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Articles

Consistently formulated eddy-viscosity coefficient for k-equation model

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Pages 959-994 | Received 17 Jan 2018, Accepted 04 Dec 2018, Published online: 04 Feb 2019
 

ABSTRACT

An approach to devising a consistency formulation for Pk/εPk/ε (production-to-dissipation ratio) is proposed to obtain a non-singular CμCμ (coefficient of eddy-viscosity) embedded in the one-equation model based on the turbulent kinetic energy k. The dissipation rate ε is evaluated with an algebraically prescribed length scale having only one adjustable coefficient, accompanied by an anisotropic function qεqε enhancing the dissipation in non-equilibrium flow regions. The model accounts for the distinct effects of low Reynolds number (LRN) and wall proximity. The stress-intensity ratio Rb=u1u2¯/kRb=u1u2¯/k is formulated as a function of local variables without resorting to a constant Cμ=0.3Cμ=0.3. The parameters RbRb and Pk/εPk/ε entering the turbulence production PkPk prevents presumably the overestimation of PkPk in flow regions where non-equilibrium effects could result in a misalignment between turbulent stress and mean strain rate with a linear eddy-viscosity model. A comparative assessment of the present model with the Spalart–Allmaras (SA) one-equation model and the shear stress transport (SST) kω model is provided for well-documented simple and non-equilibrium turbulent flows. Finally, the current model provides a proposal to compute free shear flows.

Disclosure statement

No potential conflict of interest was reported by the authors.

Additional information

Funding

We are grateful to the National Natural Science Foundation of China (No. 51709070), Natural Science Foundation of Zhejiang Province (LQ17E090007), Key R& D Program of Zhejiang Province (2018C04002).

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