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Bioinspired flexible sinusoidal corrugated airfoils for enhanced aerodynamic performance in flapping-wing flight

  • 21-10-2025
  • Research
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Abstract

This study introduces bioinspired flexible sinusoidal corrugated airfoils tailored for flapping-wing micro air vehicles (FWMAVs) and performs a fluid-structure interaction (FSI) analysis to evaluate their aerodynamic impact. The research focuses on the influence of corrugation morphology and flexibility on aerodynamic performance, comparing different airfoil configurations. Key findings include the superior thrust and lift performance of corrugated airfoils over flat plate airfoils, the crucial role of leading-edge and trailing-edge corrugations in generating lift and thrust, and the optimal aerodynamic performance achieved with convex corrugations at both edges. The study also discusses the limitations of 2D modeling and suggests future work involving 3D corrugated wings across a broader Reynolds number range. The insights provided aim to guide the rational design of high-performance, flexible corrugated flapping wings, offering significant performance enhancements for bio-inspired wing design.

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Title
Bioinspired flexible sinusoidal corrugated airfoils for enhanced aerodynamic performance in flapping-wing flight
Authors
Dan Hou
Tianxiang Gu
Zheng Zhong
Publication date
21-10-2025
Publisher
Springer Netherlands
Published in
Meccanica / Issue 12/2025
Print ISSN: 0025-6455
Electronic ISSN: 1572-9648
DOI
https://doi.org/10.1007/s11012-025-02056-5
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