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The ultra-low Reynolds number airfoil wake

机译:雷诺数超低的翼型尾流

摘要

Lift force and the near wake of an NACA 0012 airfoil were measured over the angle (α) of attack of 0°-90° and the chord Reynolds number (Re c ), 5.3 × 103-5.1 × 104, with a view to understand thoroughly the near wake of the airfoil at low- to ultra-low Re c . While the lift force is measured using a load cell, the detailed flow structure is captured using laser-Doppler anemometry, particle image velocimetry, and laser-induced fluorescence flow visualization. It has been found that the stall of an airfoil, characterized by a drop in the lift force, occurs at Re c ≤ 1.05 × 104 but is absent at Re c = 5.3 × 103. The observation is connected to the presence of the separation bubble at high Re c but absence of the bubble at ultra-low Re c, as evidenced in our wake measurements. The near-wake characteristics are examined and discussed in detail, including the vortex formation length, wake width, spanwise vorticity, wake bubble size, wavelength of K-H vortices, Strouhal numbers, and their dependence on α and Re c .
机译:在0°-90°的迎角(α)和弦雷诺数(Re c)为5.3×103-5.1×104的情况下测量了NACA 0012机翼的升力和近尾在低至超低Rec时彻底彻底地扫平翼型。当使用称重传感器测量升力时,使用激光多普勒风速仪,颗粒图像测速仪和激光诱导的荧光流可视化来捕获详细的流动结构。已经发现,以升力下降为特征的翼型失速发生在Re c≤1.05×104处,而在Re c = 5.3×103处不存在。观察与分离气泡的存在有关在高Re c时,但在超低Re c时没有气泡,这在我们的唤醒测量中得到了证明。研究并详细讨论了近尾流特性,包括涡旋形成长度,尾流宽度,翼展方向涡度,尾流气泡尺寸,K-H涡旋的波长,斯特劳哈尔数及其对α和Re c的依赖性。

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