Active wall motions for skin-friction drag reduction

被引:85
|
作者
Kang, S [1 ]
Choi, H
机构
[1] Taegu Univ, Sch Automot Ind & Mech Engn, Kyungsan 712714, Kyungbuk, South Korea
[2] Seoul Natl Univ, Sch Mech & Aerosp Engn, Seoul 151742, South Korea
[3] Seoul Natl Univ, Inst Adv Machinery & Design, Natl CRI Ctr Turbulence & Flow Control Res, Seoul 151, South Korea
关键词
D O I
10.1063/1.1320833
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
In the present study we investigate a possibility of reducing skin-friction drag in a turbulent channel flow with active wall motions. The wall is locally deformed according to two successful control strategies [J. Fluid Mech. 262, 75 (1994); J. Fluid Mech. 358, 245 (1998)]. Results show that overall 13-17% drag reductions are obtained with the active wall motions, and turbulence intensities and near-wall streamwise vortices are significantly weakened. It is remarkable that instantaneous wall shapes are elongated in the streamwise direction and resemble riblets in appearance. However, the mechanism of the present drag reduction is essentially different from that of riblets. (C) 2000 American Institute of Physics. [S1070-6631(00)51412-3].
引用
收藏
页码:3301 / 3304
页数:4
相关论文
共 50 条
  • [41] Toward Cost-effective Control of Wall Turbulence for Skin Friction Drag Reduction
    Kasagi, Nobuhide
    Hasegawa, Yosuke
    Fukagata, Koji
    ADVANCES IN TURBULENCE XII - PROCEEDINGS OF THE 12TH EUROMECH EUROPEAN TURBULENCE CONFERENCE, 2009, 132 : 189 - 200
  • [42] Experimental investigation and reduced-order modeling of plasma jets in a turbulent boundary layer for skin-friction drag reduction
    Zong, H.
    Su, Z.
    Liang, H.
    Wu, Y.
    PHYSICS OF FLUIDS, 2022, 34 (08)
  • [43] ANALYSIS OF THE TURBULENT BOUNDARY LAYER AND SKIN-FRICTION DRAG REDUCTION OF A FLAT PLATE BY USING THE MICRO-BLOWING TECHNIQUE
    H. Najafi Khaboshan
    E. Yousefi
    J. Svorcan
    Journal of Applied Mechanics and Technical Physics, 2022, 63 : 425 - 436
  • [44] THE EFFECT OF A SPANWISE BODY FORCE ON SKIN-FRICTION REDUCTION AND ITS CONNECTIONS TO LOW-DRAG STATES IN TURBULENT FLOW
    Hafner, Thomas A.
    Park, Jae Sung
    PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION, 2018, VOL 7, 2019,
  • [45] ANALYSIS OF THE TURBULENT BOUNDARY LAYER AND SKIN-FRICTION DRAG REDUCTION OF A FLAT PLATE BY USING THE MICRO-BLOWING TECHNIQUE
    Khaboshan, H. Najafi
    Yousefi, E.
    Svorcan, J.
    JOURNAL OF APPLIED MECHANICS AND TECHNICAL PHYSICS, 2022, 63 (03) : 425 - 436
  • [46] A machine learning model for reconstructing skin-friction drag over ocean surface waves
    Yousefi, Kianoosh
    Hora, Gurpreet Singh
    Yang, Hongshuo
    Veron, Fabrice
    Giometto, Marco G.
    JOURNAL OF FLUID MECHANICS, 2024, 983
  • [47] Active skin for turbulent drag reduction
    Rediniotis, OK
    Lagoudas, DC
    Mani, R
    Karniadakis, GE
    SMART STRUCTURES AND MATERIALS 2002: SMART ELECTRONICS, MEMS, AND NANOTECHNOLOGY, 2002, 4700 : 122 - 134
  • [48] Active skin for turbulent drag reduction
    Mani, Raghavendran
    Lagoudas, Dimitris C.
    Rediniotis, Othon K.
    SMART MATERIALS AND STRUCTURES, 2008, 17 (03)
  • [49] Effects of the air layer of an idealized superhydrophobic surface on the slip length and skin-friction drag
    Jung, Taeyong
    Choi, Haecheon
    Kim, John
    JOURNAL OF FLUID MECHANICS, 2016, 790 : R11 - R112