Streamwise Vortices and Velocity Streaks in a Locally Drag-Reduced Turbulent Boundary Layer

被引:0
|
作者
H. L. Bai
Y. Zhou
W. G. Zhang
R. A. Antonia
机构
[1] Harbin Institute of Technology,Institute for Turbulence
[2] State Key Laboratory of Aerodynamics,Noise
[3] Hong Kong University of Science and Technology,Vibration Interaction and Control, Shenzhen Graduate School
[4] University of Newcastle,Department of Civil and Environmental Engineering
来源
Flow, Turbulence and Combustion | 2018年 / 100卷
关键词
Turbulent boundary layer control; Streamwise vortices; Velocity streaks;
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摘要
This work aims to understand the changes associated with the near-wall streaky structures in a turbulent boundary layer (TBL) where the local skin-friction drag is substantially reduced. The Reynolds number is Re𝜃 = 1000 based on the momentum thickness or Reτ = 440 based on the friction velocity of the uncontrolled flow. The TBL is perturbed via a local surface oscillation produced by an array of spanwise-aligned piezo-ceramic (PZT) actuators and measurements are made in two orthogonal planes using particle image velocimetry (PIV). Data analyses are conducted using the vortex detection, streaky structure identification, spatial correlation and proper orthogonal decomposition (POD) techniques. It is found that the streaky structures are greatly modified in the near-wall region. Firstly, the near-wall streamwise vortices are increased in number and swirling strength but decreased in size, and are associated with greatly altered velocity correlations. Secondly, the velocity streaks grow in number and strength but contract in width and spacing, exhibiting a regular spatial arrangement. Other aspects of the streaky structures are also characterized; they include the spanwise gradient of the longitudinal fluctuating velocity and both streamwise and spanwise integral length scales. The POD analysis indicates that the turbulent kinetic energy of the streaky structures is reduced. When possible, our results are compared with those obtained by other control techniques such as a spanwise-wall oscillation, a spanwise oscillatory Lorentz force and a transverse traveling wave.
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页码:391 / 416
页数:25
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