A mixed-timescale SGS model for thermal field at various Prandtl numbers

Author:

Inagaki Masahide,Hattori Hirofumi,Nagano Yasutaka

Publisher

Elsevier BV

Subject

Fluid Flow and Transfer Processes,Mechanical Engineering,Condensed Matter Physics

Reference21 articles.

1. A new turbulence model for predicting fluid flow and heat transfer in separating and reattaching flows – I. Flow field calculations;Abe;Int. J. Heat Mass Transfer,1994

2. A new turbulence model for predicting fluid flow and heat transfer in separating and reattaching flows – II. Thermal field calculations;Abe;Int. J. Heat Mass Transfer,1995

3. An investigation of wall-anisotropy expressions and length-scale equations for non-linear eddy-viscosity models;Abe;Int. J. Heat Fluid Flow,2003

4. Bardina, J., Ferziger, J.H., Reynolds, W.C., 1983. Improved turbulence models based on large eddy simulation of homogenous, incompressible, turbulent flows. Report TF-10, Thermosciences Division, Dep. of Mech. Eng., Stanford University, Stanford, California.

5. Ducros, F., Nicoud, F., Poinsot, T., 1998. Wall-adapting local eddy-viscosity models for simulations in complex geometries. In: 6th ICFD Conference on Numerical Methods for Fluid Dynamic, pp. 293–299.

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