A dynamic localization model for large-eddy simulation of turbulent flows

Author:

Ghosal Sandip,Lund Thomas S.,Moin Parviz,Akselvoll Knut

Abstract

In a previous paper, Germano, et al. (1991) proposed a method for computing coefficients of subgrid-scale eddy viscosity models as a function of space and time. This procedure has the distinct advantage of being self-calibrating and requires no a priori specification of model coefficients or the use of wall damping functions. However, the original formulation contained some mathematical inconsistencies that limited the utility of the model. In particular, the applicability of the model was restricted to flows that are statistically homogeneous in at least one direction. These inconsistencies and limitations are discussed and a new formulation that rectifies them is proposed. The new formulation leads to an integral equation whose solution yields the model coefficient as a function of position and time. The method can be applied to general inhomogeneous flows and does not suffer from the mathematical inconsistencies inherent in the previous formulation. The model has been tested in isotropic turbulence and in the flow over a backward-facing step.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference29 articles.

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2. Cabot, W. H. & Moin, P. 1993 Large-eddy simulation of scalar transport with the dynamic subgrid-scale model.In Large Eddy Simulation of Complex Engineering and Geophysical Flows (ed. B. Galperin & S. A. Orszag ).Cambridge University Press.

3. Silveira Neto, A. , Grand, D. , Métals, O. & Lesieur, M. 1993 A numerical investigation of the coherent vortices in turbulence behind a backward-facing step.J. Fluid. Mech. 256,1–25.

4. Wong, V. C. 1992 A proposed statistical-dynamic closure method for the linear or nonlinear subgrid-scale stresses.Phys. Fluids A4,1080–1082.

5. Moin, P. 1991 A new approach for large eddy simulation of turbulence and scalar transport.In Proc. Monte Verita Coll. on Turbulence. Birkhauser, Bale.

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