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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Roughness Effects on the Formation of a Leading Edge Vortex
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Roughness Effects on the Formation of a Leading Edge Vortex

机译:APS-流体动力学APS分部第70届年会-事件-粗糙度对前涡旋形成的影响

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摘要

Microscopic scales cover the wings of Monarch butterflies, creating a patterned surface that acts as a natural energy capture mechanism. This patterning is thought to delay the growth of the leading edge vortex (LEV) produced by the flapping motion of a wing. Increased skin friction caused by the scales leads to a weaker LEV being shed into the butterfly's wake, lessening drag and increasing flight efficiency. To test how this roughness effects LEV formation, a plate of random roughness was designed in SolidWorks and printed on the Objet 30 Pro 3D printer. A 2x3x5 cubic foot tow tank was used to test the rough plate at Reynold's numbers of 1500, 3000, and 6000 (velocities of 8, 16, and 32 mm/s) at an angle of attack of 45 degrees. Images were captured of the LEV generated when the plate was towed upwards through the particle-seeded flow. These images were used to determine the XY velocity of the particles using a technique called Digital Particle Image Velocimetry (DPIV). Codes written in MATLAB were used to track and measure the strength of the LEV. Circulation values for the randomly-rough plate were then compared to the same values generated in a previous experiment that used a smooth plate and a grooved plate to determine the effect of the patterning on vortex development.
机译:微观的鳞片覆盖了帝王蝶的翅膀,形成了一个图案化的表面,可以作为自然的能量捕获机制。这种图案被认为延迟了由机翼的拍打运动产生的前缘涡旋(LEV)的生长。鳞片引起的皮肤摩擦增加,导致LEV进入蝶尾的能力减弱,从而减轻了阻力并提高了飞行效率。为了测试这种粗糙度如何影响LEV的形成,在SolidWorks中设计了一块随机粗糙度的板,并将其印刷在Objet 30 Pro 3D打印机上。使用2x3x5立方英尺的拖曳槽以雷诺数1500、3000和6000(速度分别为8、16和32 mm / s)以45度的迎角测试粗糙板。捕获了当板通过颗粒播散的流向上拖曳时产生的LEV的图像。使用称为数字粒子图像测速技术(DPIV)的技术,这些图像用于确定粒子的XY速度。用MATLAB编写的代码用于跟踪和测量LEV的强度。然后将随机粗糙板的循环值与在先前实验中生成的相同值进行比较,该实验使用光滑板和带凹槽的板来确定图案对涡旋发展的影响。

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