arXiv:cond-mat/0310618AbstractReferencesReviewsResources
Kinetic Theory of Turbulence Modeling: Smallness Parameter, Scaling and Microscopic Derivation of Smagorinsky Model
Santosh Ansumali, Iliya V. Karlin, Sauro Succi
Published 2003-10-27, updated 2004-02-06Version 2
A mean-field approach (filtering out subgrid scales) is applied to the Boltzmann equation in order to derive a subgrid turbulence model based on kinetic theory. It is demonstrated that the only Smagorinsky type model which survives in the hydrodynamic limit on the viscosity time scale is the so-called tensor-diffusivity model. Scaling of the filter-width with Reynolds number and Knudsen number is established. This sets the first rigorous step in deriving turbulence models from kinetic theory.
Comments: 18 pages, Minor corrections, Accepted in Physica A
Journal: Physica A, Vol. 338, pp. 379-394 (2004)
Keywords: kinetic theory, microscopic derivation, smallness parameter, smagorinsky model, viscosity time scale
Tags: journal article
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