Three-dimensional flows around low-aspect-ratio flat-plate wings at low Reynolds numbers

被引:251
|
作者
Taira, Kunihiko [1 ]
Colonius, Tim [1 ]
机构
[1] CALTECH, Div Engn & Appl Sci, Pasadena, CA 91125 USA
关键词
LEADING-EDGE VORTEX; AERODYNAMIC PERFORMANCE; FORCES; MODEL; GENERATION; FISH; TIP;
D O I
10.1017/S0022112008005314
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
Three-dimensional flows over impulsively translated low-aspect-ratio flat plates are investigated for Reynolds numbers of 300 and 500, with a focus on the unsteady vortex dynamics at post-stall angles of attack. Numerical simulations, validated by an oil tow-tank experiment, are performed to study the influence of aspect ratio, angle of attack and planform geometry on the wake vortices and the resulting forces on the plate. Immediately following the impulsive start, the separated flows create wake vortices that share the same topology for all aspect ratios. At large time, the tip vortices significantly influence the vortex dynamics and the corresponding forces on the wings. Depending on the aspect ratio, angle of attack and Reynolds number, the flow at large time reaches a stable steady state, a periodic cycle or aperiodic shedding. For cases of high angles of attack, an asymmetric wake develops in the spanwise direction at large time. The present results are compared to higher Reynolds number flows. Some non-rectangular planforms are also considered to examine the difference in the wakes and forces. After the impulsive start, the time at which maximum lift occurs is fairly constant for a wide range of flow conditions during the initial transient. Due to the influence of the tip vortices, the three-dimensional dynamics of the wake vortices are found to be quite different from the two-dimensional von Karman vortex street in terms of stability and shedding frequency.
引用
收藏
页码:187 / 207
页数:21
相关论文
共 50 条
  • [1] AERODYNAMIC INVESTIGATIONS OF LOW-ASPECT-RATIO THIN PLATE WINGS AT LOW REYNOLDS NUMBERS
    Liu, Y-C
    Hsiao, F-B
    JOURNAL OF MECHANICS, 2012, 28 (01) : 77 - 89
  • [2] Numerical investigation of low-aspect-ratio wings at low Reynolds numbers
    Cosyn, P.
    Vierendeels, J.
    JOURNAL OF AIRCRAFT, 2006, 43 (03): : 713 - 722
  • [3] Low Reynolds number aerodynamics of low-aspect-ratio, thin/flat/cambered-plate wings
    Pelletier, A
    Mueller, TJ
    JOURNAL OF AIRCRAFT, 2000, 37 (05): : 825 - 832
  • [4] Low Reynolds number aerodynamics of low-aspect-ratio, thin/flat/cambered-plate wings
    Pelletier, Alain, 1600, (AIAA, Reston, VA, United States):
  • [5] Aerodynamic Characteristics of Low-Aspect-Ratio Wings with Various Aspect Ratios in Low Reynolds Number Flows
    Mizoguchi, Makoto
    Kajikawa, Yusuke
    Itoh, Hajime
    TRANSACTIONS OF THE JAPAN SOCIETY FOR AERONAUTICAL AND SPACE SCIENCES, 2016, 59 (02) : 56 - 63
  • [6] Aerodynamic characteristics of low-aspect-ratio wings with various aspect ratios in low Reynolds number flows
    Mizoguchi, Makoto (makoto@nda.ac.jp), 1600, Japan Society for Aeronautical and Space Sciences (59):
  • [7] Disappearance of Vortex Lift in Low-Aspect-Ratio Wings at Very-low Reynolds Numbers
    Okamoto, Masato
    Sasaki, Daisuke
    Kamikubo, Masaya
    Fujii, Ryota
    TRANSACTIONS OF THE JAPAN SOCIETY FOR AERONAUTICAL AND SPACE SCIENCES, 2019, 62 (06) : 310 - 317
  • [8] Three-dimensional simulation of micro air vehicles with low-aspect-ratio wings
    Zhang, X. Q.
    Tian, L.
    PROGRESS OF PRECISION ENGINEERING AND NANO TECHNOLOGY, 2007, 339 : 377 - +
  • [9] Low-aspect-ratio wing aerodynamics at low reynolds numbers
    Torres, G.E., 1600, American Inst. Aeronautics and Astronautics Inc. (42):
  • [10] Formation Flight of Low-Aspect-Ratio Wings at Low Reynolds Number
    Korkischko, Ivan
    Konrath, Robert
    JOURNAL OF AIRCRAFT, 2017, 54 (03): : 1025 - 1034