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Numerical and experimental investigation of a beveled trailing-edge flow field and noise emission

机译:斜面后缘流场和噪声发射的数值和实验研究

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Efficient tools and methodology for the prediction of trailing-edge noise experience substantial interest within the wind turbine industry. In recent years, the Lattice Boltzmann Method has received increased attention for providing such an efficient alternative for the numerical solution of complex flow problems. Based on the fully explicit, transient, compressible solution of the Lattice Boltzmann Equation in combination with a Ffowcs-Williams and Hawking aeroacoustic analogy, an estimation of the acoustic radiation in the far field is obtained. To validate this methodology for the prediction of trailing-edge noise, the flow around a flat plate with an asymmetric 25 degrees beveled trailing edge and obtuse corner in a low Mach number flow is analyzed. Flow field dynamics are compared to data obtained experimentally from Particle Image Velocimetry and Hot Wire Anemometry, and compare favorably in terms of mean velocity field and turbulent fluctuations. Moreover, the characteristics of the unsteady surface pressure, which are closely related to the acoustic emission, show good agreement between simulation and experiment. Finally, the prediction of the radiated sound is compared to the results obtained from acoustic phased array measurements in combination with a beamforming methodology. Vortex shedding results in a strong narrowband component centered at a constant Strouhal number in the acoustic spectrum. At higher frequency, a good agreement between simulation and experiment for the broadband noise component is obtained and a typical cardioid-like directivity is recovered. (C) 2016 Elsevier Ltd. All rights reserved.
机译:预测后缘噪声的有效工具和方法在风力涡轮机行业中引起了极大的兴趣。近年来,格子Boltzmann方法已得到越来越多的关注,因为它为复杂流动问题的数值解提供了一种有效的替代方法。基于Lattice Boltzmann方程的完全明确的,瞬态的,可压缩的解,并结合Ffowcs-Williams和Hawking的航空声比,得出了远场声辐射的估计值。为了验证该方法对后缘噪声的预测,分析了低马赫数流中具有不对称25度斜角后缘和钝角的平板周围的流动。将流场动力学与从“粒子图像测速法”和“热线风速法”实验获得的数据进行比较,并在平均速度场和湍流波动方面进行比较。而且,与声发射密切相关的非稳态表面压力的特性在模拟和实验之间显示出良好的一致性。最后,将辐射声的预测与从声相控阵测量结合波束成形方法获得的结果进行比较。涡旋脱落导致强的窄带分量集中在声谱中恒定的Strouhal数上。在较高的频率下,宽带噪声分量的仿真与实验之间取得了良好的一致性,并且恢复了典型的心形指向性。 (C)2016 Elsevier Ltd.保留所有权利。

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