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首页> 外文期刊>Journal of Sound and Vibration >Influence of boundary layer flow suction on trailing edge noise generation
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Influence of boundary layer flow suction on trailing edge noise generation

机译:边界层流动抽吸对尾噪声产生的影响

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The effect of uniform inclined flow suction on an equilibrium turbulent boundary layer developing over a flat plate is experimentally investigated for aeroacoustic purposes. Simultaneous measurements of streamwise velocity with hot-wire anemometry, and surface pressure fluctuations using flush-mounted microphones were performed at various locations downstream of the flow control treatment. The paper discusses the effects of flow suction on the turbulent quantities describing the boundary layer, and the associated hydrodynamic pressure field to assess the effects of flow suction on trailing edge noise generation. Two parameters were varied, the inclination of the flow suction velocity (alpha) and the flow suction severity (sigma). The former is the angle of flow suction with respect to the free-stream flow (alpha = 30 degrees, 50 degrees, 70 degrees and 90 degrees), while the latter is the ratio of momentum deficit within the boundary layer to the momentum of flow suction (sigma = 2.5-9.1). Flow suction reduces the height of the boundary layer, which results in an increase of mean shear. The flow energy content within the boundary layer is reduced by suction with the most significant amount of reduction is observed within the logarithmic region. A moderate energy increase is observed in the buffer layer. These effects strengthen with growing suction severity until sigma approximate to 6. Above this point, no further changes are observed in the turbulent quantities. The reduction in the size and energy content of the logarithmic layer is responsible for the reduction of the surface pressure fluctuations at mid-frequencies, while the increased energy content in the buffer layer increases the pressure spectral content at high frequencies. The estimates of the far-field trailing edge noise show that flow suction leads to a noise reduction at mid-frequencies with penalties observed at low and high frequencies. Flow suction at an angle of alpha = 70 degrees and sigma approximate to 6 exhibits the best performance in reducing the estimated far-field overall noise levels. Above this point, further increasing the flow suction severity does not provide any additional noise reduction benefits. (C) 2020 Elsevier Ltd. All rights reserved.
机译:均匀倾斜流抽吸的平衡湍流边界层显影过的平板上的效果通过实验研究了空气声学目的。在流量控制处理下游的各个位置进行使用热线风速测量的流动速度的同时测量使用嵌合式麦克风的表面压力波动。本文讨论了流动抽吸对描述边界层的湍流量的影响,以及相关的流体动力学压力场,以评估流动吸力对后缘噪声产生的影响。改变了两个参数,流动速度(α)的倾斜度和流动式吸力度(Sigma)。前者是流动抽吸相对于自由流流(α= 30度,50度,70度和90度),而后者是边界层内的动量缺陷与流动的比率吸入(Sigma = 2.5-9.1)。流动抽吸降低了边界层的高度,这导致平均剪切的增加。通过在对数区域内观察到最大量的减少,在对数区域观察到最大量的减少,减小了边界层内的流动能量含量。在缓冲层中观察到中等能量增加。这些效果加强了吸力度严重程度,直到Sigma近似为6.在此之上,在湍流量中没有观察到进一步的变化。对数层的尺寸和能量含量的降低负责降低中频的表面压力波动,而缓冲层中的增加的能量含量增加了高频的压力谱含量。远场后缘噪声的估计表明,流量吸力导致中频的降噪,在低频和高频下观察到的罚球。以α= 70度的角度流动抽吸和Σ近似为6,在降低估计的远场整体噪声水平时表现出最佳性能。在此之上,进一步增加流量吸力度严重程度不提供任何额外的降噪益处。 (c)2020 elestvier有限公司保留所有权利。

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