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Measurement of tonal-noise characteristics and periodic flow structure around NACA0018 airfoil

机译:测量NACA0018机翼周围的音调噪声特征和周期性流动结构

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摘要

The characteristics of tonal noise and the variations of flow structure around NACA0018 airfoil in a uniform flow are studied by means of simultaneous measurement of noise and velocity field by particle-image velocimetry to understand the generation mechanism of tonal noise. Measurements are made on the noise characteristics, the phase-averaged velocity field with respect to the noise signal, and the cross-correlation contour of velocity fluctuations and noise signal. These experimental results indicate that the tonal noise is generated from the periodic vortex structure on the pressure surface of the airfoil near the trailing edge of the airfoil. It is found that the vortex structure is highly correlated with the noise signal, which indicates the presence of noise-source distribution on the pressure surface. The vorticity distribution on the pressure surface breaks down near the trailing edge of the airfoil and forms a staggered vortex street in the wake of the airfoil.
机译:通过同时测量噪声和速度场的粒子图像测速技术,研究了均匀流下NACA0018机翼周围声调噪声的特征和流动结构的变化,以了解声调噪声的产生机理。测量噪声特性,相对于噪声信号的相位平均速度场以及速度波动和噪声信号的互相关轮廓。这些实验结果表明,音调噪声是由机翼后缘附近的机翼压力表面上的周期性涡旋结构产生的。发现涡旋结构与噪声信号高度相关,这表明在压力表面上存在噪声源分布。压力面上的涡度分布在翼型后缘附近破裂,并在翼型后形成交错的涡流道。

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  • 来源
    《Experiments in Fluids》 |2006年第3期|482-490|共9页
  • 作者

    T. Nakano; N. Fujisawa; S. Lee;

  • 作者单位

    Department Mechanical Engineering Niigata University 8050 Ikarashi 2 950-2181 Niigata Japan;

    Department Mechanical Engineering Niigata University 8050 Ikarashi 2 950-2181 Niigata Japan;

    Department Mechanical Engineering Inha University 253 Yonghyun-Dong Nam-Ku 402-751 Incheon Korea;

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