm height of the cross section is optimal for aerodynamic performance. When the slit is closer to the location of maximum thickness, the performances of the bladeless fan increases. Moreover, the performance is not changed significantly by changing the cross-sectional profile. Finally, the optimal geometric parameters are identified to guide the future design of the bladeless fan.
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