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Experimental investigation of wing flexibility on force generation of a hovering flapping wing micro air vehicle with double wing clap-and-fling effects

机译:机翼柔韧性对具有双翼拍打和飞行作用的悬停扑翼微型飞机产生力的实验研究

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Experimental investigation of wing flexibility on vertical thrust generation and power consumption in hovering condition for a hovering Flapping-Wing Micro Air Vehicle, namely FlowerFly, weighing 14.5 g with a 3 g onboard battery and having four wings with double wing clap-and-fling effects, was conducted for several wing configurations with the same shape, area, and weight. A data acquisition system was set up to simultaneously record aerodynamic forces, electrical power consumption, and wing motions at various flapping frequencies. The forces and power consumption were measured with a loadcell and a custom-made shunt circuit, respectively, and the wing motion was captured by high-speed cameras. The results show a phase delay of the wing tip displacement observed for wings with high flexible leading edge at high frequency, resulting in less vertical thrust produced when compared with the wings with less leading edge flexibility at the same flapping frequency. Positive wing camber was observed during wing flapping motion by arranging the wing supporting ribs. Comparison of thrust-to-power ratios between the wing configurations was undertaken to figure out a wing configuration for high vertical thrust production but less power consumption.
机译:悬停式翼展式微型飞行器FlowerFly的机翼在悬停条件下垂直推力产生和功率消耗的实验研究,重量为14.5 g,带有3 g机载电池,并且具有四个具有双翼拍打和飞行效果的机翼对具有相同形状,面积和重量的几种机翼构型进行了试验。建立了一个数据采集系统,以同时记录各种拍击频率下的空气动力,电力消耗和机翼运动。分别通过称重传感器和定制的分流电路测量力和功耗,并通过高速摄像机捕获机翼运动。结果表明,与在相同拍动频率下具有较小前缘挠性的机翼相比,在高频下具有高挠性前缘的机翼观察到的翼尖位移的相位延迟,导致产生的垂直推力较小。通过布置机翼支撑肋,在机翼拍打运动期间观察到正机翼外倾角。进行机翼构型之间的推力/功率比的比较,以找出机翼构型,以产生较高的垂直推力,但消耗的功率更少。

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