Experimental investigation on the wing-wake interaction at the mid stroke in hovering flight of dragonfly

被引:0
|
作者
LAI GuoJun & SHEN GongXin * FFFOM Laboratory
机构
基金
中国国家自然科学基金;
关键词
dragonfly; hovering flight; particle image velocimetry(PIV); flow interaction; leading edge vortex;
D O I
暂无
中图分类号
O355 [];
学科分类号
080103 ; 080704 ;
摘要
This paper focuses on flow structures of the wing-wake interaction between the hind wing and the wake of the forewing in hovering flight of a dragonfly since there are arguments whether the wing-wake interaction is useful or not.A mechanical flapping model with two tandem wings is used to study the interaction.In the device,two identical simplified model wings are mounted to the flapping model and they are both scaled up to keep the Reynolds number similar to those of dragonfly in hovering flight since our experiment is conducted in a water tank.The kinetic pattern of dragonfly(Aeschna juncea) is chosen because of its special interesting asymmetry.A multi-slice phase-locked stereo particle image velocimetry(PIV) system is used to record flow structures around the hind wing at the mid downstroke(t/T=0.25) and the mid upstroke(t/T=0.75).To make comparison of the flow field between with and without the influence of the wake,flow structures around a single flapping wing(hind wing without the existence of the forewing) at these two stroke phases are also recorded.A local vortex identification scheme called swirling strength is applied to determine the vortices around the wing and they are visualized with the iso-surface of swirling strength.This paper also presents contour lines of z at each spanwise position of the hind wing,the vortex core position of the leading edge vortex(LEV) of hind wing with respect to the upper surface of hind wing,the circulation of the hind wing LEV at each spanwise position and so on.Experimental results show that dimension and strength of the hind wing LEV are impaired at the mid stroke in comparison with the single wing LEV because of the downwash from the forewing.Our results also reveal that a wake vortex from the forewing traverses the upper surface of the hind wing at the mid downstroke and its distance to the upper surface is about 40% of the wing chord length.At the instant,the distance of the hind wing LEV to the upper surface is about 20% of the wing chord length.Thus,there must be a wing-wake interaction mechanism that makes the wake vortex become an additional LEV of the hind wing and it can partly compensate the hind wing for its lift loss caused by the downwash from the forewing.
引用
收藏
页码:2167 / 2178
页数:12
相关论文
共 50 条
  • [1] Experimental investigation on the wing-wake interaction at the mid stroke in hovering flight of dragonfly
    Lai GuoJun
    Shen GongXin
    [J]. SCIENCE CHINA-PHYSICS MECHANICS & ASTRONOMY, 2012, 55 (11) : 2167 - 2178
  • [2] Experimental investigation on the wing-wake interaction at the mid stroke in hovering flight of dragonfly
    GuoJun Lai
    GongXin Shen
    [J]. Science China Physics, Mechanics and Astronomy, 2012, 55 : 2167 - 2178
  • [3] Experimental investigation of flexible hawkmoth-like wings on the wing-wake interaction in hovering flight
    YeongGyun Ryu
    Jo Won Chang
    Joon Chung
    Dong-Ha Kim
    [J]. Journal of Bionic Engineering, 2018, 15 : 139 - 153
  • [4] Experimental Investigation of Flexible Hawkmoth-like Wings on the Wing-wake Interaction in Hovering Flight
    Ryu, YeongGyun
    Chang, Jo Won
    Chung, Joon
    Kim, Dong-Ha
    [J]. JOURNAL OF BIONIC ENGINEERING, 2018, 15 (01) : 139 - 153
  • [5] Experimental and numerical investigation of wing–wing interaction and its effect on aerodynamic force of a robotic dragonfly during hovering and forward flight
    Prafulla Kumar Swain
    Siva Prasad Dora
    [J]. Archive of Applied Mechanics, 2021, 91 : 2039 - 2052
  • [6] Experimental and numerical investigation of wing-wing interaction and its effect on aerodynamic force of a robotic dragonfly during hovering and forward flight
    Swain, Prafulla Kumar
    Dora, Siva Prasad
    [J]. ARCHIVE OF APPLIED MECHANICS, 2021, 91 (05) : 2039 - 2052
  • [7] Experimental Study on the Wing-wake Interaction of a Flapping Wing Micro Aerial Vehicle
    Boon, Lua Kim
    Jadhav, Siddharth
    [J]. 2017 INTERNATIONAL CONFERENCE ON UNMANNED AIRCRAFT SYSTEMS (ICUAS'17), 2017, : 1292 - 1301
  • [8] Numerical analysis of the wing-wake interaction of tandem flapping wings in forward flight
    Bie, Dawei
    Li, Daochun
    [J]. AEROSPACE SCIENCE AND TECHNOLOGY, 2022, 121
  • [9] Aerodynamic Characteristics of Dragonfly Wing Corrugation in Hovering Flight
    Wang, Chao
    Xie, Peng
    Zhou, Chao-Ying
    Zhang, Rui
    [J]. PROCEEDINGS OF THE 3RD ANNUAL INTERNATIONAL CONFERENCE ON MECHANICS AND MECHANICAL ENGINEERING (MME 2016), 2017, 105 : 51 - 56
  • [10] THE STRUCTURE OF VORTEX WAKE OF A WING IN HOVERING FLIGHT
    FEDOTOV, AA
    [J]. VESTNIK MOSKOVSKOGO UNIVERSITETA SERIYA 1 MATEMATIKA MEKHANIKA, 1990, (03): : 42 - 46