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A Brief Review on Aerodynamic Performance of Wingtip Slots and Research Prospect 被引量:2

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摘要 Wingtip slots,where the outer primary feathers of birds split and spread vertically,are regarded as an evolved favorable feature that could effectively improve their aerodynamic performance.They have inspired many to perform experiments and simulations as well as to relate their results to aircraft design.This paper aims to provide guidance for the research on the aerodynamic mechanism of wingtip slots.Following a review of previous wingtip slot research,four imperfections are put forward:vacancies in research content,inconsistencies in research conclusions,limitations of early research methods,and shortage of the aerodynamic mechanism analysis.On this basis,further explorations and expansion of the influence factors for steady state are needed;more attention should be poured into the application of flow field integration method to decompose drag,and evaluation of variation in induced drag seems a more rational choice.Geometric and kinematic parameters of wingtip slot structure in the unsteady state,as well as the flexibility of wingtips,should be taken into account.As for the aerodynamic mechanism of wingtip slots,the emphasis can be placed on the study of the formation,development,and evolution of wingtip vortices on slotted wings.Besides,some research strategies and feasibility analyses are proposed for each part of the research.
出处 《Journal of Bionic Engineering》 SCIE EI CSCD 2021年第6期1255-1279,共25页 仿生工程学报(英文版)
基金 support from National Natural Science Foundation of China(Grant 11872314 and U1613227) Youth Program of Natural Science Basic Research Plan in Shaanxi Province of China(Grant 2019JQ-394) Key R&D Program in Shaanxi Province of China(Grant 2020GY-154).
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  • 1Youngjong Lee,Yonghoon Yoo,Jihoon Kim,Sriyulianti Widhiarini,Baeho Park,Hoon Cheol Park,Kwang Joon Yoon,Doyoung Byun.Mimicking a Superhydrophobic Insect Wing by Argon and Oxygen Ion Beam Treatment on Polytetrafluoroethylene Film[J].Journal of Bionic Engineering,2009,6(4):365-370. 被引量:3
  • 2郑本武,陈明岩,齐孟卜.翼尖帆片的优化设计[J].空气动力学学报,1995,13(1):105-109. 被引量:3
  • 3Liu, H., Kawachi, K. A numerical study of insect flight. J. Comp. Phys. 146, 124-156 (1998).
  • 4Ramamurti, R., Sandberg, W.C.: A three-dimensional computational study of the aerodynamic mechanisms of insect flight. J. Exp. Biol. 205, 1507-1518 (2002).
  • 5Lian, Y., Shyy, W.: Aerodynamics of Low Reynolds Number Plunging Airfoil under Gusty Environment. AIAA Paper 2007-71 (2007).
  • 6Ellington, C.E, Vanden Berg, C., Willmott, A.E, Thomas, A.L.R.: Leading-edge vortices in insect flight. Nature 384, 626-630 (1996).
  • 7Vanden Berg, C., Ellington, C.R: The three-dimensional leadingedge vortex of a ‘hovering' model hawkmoth. Philosophical Trans. R. Soc. Lond. Set. B 352, 329-340 (1997).
  • 8Srygley, R.B., Thomas, A.L.R." Unconventional lift-generating mechanisms in free-flying butterflies. Nature 420, 660-664 (2002).
  • 9Thomas, A.L.R., Taylor, G.K., Srygley, R.B., Nudds, L.R., Bomphrey, R.J.: Dragonfly flight: free-flight and tethered flow visualizations reveal a diverse array of unsteady lift-generating mechanisms, controlled primarily via angle of attack. J. Exp. Biol. 207, 4299-4323 (2004).
  • 10Birch, J.M., Dickinson, M.H.: Spanwise flow and the attachment of the leading-edge vortex on insect wings. Nature 412, 729- 733 (2001).

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