阻力
后掠翼
唤醒
湍流
机械
雷诺数
还原(数学)
翼
湍流动能
阻力系数
升阻比
寄生阻力
升力诱导阻力
雷诺应力
攻角
物理
几何学
材料科学
数学
空气动力学
热力学
作者
Yufei Zhang,Chongyang Yan,Haixin Chen,Yuhui Yin
标识
DOI:10.1016/j.cja.2020.05.015
摘要
This paper studies the riblet drag reduction effect for an infinite swept wing under a low Reynolds number using a large-eddy simulation. The results show that the drag reduction ratio is not linear under different sweep angles. The maximum drag reduction ratio in this study is 9.5% for a wing with a 45° sweep angle. The local surface streamline angle and turbulence quantities are calculated to analyze the drag reduction mechanism. The results demonstrate that the riblets considerably suppress the Reynolds stresses above the wing upper surface, while the turbulence kinetic energy in the near wake is increased. A possible relaminarization phenomenon is observed at the middle part of the wing. Quasi-two-dimensional flow structures are observed near the wall, and a peak frequency is considered as the dominant frequency of the region.
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