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Direct numerical simulation of wall turbulent flows with microbubbles
56
Citations
13
References
2001
Year
AeroacousticsUnsteady FlowEngineeringFluid MechanicsCivil EngineeringNumerical SimulationTurbulenceTurbulence ModelingMechanical EngineeringWall TurbulentAerodynamicsWall TurbulenceTurbulent Boundary LayerFlow PhysicMultiphase FlowTurbulent FlowHydrodynamic Stability
The marker-density-function (MDF) method has been developed to conduct direct numerical simulation (DNS) for bubbly flows. The method is applied to turbulent bubbly channel flows to elucidate the interaction between bubbles and wall turbulence. The simulation is designed to clarify the structure of the turbulent boundary layer containing microbubbles and the mechanism of frictional drag reduction. It is deduced from the numerical tests that the interaction between bubbles and wall turbulence depends on the Weber and Froude numbers. The reduction of the frictional resistance on the wall is attained and its mechanism is explained from the modulation of the three-dimensional structure of the turbulent flow. Copyright © 2001 John Wiley & Sons, Ltd.
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