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Control of laminar separation bubble over wind turbine airfoil using partial flexibility on suction surface

机译:使用吸力表面的部分柔性控制风轮机翼片上的层流分离气泡

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摘要

In order to suppress the laminar separation bubble and its negative effects on airfoil at low Reynolds numbers, a partially flexible membrane was utilized on the suction surface of a NACA4412 wind turbine airfoil. Location of the partially flexible membrane was decided between x/c = 0.2 and x/c = 0.7 according to experimental results. This partially flexible airfoil was tested using various experimental methods at Re = 2.5 x 10(4), Re = 5 x 10(4), Re = 7.5 x 10(4). Utilizing the partially flexible membrane over the suction surface of the airfoil enabled the bubble to be mitigated or suppressed, therefore the aerodynamic performance improved with lift enhancement and drag reduction. The values of turbulence kinetic energy and Reynolds stress decreased with the partial flexibility, as a result of reducing fluctuations in the flow. With the interaction of the partially flexible membrane and the bubble; the vortices due to the bubble caused the membrane to deform and vibrate. Vibration mode numbers of the membrane deformation were high at lower incidences due to the small vortices, whilst the mode numbers were reduced at higher incidences in the presence of growing vortices. Meanwhile, the membrane caused the vortices to damp down. However, it was observed that the effectiveness of the membrane was decreased when Reynolds number increased. (C) 2018 Elsevier Ltd. All rights reserved.
机译:为了抑制层状分离气泡及其在低雷诺数下对机翼的负面影响,在NACA4412风力涡轮机机翼的吸力表面上使用了部分柔性膜。根据实验结果,将部分柔性膜的位置确定在x / c = 0.2和x / c = 0.7之间。使用多种实验方法测试了这种部分柔性的机翼,其Re = 2.5 x 10(4),Re = 5 x 10(4),Re = 7.5 x 10(4)。在翼型的吸力表面上利用部分柔性的膜使气泡得以减轻或抑制,因此,空气动力学性能随着升力的增加和阻力的减小而得以改善。湍流动能和雷诺应力的值随着部分挠性的降低而减小,这是由于减小了流量波动的结果。随着部分柔性膜与气泡的相互作用;气泡引起的涡流使膜变形和振动。由于涡旋小,膜变形的振动模数较高,发生率较低,而存在涡旋的情况下,模数较高的情况下,模数减小。同时,膜导致涡流减弱。然而,观察到,当雷诺数增加时,膜的有效性降低。 (C)2018 Elsevier Ltd.保留所有权利。

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