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首页> 外文期刊>Advanced Robotics: The International Journal of the Robotics Society of Japan >Dissection of a Flexible Wing's Performance for Insect-Inspired Flapping-Wing Micro Air Vehicles
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Dissection of a Flexible Wing's Performance for Insect-Inspired Flapping-Wing Micro Air Vehicles

机译:昆虫启发式拍打翼微型飞机的柔性翼性能剖析

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摘要

We present a computational study on the aerodynamic performance of flexible wings aiming to facilitate the design of insect-inspired flapping-wing micro air vehicles (FMAVs). First, we propose using a two-dimensional mechanical model for a flapping wing to help understand the mechanism underlying its unsteady deformation when exposed to aerodynamic and inertia forces. This is followed by comparative analyses of both flexible wings and fixed wings in flight. In particular, a 'swaying propulsion' mechanism is proposed to mimic the flapping of the winged insects, and a new concept of 'initial torsion angle' is introduced to provide an equivalent means to account for the asymmetry of the torsional stiffness of the thorax muscle during upstroke and downstroke flapping. Subsequently, the aerodynamic forces and power requirements for a bumblebee's wings under various flight conditions are systematically examined. Our results indicate that flexibility of the wings largely contributes to the high lifts and that gliding forces play a significant role in improving flight performance, suggesting that optimal design of the structure and flapping motions of wings could achieve improved efficiency in FMAVs. These studies promote a brand new design concept for future insect-inspired FMAVs.
机译:我们目前对柔性机翼的气动性能进行计算研究,旨在促进昆虫启发式扑翼微型飞行器(FMAVs)的设计。首先,我们建议对襟翼使用二维力学模型,以帮助理解当受到空气动力和惯性力时其不稳定变形的机理。接下来是对飞行中的柔性翼和固定翼的比较分析。特别是,提出了一种“摇摆推进”机制来模仿有翅昆虫的拍打,并且引入了“初始扭转角”的新概念,以提供一种等效方法来解决胸肌扭转刚度的不对称性在上冲程和下冲程拍打期间。随后,系统地研究了大黄蜂翅膀在各种飞行条件下的空气动力和动力需求。我们的结果表明,机翼的柔韧性在很大程度上有助于提高升力,而滑行力在改善飞行性能方面起着重要作用,这表明优化结构设计和机翼拍打动作可以提高FMAV的效率。这些研究为未来的昆虫启发式FMAV提倡了全新的设计理念。

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