Prediction of broadband noise generated from low-pressure fan based on experimental pressure power spectral density

IF 0.3 4区 工程技术 Q4 ACOUSTICS Noise Control Engineering Journal Pub Date : 2022-11-01 DOI:10.3397/1/377047
Soichi Sasaki
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Abstract

Low-pressure fans are widely used in industrial machinery as well as in home-use electrical apparatus. Consequently, their improved aerodynamic performance and reduced fan noise are important technical issues. This study developed a methodology for the experimental determination of the pressure power spectral density (PSD) of a flat plate based on a wind tunnel experiment and the broadband noise generated from a low-pressure fan predicted based on its pressure PSD. In the proposed methodology, the broadband noise of the fan was evaluated by superimposing the predicted broadband noise of the divided blade elements in the impeller. Using this methodology, the broadband noise of the objective fan could be predicted via the wind tunnel experiment and the representative internal flow properties of the fan such as relative velocity and deviation angle. Moreover, the relationship between the broadband noise in the design and off-design conditions and the flow regime were analyzed by referring to the parameters for the prediction. In the off-design low flow rate condition, the flow around the impeller became a swirling flow owing to the increasing back pressure, and the fan noise in the off-design condition increased, especially in the low-frequency domain. The broadband noise was generated by leakage flow in the vicinity of the leading edge at the blade tip which interfered with the adjacent blade. Therefore, the mechanism of broadband noise generation in the off-design condition distinguished the mechanism of trailing edge noise. As indicated by the results of the predicted broadband noise comparison, the suggested experimental methodology best represented the measured noise spectra in the design condition. The experimental pressure PSD showed that the broadband noise in the design condition was affected by the trailing edge noise generated at the blade tip.
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基于实验压力功率谱密度的低压风机宽带噪声预测
低压风机广泛应用于工业机械以及家用电器中。因此,它们改善的空气动力学性能和降低的风扇噪音是重要的技术问题。本研究开发了一种基于风洞实验确定平板压力功率谱密度(PSD)的实验方法,以及基于其压力PSD预测的低压风机产生的宽带噪声。在所提出的方法中,通过叠加叶轮中分割叶片元件的预测宽带噪声来评估风扇的宽带噪声。利用该方法,可以通过风洞实验和具有代表性的风机内部流动特性(如相对速度和偏转角)来预测目标风机的宽带噪声。此外,通过参考预测参数,分析了设计和非设计条件下的宽带噪声与流态之间的关系。在偏离设计的低流量条件下,由于背压的增加,叶轮周围的流动变成了旋流,并且在偏离设计条件下风扇噪声增加,尤其是在低频域。宽带噪声是由叶尖前缘附近的泄漏流干扰相邻叶片而产生的。因此,在偏离设计条件下产生宽带噪声的机制区别于后缘噪声的机制。正如预测的宽带噪声比较结果所表明的那样,所建议的实验方法最好地代表了设计条件下测量的噪声谱。实验压力PSD表明,设计工况下的宽带噪声受到叶尖后缘噪声的影响。
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来源期刊
Noise Control Engineering Journal
Noise Control Engineering Journal 工程技术-工程:综合
CiteScore
0.90
自引率
25.00%
发文量
37
审稿时长
3 months
期刊介绍: NCEJ is the pre-eminent academic journal of noise control. It is the International Journal of the Institute of Noise Control Engineering of the USA. It is also produced with the participation and assistance of the Korean Society of Noise and Vibration Engineering (KSNVE). NCEJ reaches noise control professionals around the world, covering over 50 national noise control societies and institutes. INCE encourages you to submit your next paper to NCEJ. Choosing NCEJ: Provides the opportunity to reach a global audience of NCE professionals, academics, and students; Enhances the prestige of your work; Validates your work by formal peer review.
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