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Experimental Aeroacoustic Studies on Improved Tip Configurations for Passive Control of Noise Signatures in Low-Speed Axial Fans

机译:用于改进的低速轴流风扇被动控制噪声特征的叶尖配置的航空声学实验

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This paper presents the findings of an investigation on the use of several blade-tip configurations (modified by the addition of various end plates at the blade tip) for passive noise control in industrial fans. Utilizing an experimental technique developed to investigate noise sources along the radius of the blades, together with cross-correlation and coherence analyses of the near field and far field, the modified blade-tip configurations are shown to reduce the rotor-only aeroacoustic signature of the fan as a direct consequence of changes induced in tip-leakage flow behavior. These changes in the nature of flow mechanisms in the region of the blade tip are correlated with the spanwise noise sources, and their role in the creation of overall acoustic emissions is thus clarified. The tip-leakage flow structures are analyzed to identify their contribution to overall noise and interaction with other noise sources. Coherence spectra are also analyzed to investigate the relevance of the noise sources. The cross-correlations reveal distinctive acoustic signatures that are described in detail. The methodology has been demonstrated to be effective in identifying (ⅰ) the blade-tip configuration with the best acoustic performance, and (ⅱ) other significant noise sources along the blade span. The modified tip configurations are shown to have a significant effect on the multiple vortex behavior of leakage flow, especially with respect to the near-wall fluid-flow paths on both blade surfaces. The reduction in fan acoustic emissions is assessed and correlated with the control of tip-leakage flows achieved by the modified blade tips.
机译:本文介绍了使用几种叶梢配置(通过在叶梢处添加各种端板进行修改)来进行工业风扇被动噪声控制研究的结果。利用开发的实验技术研究沿叶片半径的噪声源,以及近场和远场的互相关和相干分析,显示了改进的叶尖构造可减少仅转子的空气声特征。风扇是叶尖泄漏流动行为引起的变化的直接结果。叶片尖端区域中流动机制的性质的这些变化与翼展方向的噪声源相关,因此,它们在产生整体声发射中的作用得以阐明。分析尖端泄漏流结构,以识别其对整体噪声的影响以及与其他噪声源的相互作用。还对相干光谱进行了分析,以研究噪声源的相关性。互相关揭示了详细描述的独特声学特征。事实证明,该方法可有效识别(ⅰ)具有最佳声学性能的叶尖配置,以及(ⅱ)沿叶片跨度的其他重要噪声源。修改后的尖端构造显示出对泄漏流的多重涡流行为具有显着影响,特别是对于两个叶片表面上的近壁流体流动路径而言。评估风扇声发射的减少,并将其与通过改进的叶尖实现的叶尖泄漏流的控制相关联。

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