Renormalization group formulation of large eddy simulation
Abstract
Renormalization group (RNG) methods are applied to eliminate small scales and construct a subgrid scale (SSM) transport eddy model for transition phenomena. The RNG and SSM procedures are shown to provide a more accurate description of viscosity near the wall than does the Smagorinski approach and also generate farfield turbulence viscosity values which agree well with those of previous researchers. The elimination of small scales causes the simultaneous appearance of a random force and eddy viscosity. The RNG method permits taking these into account, along with other phenomena (such as rotation) for large-eddy simulations.
- Publication:
-
IN: Nonlinear dynamics of transcritical flows; Proceedings of the International Colloquium
- Pub Date:
- 1985
- Bibcode:
- 1985ndtf.proc..155Y
- Keywords:
-
- Computational Fluid Dynamics;
- Homogeneous Turbulence;
- Transport Theory;
- Vortices;
- Computational Grids;
- Eddy Viscosity;
- Navier-Stokes Equation;
- Fluid Mechanics and Heat Transfer