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On the reductions of aerofoil-turbulence interaction noise through multi- wavelength leading edge serrations

机译:通过多波长前缘锯齿的空气湍流相互作用噪声减少

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This paper provides an experimental study into the use of multi-wavelength sinusoidal leading edge ( LE ) serrations for enhancing the aerofoil-broadband noise reductions. The noise reduction performances of multi-wavelength serration profiles introduced on a flat plate are compared against those generated by single-wavelength profiles when applied separately. The multi-wavelength leading edge serration is made in such a way that its maximum amplitude is kept same as that of each single-wavelength ones to be compared. The present study reveals that the dual-wavelength serrations provide higher noise reductions over a narrow band of frequencies as compared to single and triple wavelength ones. Further, it reveals that the noise reduction characteristics of dual-wavelength serrated airfoils are similar to the flat plates. It shows that the baseline plate generate higher noise radiations for all emission angles as compared to leading edge serrated plates, but the common feature among them is the downstream directivity. For the range of frequencies 0.9 to 5 kHz, the highest directivity is seen at an emission angle of 55~(°)for the baseline, while it occurs at 75~(°)for the serrated plates. The dual wavelength serrations generate lowest acoustic radiations as compared to single and triple ones for all the emission angles. Also, it is noticed that the radiation levels of the dual serrations decrease with increase in amplitude of the serration, which shows that the longer dual serrations generate lowest acoustic radiations. Thus, the present study illustrates that the dual wavelength leading edge serrations act as the best passively modified serration profiles for achieving the highest noise reductions over a wide range of frequencies as compared to single and triple wavelength ones.
机译:本文提供了一种实验研究,用于使用多波长正弦的前缘(LE)锯齿,以提高机翼宽带噪声减少。将在平板上引入的多波长锯齿分布的降噪性能与单个波长型在分开施加时比较的那些。使得多波长前沿锯齿使得其最大幅度保持与待比较的每个单波长的最大幅度相同。本研究表明,与单个和三重波长的相比,双波长锯齿在窄频带上提供更高的噪声减少。此外,它揭示了双波长锯齿状翼型的降噪特性类似于平板。它表明,与前沿锯齿板相比,基线板为所有排放角产生较高的噪声辐射,但它们之间的共同特征是下游方向性。对于0.9至5 kHz的频率范围,在基线55〜(°)的排放角度的最高方向性,而在锯齿状板的75〜(°)上发生。与所有发射角度相比,双波长锯齿产生最低的声辐射。此外,注意到,双锯齿的辐射水平随着锯齿的幅度的增加而降低,这表明较长的双锯齿产生最低声辐射。因此,本研究示出了双波长前缘锯齿作为最佳被动修改的锯齿分布,其与单个和三波长相比,用于在宽范围的频率上实现最高噪声减少。

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