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首页> 外文期刊>Journal of Sound and Vibration >An experimental investigation on the tip leakage noise in axial-flow fans with rotating shroud
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An experimental investigation on the tip leakage noise in axial-flow fans with rotating shroud

机译:旋转护罩轴流风机叶尖泄漏噪声的实验研究

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摘要

The tip leakage noise generated by a shrouded rotor of an axial-flow fan has been experimentally studied. The measurements have been taken at high flow rate and at the design point in a hemi-anechoic chamber, at constant rotational speed and during speed ramps. A test plenum designed according to ISO 10302 has been employed to modify the operating conditions and different inlet configurations, ducted and unducted with standard and reduced tip gap, have been considered. The basic features of the inflow have been studied by means of aerodynamic measurements taken upstream of the rotor. To separate the noise generating mechanisms from the acoustic propagation effects, the acoustic response function of the test configuration has been computed employing the spectral decomposition method, and then it has been compared with the velocity-scaled, constant-Strouhal number SPL. In this way, the noise components related to the tip leakage flow have been identified and their connection with geometry have been highlighted. The broadband part of the spectra and the peaks related to the tip leakage flow are affected by the same propagation effects, but show a different dependence on the rotational speed and on the operating point. The upstream geometry affects the radiated noise much more than the performance and even a strong reduction in the tip-gap cannot completely eliminate the related noise. (C) 2016 Elsevier Ltd. All rights reserved.
机译:实验研究了由轴流风扇的带罩转子产生的叶尖泄漏噪声。测量是在高流速下,在半消声室中的设计点,恒定转速下以及在速度上升期间进行的。已采用根据ISO 10302设计的测试增压室来更改操作条件,并考虑了采用标准和减小的尖端间隙进行管道输送和非管道输送的不同进气口配置。已经通过在转子上游进行的空气动力学测量研究了流入的基本特征。为了将噪声产生机制与声学传播效应分开,已使用频谱分解方法计算了测试配置的声学响应函数,然后将其与速度缩放的恒定Strouhal数SPL进行了比较。以此方式,已经识别出与尖端泄漏流有关的噪声成分,并突出了它们与几何形状的联系。光谱的宽带部分和与尖端泄漏流有关的峰受相同的传播效应影响,但对转速和工作点的依赖性不同。上游几何形状对辐射噪声的影响远不止性能,即使大幅减小尖端间隙也无法完全消除相关噪声。 (C)2016 Elsevier Ltd.保留所有权利。

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