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Distortion of anisotropic turbulence spectrum in the vicinity of aerofoil leading edge

机译:翼型前缘附近的各向异性湍流谱畸变

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This work numerically investigates the distortion of turbulence spectrum in the vicinity of aerofoil leading edge, which has a significant impact on the turbulence-aerofoil interaction noise. By applying different degrees of anisotropy in the incident turbulence spectrum, the effects of aerofoil thickness and angle of attack on distorted turbulence spectrum and interaction noise are investigated in the computational aeroacoustics simulations. It is shown that the turbulent eddies stretched in the streamwise direction have the slightest distortion of turbulence spectrum for symmetric aerofoils at zero incidence, compared with the isotropic case and the transversely stretched case. In addition, the increase of angle of attack has a significant impact on the anisotropic turbulence-aerofoil interaction noise, leading to the noise increase in the axially stretched case and noise reduction in the transversely stretched case. Finally, a modified far field noise prediction model is proposed by using the distorted turbulence spectrum in the vicinity of aerofoil leading edge, in order to account for the effect of real aerofoil geometries.
机译:这项工作通过数值研究了翼型前缘附近的湍流频谱畸变,这对湍流-翼型相互作用噪声具有重大影响。通过在入射湍流谱中应用不同程度的各向异性,在计算航空声学仿真中研究了翼型厚度和迎角对畸变湍流谱和相互作用噪声的影响。结果表明,与各向同性情况和横向拉伸情况相比,沿流向拉伸的湍流涡旋在零入射时具有最小的湍流谱畸变。另外,迎角的增加对各向异性湍流-翼型相互作用的噪声有显着影响,导致轴向拉伸情况下的噪声增加而横向拉伸情况下的噪声减小。最后,利用机翼前缘附近的湍流频谱,提出了一种修正的远场噪声预测模型,以考虑实际机翼几何形状的影响。

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