articleTop 1% cited
The multiscale formulation of large eddy simulation: Decay of homogeneous isotropic turbulence
Physics of Fluids · 2001 · Vol. 13(2) · pp. 505–512
Thomas J.R. Hughes✉(Stanford University)Luca Mazzei(Stanford University)Assad A. Oberai(Stanford University)A. A. Wray(Ames Research Center)
Abstract
The variational multiscale method is applied to the large eddy simulation (LES) of homogeneous, isotropic flows and compared with the classical Smagorinsky model, the dynamic Smagorinsky model, and direct numerical simulation (DNS) data. Overall, the multiscale method is in better agreement with the DNS data than both the Smagorinsky model and the dynamic Smagorinsky model. The results are somewhat remarkable when one realizes that the multiscale method is almost identical to the Smagorinsky model (the least accurate model!) except for removal of the eddy viscosity from a very small percentage of the lowest modes.
Advanced Mathematical Modeling in EngineeringFluid Dynamics and Turbulent FlowsAdvanced Numerical Methods in Computational MathematicsPhysicsLarge eddy simulationIsotropyTurbulenceHomogeneous isotropic turbulenceStatistical physicsHomogeneousTurbulence modelingDirect numerical simulationMechanics
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