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Aerodynamic mechanism of forces generated by twisting model-wing in bat flapping flight

机译:蝙蝠拍打飞行中扭曲模型机翼产生的力的气动机制

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The aerodynamic mechanism of the bat wing membrane along the lateral border of its body is studied. The twist-morphing that alters the angle of attack (AOA) along the span-wise direction is observed widely during bat flapping flight. An assumption is made that the linearly distributed AOA is along the span-wise direction. The plate with the aspect ratio of 3 is used to model a bat wing. A three-dimensional (3D) unsteady panel method is used to predict the aerodynamic forces generated by the flapping plate with leading edge separation. It is found that, relative to the rigid wing flapping, twisting motion can increase the averaged lift by as much as 25% and produce thrust instead of drag. Furthermore, the aerodynamic forces (lift/drag) generated by a twisting plate-wing are similar to those of a pitching rigid-wing, meaning that the twisting in bat flight has the same function as the supination/pronation motion in insect flight.
机译:研究了蝙蝠翼膜沿其身体侧面边界的空气动力学机理。在蝙蝠拍打飞行过程中,观察到沿翼展方向改变迎角(AOA)的扭曲变形。假设线性分布的AOA沿翼展方向。纵横比为3的板用于为蝙蝠翼建模。三维(3D)非稳态面板方法用于预测由前缘分离的挡板产生的空气动力。已经发现,相对于刚性机翼拍打,扭转运动可以使平均升力增加多达25%,并产生推力而不是阻力。此外,由扭曲板翼产生的空气动力(升力/阻力)与俯仰刚性翼相似,这意味着蝙蝠飞行中的扭曲与昆虫飞行中的旋后/旋前运动具有相同的功能。

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