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首页> 外文期刊>Aerospace science and technology >Effect of bio-inspired sinusoidal leading-edges on wings
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Effect of bio-inspired sinusoidal leading-edges on wings

机译:受生物启发的正弦前沿对机翼的影响

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Observations of maneuvering humpback whales have revealed unique hydrodynamic performance hypothesized to be a result of tubercles on the leading-edge of the whales' pectoral flippers. Inspired by this biological observation, it is shown sinusoidal leading-edge wings prevent the dramatic loss of lift caused by stall and instead generate a gradual decrease in lift with as much as 25% higher lift in the poststall regime. Six different wing geometries, smooth and sinusoidal leading-edge models, swept and unswept configurations, were tested at angles of attack of -2 to 24 degrees at Reynolds numbers between 100,000 and 500,000. Oil surface flow visualization and CFD results reveal variations in flow phenomena between the smooth and sinusoidal leading-edge configurations. Published by Elsevier Masson SAS.
机译:观察到的机动座头鲸显示出独特的流体动力学性能,据推测是由于鲸的胸鳍尖端上的结节所致。受此生物学观察的启发,显示正弦曲线的前翼可防止失速引起的升力急剧损失,而会导致升力逐渐降低,在失速状态下升力高达25%。在100,000至500,000的雷诺数下,在-2至24度的迎角下测试了六种不同的机翼几何形状,平滑和正弦的前沿模型,扫掠和未扫掠构型。油面流动可视化和CFD结果揭示了平滑和正弦前沿配置之间的流动现象变化。由Elsevier Masson SAS发布。

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