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DRAG REDUCTION IN A TURBULENT CHANNEL FLOW WITH HYDRO- PHOBIC WALL
Authors:NOURI Nowrouz  Mohammad SEKHAVAT  Setareh MOFIDI  Alireza
Affiliation:Department of Mechanical Engineering, Iran University of Science and Technology, Tehran, Iran,
Abstract:
This paper investigates a theoretical prediction of friction drag reduction in turbulent channel flow which is achieved by using superhydrophobic surfaces. The effect of the hydrophobic surface is considered to be a slip boundary condition on the wall, and this new boundary condition is added to Large Eddy Simulation (LES) equations. The predicted drag reduction at Reτ = 180 is approximately 30%, which concurs with results obtained from Direct Numerical Simulation (DNS). An important implication of the present finding is that the near-wall turbulence structures are modified with streamwise slip velocity. In addition, a noticeable effect on the turbulence structure occurs when the slip length is greater than a certain value.
Keywords:superhydrophobic surface   Large Eddy Simulation (LES)   drag reduction   slip length   turbulence structures
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