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Three-dimensional wake dynamics of a blunt and divergent trailing edge airfoil

机译:钝角和发散后缘翼型的三维尾流动力学

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The wake dynamics of an airfoil with a blunt and divergent trailing edge is investigated experimentally at relatively high Reynolds. The near wake topology is examined versus different levels of free stream turbulence FST and angles of attack, while the downstream wake evolution is characterized at various levels of FST. The FST is found to have a significant effect on the shapes of turbulence profiles and on the downstream location where the flow reaches its quasi-asymptotic behavior. Streamwise vortices (ribs) corresponding to spanwise variations of turbulence quantities are identified in the near wake region. Simultaneous multi-point hot-wire measurements indicate that their spatial arrangement is similar to Williamson's (Ann Rev Fluid Mech 29:477-539, 1996) mode B laminar wake flow topology. The results suggest that the statistical spanwise distribution of ribs is independent of FST effects and angle of attack as long as the vortex shedding Strouhal number remains approximately similar.
机译:在相对较高的雷诺兹条件下,通过实验研究了具有钝角和后缘的翼型的尾流动力学。针对不同水平的自由流湍流FST和迎角对近尾流拓扑进行了检查,而在不同水平的FST下表征了下游尾流的演变。研究发现,FST对湍流轮廓的形状以及流动达到其准渐近行为的下游位置具有重大影响。在近尾流区域识别出与湍流量的展向方向变化相对应的沿流方向的涡流(肋)。同时进行的多点热线测量表明,它们的空间布置与Williamson(Ann Rev Fluid Mech 29:477-539,1996)模式B层流尾流拓扑相似。结果表明,只要涡旋脱落的Strouhal数保持近似相似,肋骨的统计翼展方向分布就不受FST效应和攻角的影响。

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