Coherent Spanwise Structures in Turbulent Boundary Layer over Drag-Reducing Riblets

被引:0
|
作者
杨绍琼 [1 ,2 ]
李山 [1 ]
田海平 [1 ]
王清毅 [1 ,3 ]
姜楠 [1 ,2 ]
机构
[1] School of Mechanical Engineering, Tianjin University
[2] Tianjin Key Laboratory of Modern Engineering Mechanics
[3] School of Mechanical and Aerospace Engineering, Nanyang Technological University
基金
中国国家自然科学基金;
关键词
turbulent boundary layer; passive flow control; drag reduction; Kelvin-Helmholtz-like instability; coherent structure; riblet; particle image velocimetry;
D O I
暂无
中图分类号
O357.5 [湍流(紊流)];
学科分类号
080103 ; 080704 ;
摘要
The time series of velocity vector fields and their statistics in the turbulent boundary layer(TBL)over riblets and smooth plate were measured by utilizing a time-resolved particle image velocimetry(TR-PIV)system. The mean velocity profiles of the TBL were compared in the case of 0.13 m/s(the riblets with dimensionless peakto-peak spacing being approximately s?≈21)and 0.19 m/s( s?≈28)for these two kinds of plates, respectively. Two kinds of drag-reducing velocity profiles were illustrated and analyzed. Then the spatial topologies of the physical vorticity for the coherent spanwise structures were detected and extracted at the fourth scale by utilizing an improved quadrant splitting method(IQSM). Results revealed that nearly 6.17%, and 10.73%, of a drag reduction was separately achieved over the riblets surface. Besides, it was visualized that the drag-reduction was acquired by the riblets influencing the bursting ejection(Q2)and sweep(Q4)events of the coherent spanwise vortex structures, the Q4 events in particular. Based on such two drag-reducing cases of the riblets, lastly, a simplified KelvinHelmholtz-like linear instability model proposed initially by García-Mayoral and Jiménez(2011)has been discussed. It is still difficult to establish with certainty whether the observed phenomena, the appearance of coherent spanwise structures found at around or below y?≈20 in both cases of s?≈21 and s?≈28 and their topological changes, were consequences or causes of the breakdown of the viscous regime. We prefer to suggest that the interactions between those structures and the riblets, which contain the coherent spanwise structures extending toward the wall and penetrating into the riblet grooves, are the root causes.
引用
收藏
页码:317 / 323
页数:7
相关论文
共 50 条
  • [21] From drag-reducing riblets to drag-increasing ridges
    von Deyn, Lars H.
    Gatti, Davide
    Frohnapfel, Bettina
    Journal of Fluid Mechanics, 2022, 951
  • [22] Trpiv measurement of drag-reduction in the turbulent boundary layer over riblets plate
    Jiang, N. (nanj@tju.edu.cn), 1600, Chinese Society of Theoretical and Applied Mechanics (45):
  • [24] Numerical and experimental investigations on drag-reducing effects of riblets
    Li, Chaoqun
    Tang, Shuo
    Li, Yi
    Geng, Zihai
    ENGINEERING APPLICATIONS OF COMPUTATIONAL FLUID MECHANICS, 2021, 15 (01) : 1726 - 1745
  • [25] Effects of the slip wall on the drag and coherent structures of turbulent boundary layer
    Wang, Xinwei
    Wang, Yufei
    Tian, Haiping
    Jiang, Nan
    ACTA MECHANICA SINICA, 2021, 37 (08) : 1278 - 1290
  • [26] Effects of the slip wall on the drag and coherent structures of turbulent boundary layer
    Xinwei Wang
    Yufei Wang
    Haiping Tian
    Nan Jiang
    Acta Mechanica Sinica, 2021, 37 : 1278 - 1290
  • [27] STRUCTURE OF TURBULENT BOUNDARY IN DRAG-REDUCING PIPE-FLOW
    ACHIA, BU
    THOMPSON, DW
    JOURNAL OF FLUID MECHANICS, 1977, 81 (JUL13) : 439 - &
  • [28] Drag reduction of the turbulent boundary layer over divergent sawtooth riblets surface with a superhydrophobic coat
    Hu, Jinge
    Yao, Zhaohui
    PHYSICS OF FLUIDS, 2024, 36 (04)
  • [29] Drag reduction and hairpin packets of the turbulent boundary layer over the superhydrophobic-riblets surface
    Xin-wei Wang
    Zi-ye Fan
    Zhan-qi Tang
    Nan Jiang
    Journal of Hydrodynamics, 2021, 33 : 621 - 635
  • [30] Drag reduction and hairpin packets of the turbulent boundary layer over the superhydrophobic-riblets surface
    Wang, Xin-wei
    Fan, Zi-ye
    Tang, Zhan-qi
    Jiang, Nan
    JOURNAL OF HYDRODYNAMICS, 2021, 33 (03) : 621 - 635