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Experimental Study on Aerodynamic Performance of Flapping Wing with One-Way Holes/Gaps

机译:单向孔/间隙拍翼空气动力性能的试验研究

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Gaps between feathers can be observed when some birds are flying. They can control the opening and closing of gaps to achieve the goal of good aerodynamic performance. The effects of the wing gaps on aerodynamic performance is investigated by experimental study. Firstly, a kind of flapping wing with one-way holes is designed and tested. The holes are connected by hinge, which is open during the up-stroke process and close during the down-stroke process. One-way holes can increase the lift significantly. However, the hinge connection makes the movement process less continuous. And there's more resistance because the windward area is increased by hinged holes. Further on. the method was improved by using one-way deforming characteristics of bird feathers. The goose feathers are used as a covering skin of flapping wing, which can have continuous opening and closing gaps, making the flapping process more smoothly and getting smooth aerodynamic characteristics. The results show that the one-way holes/gaps flapping wing can effectively increase the lift and reduce the power consumption. The using of natural feathers as flapping wing covering skin is a conducive way to improve the aerodynamic performance.
机译:当有些鸟类飞行时,可以观察到羽毛之间的空隙。他们可以控制差距的开放和关闭,以实现良好的空气动力学性能的目标。实验研究研究了机翼间隙对空气动力学性能的影响。首先,设计并测试了一种带单向孔的拍打翼。孔通过铰链连接,铰链在上行过程中打开并且在下行过程中关闭。单向孔可以显着增加电梯。然而,铰链连接使得运动过程不太连续。并且由于铰接孔增加了迎风区域的阻力。进一步。通过使用鸟羽的单向变形特性来改善该方法。鹅羽毛用作拍翼的覆盖性皮肤,这可以具有连续的开启和关闭间隙,使拍打过程更平滑并且获得平稳的空气动力学特性。结果表明,单向孔/间隙拍翼可以有效地提高升力并降低功耗。使用天然羽毛作为拍打翅膀覆盖皮肤是一种提高空气动力学性能的有利方式。

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