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Flapping Wing Aerodynamics: Progress and Challenges

AIAA Journal · 2008 · Vol. 46(9) · pp. 2136–2149
Max F. PlatzerKevin JonesJohn YoungJoseph C. S. Lai

Abstract

It is the objective of this paper to review recent developments in the understanding and prediction of flapping-wing aerodynamics. To this end, several flapping-wing configurations are considered. First, the problem of single flapping wings is treated with special emphasis on the dependence of thrust, lift, and propulsive efficiency on flapping mode, amplitude, frequency, and wing shape. Second, the problem of hovering flight is studied for single flapping wings. Third, the aerodynamic phenomena and benefits produced by the flapping-wing interactions on tandem wings or biplane configurations are discussed. Such interactions occur on dragonflies or on a recently developed micro air vehicle. The currently available two- and three-dimensional inviscid and viscous flapping-wing flow solutions are presented. It is shown that the results are strongly dependent on flapping frequency, amplitude, and Reynolds number. These findings are substantiated by comparison with the available experimental data.

Biomimetic flight and propulsion mechanismsFluid Dynamics and Turbulent FlowsAerospace Engineering and Energy SystemsAerospace engineeringAerodynamicsWingAeronauticsFlappingBird flightSwept wingAngle of attackEngineeringPhysics

Funding

  • Defense Advanced Research Projects Agency
Citations
538
FWCI
789.20
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74
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References
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Journal of Fluid Mechanics · 1998 · 1,262 citations
Vortical patterns in the wake of an oscillating airfoil
AIAA Journal · 1989 · 665 citations
A Computational Fluid Dynamic Study of Hawkmoth Hovering
Journal of Experimental Biology · 1998 · 466 citations
The control of flight force by a flapping wing: lift and drag production
Journal of Experimental Biology · 2001 · 727 citations
Unsteady Aerodynamic Performance of Model Wings at Low Reynolds Numbers
Journal of Experimental Biology · 1993 · 664 citations
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Flapping Wing Aerodynamics: Progress and Challenges · Scinovex