波前缘静叶单级轴流风机风道噪声控制数值研究

Jianxin Lian, Hang Tong, Liangji Zhang, Weiyang Qiao, Weijie Chen
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引用次数: 0

摘要

以单级轴流风机为研究对象,研究了三种波前缘静叶对其降噪效果的影响。采用DDES方法和基于可穿透数据面的管道声学类比理论进行噪声预测。结果表明,三种波前缘叶片均能有效降低动静干涉噪声,并对宽带噪声有一定的抑制作用。A10W15定子叶片可有效降低2200 - 4200hz频率范围内的宽带噪声。当幅值增加到20时,降噪效果进一步增强。然而,当幅度增加到30时,宽带降噪效果不再显著。进一步研究表明,波浪前缘静叶可以显著改变前缘和吸力面的压力波动分布,从而控制模态能量分布。最后,分析了影响宽带降噪的多种因素,如噪声源的切断、接通效应和相关性。本文的目的是探索波浪前缘叶片对真实风机风道噪声的影响规律,揭示其噪声控制机理。
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Numerical Study on the Duct Noise Control of Single-Stage Axial Flow Fan with Wave Leading Edge Stator Blade Configurations
This study focuses on a single-stage axial flow fan, investigating the effect of three kinds of wave leading edge stator blades on its noise reduction. The DDES method and the duct acoustic analogy theory based on the penetrable data surface were used for noise prediction. The results showed that the three kinds of wave leading edge blades were effective in reducing the rotor-stator interaction tonal noise and also have a certain inhibitory effect on broadband noise. The A10W15 stator blade can effectively reduce broadband noise in the frequency range of 2200 - 4200 Hz. When the amplitude is increased to 20, the noise reduction effect is further enhanced. However, when the amplitude is increased to 30, the broadband noise reduction effect is no longer significant. Further research shows that the wave leading edge stator blades can significantly change the pressure fluctuation distribution on the leading edge and suction surface, which control the modal energy distribution. Finally, this paper analyzed multiple factors affecting the broadband noise reduction, such as the noise source cut-off and cut-on effect and correlation. The purpose of this paper is to explore the laws of the influence of wave leading edge blades on the duct noise of real fan, and to reveal its noise control mechanism.
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