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A Pigeon-inspired design for a biomimetic flapping wing

机译:一种仿古设计的仿生扑翼

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摘要

As an effort to explore the potential implementation of wing feather separation and lead-lagging motion to a flapping wing, a biomimetic flapper with separable outer wings has been designed and demonstrated. The artificial wing feather separation is implemented to the biomimetic wing by dividing the wing into inner and outer wings. The features of flapping, lead-lagging and feather separation of the flapper are captured by a high-speed camera for evaluation. The performance of the biomimetic flapper with separable outer wings is compared with that of a flapper with inseparable outer wings in terms of lift and thrust production. For low flapping frequency ranging from 2.47 Hz to 3.90 Hz, the biomimetic flapper shows higher thrust and lift generation capability, which is demonstrated from a series of experiments. The experiments show that the outer parts of the separable wing are able to deform largely resulting smaller amount of drag production during upstroke, while still producing relatively larger lift and thrust during downstroke.
机译:作为探索翼羽分离和铅滞后运动的潜在实现,设计并证明了具有可分离外翼的仿生挡板的潜在实施。通过将机翼划分为内部和外翼来实现人造翼羽的分离。通过用于评估的高速相机捕获挡板,铅滞和羽毛分离的特征。将具有可分离外部翼的仿生挡板的性能与升降和推力制作方面具有不可分割的外翼的挡板的性能。对于低拍打频率,从2.47 Hz到3.90 Hz,仿生瓣显示出较高的推力和提升能力,这是从一系列实验中展示的。实验表明,可分离翼的外部部件能够在很大程度上变形,从而在上行程期间的拖曳量较小,同时在下行程期间仍产生相对较大的升力和推力。

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