首页> 外文期刊>Journal of Vibration and Acoustics >Far-Field Radiation of Tip Aerodynamic Sound Sources in Axial Fans Fitted With Passive Noise Control Features
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Far-Field Radiation of Tip Aerodynamic Sound Sources in Axial Fans Fitted With Passive Noise Control Features

机译:装有被动噪声控制功能的轴流风扇尖端空气动力声源的远场辐射

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摘要

This study investigates the causal relationship between flow aerodynamics and radiated noise in low-speed axial fans. Using blades with three distinctive tip configurations, including two that were developed with a view to reducing noise emissions, the pressure fluctuations of the exhaust flow in the near field are correlated with the noise measured in the far field in an anechoic chamber. By varying the far-field microphone's azimuthal position, the study investigates the source signatures and directivity of noise sources distributed along the blade span. Several distinctive features in the noise directivity pattern are identified and correlated with the noise sources of aerodynamic origin dissected along the blade span. Utilizing the directional far-field autospectra of the three blade configurations in combination with the near-field/far-field cross-spectra, the emission characteristics of the aerodynamic sources are analyzed and their roles with respect to the overall acoustic signature of the fan are discussed. It is apparent that the ability to decompose the output of the aerodynamic noise sources in the near field is a useful tool in designing fans to achieve desirable low-noise targets. The results confirm that the tip-flow appendages influence the noise radiation pattern for the investigated family of fans. These phenomena are linked with the control of aerodynamic noise sources related to the tip-leakage vortex and the hub corner separation.
机译:本研究调查了低速轴流风机中空气动力学与辐射噪声之间的因果关系。使用具有三种独特尖端构造的叶片(包括为减少噪声排放而开发的两种叶片),将近场中排气流的压力波动与消声室中远场中测得的噪声相关联。通过改变远场麦克风的方位角位置,这项研究调查了沿叶片跨度分布的噪声源的信号特征和方向性。噪声方向性模式中的几个明显特征已被识别,并与沿叶片跨度剖析的空气动力学起源的噪声源相关。利用三种叶片配置的定向远场自谱结合近场/远场交叉谱,分析了空气动力源的排放特性,并分析了它们在风扇整体声学特征方面的作用。讨论过。显而易见的是,在设计风扇以实现理想的低噪声目标时,能够分解近场中空气动力噪声源的输出是有用的工具。结果证实,叶尖附件会影响所研究风扇系列的噪声辐射模式。这些现象与与叶尖泄漏涡流和轮毂角分离有关的空气动力学噪声源的控制有关。

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