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Study of Rotational Noise Reduction for Axial Flow Fan (Analysis and Estimation of Secondary Fan-Noise Component)

机译:轴流风机旋转噪声降低的研究(次级风机噪声分量的分析与估计)

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摘要

Rotational noise is one of the main sources of noise emitted by a fan. This type of noise has discrete frequency components, and is so severe that many methods have been developed for its reduction. There have been few studies on rotational noise, however, to clarify the generation mechanism and determine concrete methods for noise reduction. In the present study the spacings of the blades were changed and comparisons were made with a fan having equally spaced blades. The discrete frequency components were found to be suppressed in the fan with unequally spaced blades and the noise tended to become white noise if the blade spacing and blade setting angles were properly chosen. The instantaneous pressure change on the shroud due to blade passing was examined since it is closely related to the discrete frequency components of noise. By decomposing the measured pressure change in terms of a Fourier series the characteristics of rotational noise were analyzed and compared with simulation results obtained using a pressure wave model. The prediction of the rotational noise emitted by axial fans with unequally spaced blades is presented and found to agree well with the experimental results.
机译:旋转噪声是风扇发出的主要噪声源之一。这种噪声具有离散的频率分量,并且非常严重,以至于已经开发出许多降低噪声的方法。然而,很少有关于旋转噪声的研究来阐明产生机理并确定降低噪声的具体方法。在本研究中,叶片的间距发生了变化,并与具有等间距叶片的风扇进行了比较。人们发现,在叶片间距不相等的情况下,风扇中的离散频率分量会受到抑制,如果正确选择叶片间距和叶片设定角度,噪音会变成白噪声。由于叶片与噪声的离散频率分量密切相关,因此检查了由于叶片通过而引起的在护罩上的瞬时压力变化。通过按照傅立叶级数分解测得的压力变化,分析了旋转噪声的特性,并将其与使用压力波模型获得的模拟结果进行了比较。提出了具有不等距叶片的轴流风扇发出的旋转噪声的预测,并且发现与实验结果非常吻合。

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