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首页> 外文期刊>Journal of Fluids and Structures >Force production and asymmetric deformation of a flexible flapping wing in forward flight
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Force production and asymmetric deformation of a flexible flapping wing in forward flight

机译:柔性襟翼在前向飞行中的力产生和不对称变形

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摘要

Insect wings usually are flexible and deform significantly under the combined inertial and aerodynamic load. To study the effect of wing flexibility on both lift and thrust production in forward flight, a two-dimensional numerical simulation is employed to compute the fluid-structure interaction of an elastic wing section translating in an inclined stroke plane while pitching around its leading ledge. The effects of the wing stiffness, mass ratio, stroke plane angle, and flight speed are considered. The results show that the passive pitching due to wing deformation can significantly increase thrust while either maintaining lift at the same level or increasing it simultaneously. Another important finding is that even though the wing structure and actuation kinematics are symmetric, chordwise deformation of the wing shows a larger magnitude during upstroke than during downstroke. The asymmetry is more pronounced when the wing has a low mass ratio so that the fluid-induced deformation is significant. Such an aerodynamic cause may serve as an additional mechanism for the asymmetric deformation pattern observed in real insects.
机译:昆虫的翅膀通常是柔性的,在惯性和空气动力的共同作用下会发生明显变形。为了研究机翼柔性对前向飞行中升力和推力产生的影响,采用二维数值模拟来计算弹性机翼截面在倾斜冲程平面内平移而围绕其前缘倾斜时的流固耦合。考虑机翼刚度,质量比,冲程平面角和飞行速度的影响。结果表明,机翼变形引起的被动俯仰可以显着增加推力,同时将升力保持在相同水平或同时增加。另一个重要发现是,尽管机翼结构和致动运动学是对称的,但机翼的弦向变形在上冲程期间显示出比下冲程更大的幅度。当机翼的质量比较低时,不对称性会更加明显,从而导致流体变形。这样的空气动力学原因可以用作在真实昆虫中观察到的不对称变形模式的附加机制。

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