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Turbulence Intensity Effects on a Leading-Edge Separation Bubble of Flat Plate Wing at Low-Reynolds Numbers

机译:低雷诺数平板翼的前缘分离泡沫的湍流强度效应

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摘要

In this study, we experimentally investigate the effects of mainstream turbulence intensity (Ti) on a leading-edge separation bubble under low-Reynolds number (Rec) conditions range of 2.0 × 104 to 6.0 × 104. We used a flat plate to fix a separation point at the leading edge. Also, we visualized the behavior of the leading-edge separation bubble using the smoke wire technique and Particle Image Velocimetry (PIV) measurement. Furthermore, we measured the effect of Ti on the turbulent transition process in the separated shear layer using a hot-wire anemometer. The results indicate that the bypass transition for large Ti causes the turbulent transition, and so accelerates the reattachment of the separated shear layer. The results show that the bypass transition promotes the reattachment of the separated shear layer to maintain the leading-edge separation bubble on the upper surface even at high angles of attack, increasing the stall angle.
机译:在这项研究中,我们通过2.0×104至6.0×104的低雷诺数(REC)条件,实验研究主流湍流强度(TI)对前沿分离气泡的影响。我们使用平板固定在前沿处的分离点。而且,我们使用烟丝技术和粒子图像速度(PIV)测量来可视化前缘分离气泡的行为。此外,我们使用热线风速计测量了Ti对分离的剪切层中湍流过渡过程的影响。结果表明,大Ti的旁路转变导致湍流过渡,因此加速了分离的剪切层的重新连接。结果表明,旁路转换促进分离的剪切层的重新连接,以使上表面上的前缘分离气泡保持在高角度,增加失速角。

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