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Modelling the pressure–strain correlation of turbulence: an invariant dynamical systems approach

Journal of Fluid Mechanics · 1991 · Vol. 227 · pp. 245–272
Charles G. SpezialeSutanu SarkarThomas B. Gatski

Abstract

The modelling of the pressure-strain correlation of turbulence is examined from a basic theoretical standpoint with a view toward developing improved second-order closure models. Invariance considerations along with elementary dynamical systems theory are used in the analysis of the standard hierarchy of closure models. In these commonly used models, the pressure-strain correlation is assumed to be a linear function of the mean velocity gradients with coefficients that depend algebraically on the anisotropy tensor. It is proven that for plane homogeneous turbulent flows the equilibrium structure of this hierarchy of models is encapsulated by a relatively simple model which is only quadratically nonlinear in the anisotropy tensor. This new quadratic model - the SSG model - appears to yield improved results over the Launder, Reece & Rodi model (as well as more recent models that have a considerably more complex nonlinear structure) in five independent homogeneous turbulent flows. However, some deficiencies still remain for the description of rotating turbulent shear flows that are intrinsic to this general hierarchy of models and, hence, cannot be overcome by the mere introduction of more complex nonlinearities. It is thus argued that the recent trend of adding substantially more complex nonlinear terms containing the anisotropy tensor may be of questionable value in the modelling of the pressure–strain correlation. Possible alternative approaches are discussed briefly.

Fluid Dynamics and Turbulent FlowsWind and Air Flow StudiesComputational Fluid Dynamics and AerodynamicsTurbulenceStatistical physicsNonlinear systemTensor (intrinsic definition)PhysicsAnisotropyInvariant (physics)K-epsilon turbulence modelQuadratic equationCorrelation function (quantum field theory)
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References
Progress in the development of a Reynolds-stress turbulence closure
Journal of Fluid Mechanics · 1975 · 3,927 citations
Statistische Theorie nichthomogener Turbulenz
The European Physical Journal A · 1951 · 1,135 citations
A Reynolds stress model of turbulence and its application to thin shear flows
Journal of Fluid Mechanics · 1972 · 1,037 citations
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