扑 旋 翼 刚 度 和 翼 梢 形 状 对 气 动 升 力 和 效 率 的 影 响

Yuanyuan He*, Hang Zhang, Qichen Wang, Xuan Yang

*此作品的通讯作者

科研成果: 期刊稿件文章同行评审

2 引用 (Scopus)

摘要

The influence of stiffness distribution and shape of a Flapping Wing Rotor(FWR)on aerodynamic lift and efficiency is significantly different from that of the traditional insect like Flapping Wing(FW)in vertical take-off and landing and hovering. An experimental study was carried out to evaluate the effect of stiffness and wingtip shape of the FWR on its aerodynamic lift and efficiency in hovering. Based on a conventional rectangular shape,12 wing test samples with different structural configurations and wingtip sweep angles were made,and were compared with a sample of dragonfly-like wing shape. Effect of spanwise and chordwise stiffness,wing tip stiffness and wing tip shape on motion,aerodynamic lift and efficiency of flapping wing rotor measured and analyzed through experimental tests. The test results show that chordwise stiffness and wingtip shape have significant effect on the FWR motion. An optimal spanwise and chordwise stiffness distribution to support the membrane skin and a dragonfly-like wingtip shape can increase the FWR aerodynamic lift and efficiency significantly. An FWR test model of 30. 1 g was used in the study as an example. With an input voltage of 3. 4 V,the test sample that was finally evolved into an optimal bionic wing produced an average lift(49. 6 g),which is 74% higher than the original rectangular wing,and the lift efficiency is increased from 3. 5 g/W to 5. 9 g/W. This research is of great significance to improving the aerodynamic performance of FWR-MAVs.

投稿的翻译标题Effect of stiffness and wingtip shape on aerodynamic lift and efficiency of flapping wing rotors
源语言繁体中文
文章编号127779
期刊Hangkong Xuebao/Acta Aeronautica et Astronautica Sinica
44
12
DOI
出版状态已出版 - 25 6月 2023

关键词

  • FWR-MAV
  • aerodynamic lift
  • bionic flapping wing rotor
  • flapping wing rotor stiffness
  • lift experiment
  • wingtip shape

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