The dynamic procedure is applied to the problem of modeling the subgrid-scale variance and dissipation rate of a conserved scalar in large eddy simulations of turbulent reacting flows. A simple scaling relation for the subgrid-scale variance is proposed, and the coefficient of the scaling law is obtained using the dynamic procedure. The variance dissipation rate is modeled by assuming equilibrium with the local variance production rate, which is obtained using a dynamic model. Example model predictions are obtained using actual large eddy simulation data, and the subgrid variance predicted by the dynamic model is compared to results obtained using a scale similarity model. Generalization of the approach to multiple scalars and nonconserved scalars is briefly discussed.
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December 1998
Letter|
December 01 1998
A dynamic model for subgrid-scale variance and dissipation rate of a conserved scalar Available to Purchase
Charles D. Pierce;
Charles D. Pierce
Stanford University, Stanford, California 94305
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Parviz Moin
Parviz Moin
Stanford University, Stanford, California 94305
Search for other works by this author on:
Charles D. Pierce
Parviz Moin
Stanford University, Stanford, California 94305
Physics of Fluids 10, 3041–3044 (1998)
Article history
Received:
July 17 1998
Accepted:
September 01 1998
Citation
Charles D. Pierce, Parviz Moin; A dynamic model for subgrid-scale variance and dissipation rate of a conserved scalar. Physics of Fluids 1 December 1998; 10 (12): 3041–3044. https://doi.org/10.1063/1.869832
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