Title of article :
Numerical Method to Predict Slip Length in Turbulent Channel Flow
Author/Authors :
Nouri ، Nowrouz Mohammad - Iran University of Science and Technology , rastan ، mohammad reza - Iran University of Science and Technology , Sekhavat ، Setareh - Iran University of Science and Technology
Pages :
10
From page :
719
To page :
728
Abstract :
In the present research work, we introduce a new method for estimating the slip length on superhydrophobic surfaces. Hence, a dynamic force is added to momentum equations and velocity boundary condition is rewritten in a new form. Laminar and turbulent channel flows are considered and two force functions are used with different profiles to investigate their effects on results. The turbulent channel flow is considered at ReT= 180 and the Large Eddy Simulation (LES) method has been applied to analyze this flow. All results indicate that this method can predict the streamwise slip length with a good accuracy, which is comparable with the Navier’s method. So, using this numerical solution and also measuring pressure drop and mass flow rate in the channel, slip length can be calculated. Consequently, the errors and difficulties of slip length measurements in typical methods such as AFM and μPIV would be eliminated.
Keywords :
Superhydrophobic , Slip length , Non , conservative force , Large eddy simulation
Journal title :
Journal of Applied Fluid Mechanics
Serial Year :
2016
Journal title :
Journal of Applied Fluid Mechanics
Record number :
2450029
Link To Document :
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