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A review on fluid dynamics of flapping foils

Ocean Engineering · 2019 · Vol. 195 · pp. 106712–106712
Xia WuXiantao ZhangXinliang TianXin LiWenyue Lu

Abstract

The fluid dynamics of flapping foils are reviewed in this article. A very wide range of researches are conducted for the two-dimensional flapping foil which has a relatively simple geometry. However, for a three-dimensional foil, the aspect ratio and shape take effects and completely distinct fluid dynamics are revealed compared with the two-dimensional one. This review gives a summary on the experimental techniques and numerical methods used in the researches on the fluid dynamics of flapping foils. The effects of some key parameters including Reynolds number, reduced frequency, flapping amplitude and three-dimensional effect on the fluid dynamics of flapping foils are reviewed. The researches focusing on the wake structures, aero/hydrodynamic characteristics and energy harvesting efficiency are discussed. Finally, some conclusions are drawn and potential future research directions are recommended.

Biomimetic flight and propulsion mechanismsWind Energy Research and DevelopmentAerospace Engineering and Energy SystemsFlappingReynolds numberFOIL methodFluid dynamicsAerodynamicsComputational fluid dynamicsRange (aeronautics)WakeMechanicsDynamics (music)

Funding

  • Natural Science Foundation of Shanghai
  • National Natural Science Foundation of China
  • Shanghai Jiao Tong University
  • Ministry of Industry and Information Technology of the People's Republic of China
Citations
275
FWCI
156.01
field-weighted impact
References
294
Percentile
100%
vs. same field & year
Citations per year
References
Oscillating foils of high propulsive efficiency
Journal of Fluid Mechanics · 1998 · 1,262 citations
Vortical patterns in the wake of an oscillating airfoil
AIAA Journal · 1989 · 665 citations
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