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Stabilization Parameters and Smagorinsky Turbulence Model
61
Citations
11
References
2003
Year
Numerical AnalysisEngineeringFlow ControlFluid MechanicsTurbulenceDetached Eddy SimulationComputational MechanicsStabilization TechniqueStabilityUnsteady FlowStabilization ParametersLarge Eddy SimulationEddy ViscosityHydrodynamic StabilityNumerical ViscositiesTurbulent Flow Heat TransferSubgrid ModelsTurbulence ModelingMultiscale Hydrodynamics
For the streamline-upwind/Petrov-Galerkin and pressure-stabilizing/Petrov-Galerkin formulations for flow problems, we present in this paper a comparative study of the stabilization parameters defined in different ways. The stabilization parameters are closely related to the local length scales (“element length”), and our comparisons include parameters defined based on the element-level matrices and vectors, some earlier definitions of element lengths, and extensions of these to higher-order elements. We also compare the numerical viscosities generated by these stabilized formulations with the eddy viscosity associated with a Smagorinsky turbulence model that is based on element length scales.
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