Physics of Fluids · 2014 · 180 citations · 33 references
Numerical AnalysisAeroacousticsWall ModelsEngineeringFluid MechanicsTurbulenceComputational MechanicsBoundary LayerUnsteady FlowNumerical SimulationModeling And SimulationLarge Eddy SimulationLes EquationsMultiphase FlowAerospace EngineeringWall-modeled Large-eddy SimulationTurbulence ModelingAerodynamicsLarge-eddy Simulation
Wall models for large-eddy simulation (LES) are a necessity to remove the prohibitive resolution requirements of near-wall turbulence in high Reynolds turbulent flows. Traditional wall models often rely on assumptions about the local state of the boundary layer (e.g., logarithmic velocity profiles) and require a priori prescription of tunable model coefficients. In the present study, a slip velocity boundary condition for the filtered velocity field is obtained from the derivation of the LES equations using a differential filter. A dynamic procedure for the local slip length is additionally formulated making the slip velocity wall model free of any a priori specified coefficients. The accuracy of the dynamic slip velocity wall model is tested in a series of turbulent channel flows at varying Reynolds numbers and in the LES of a National Advisory Committee for Aeronautics (NACA) 4412 airfoil at near-stall conditions. The wall-modeled simulations are able to accurately predict mean flow characteristics, including the formation of a trailing-edge separation bubble in NACA 4412 configuration. The validation cases demonstrate the effectiveness of this wall-modeling approach in both attached and separated flow regimes.
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A dynamic subgrid-scale eddy viscosity model
Massimo Germano, Ugo Piomelli, Parviz Moin et al. · Physics of Fluids A Fluid Dynamics · 1991 · 7K citations
Philippe R. Spalart · Annual Review of Fluid Mechanics · 2008 · 1.5K citations