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Modelling of turbulent scalar flux in turbulent premixed flames based on DNS databases
Authors:S Nishiki  T Hasegawa  R Borghi  R Himeno
Institution:1. Department of Mechanical Engineering , Nagaoka University of Technology , Nagaoka, 940-2188, Japan;2. Division of Integrated Research Projects, EcoTopia Science Institute, Nagoya University , Nagoya, 464-8603, Japan;3. Ecole Généraliste d'Ingénieurs de Marseille, 13383 Marseille cedex 13 , France;4. Advanced Center for Computing and Communication, RIKEN , Wako, 351-0198, Japan
Abstract:

A transport equation for scalar flux in turbulent premixed flames was modelled on the basis of DNS databases. Fully developed turbulent premixed flames were obtained for three different density ratios of flames with a single-step irreversible reaction, while the turbulent intensity was comparable to the laminar burning velocity. These DNS databases showed that the countergradient diffusion was dominant in the flame region. Analyses of the Favre-averaged transport equation for turbulent scalar flux proved that the pressure related terms and the velocity–reaction rate correlation term played important roles on the countergradient diffusion, while the mean velocity gradient term, the mean progress variable gradient term and dissipation terms suppressed it. Based on these analyses, modelling of the combustion-related terms was discussed. The mean pressure gradient term and the fluctuating pressure term were modelled by scaling, and these models were in good agreement with DNS databases. The dissipation terms and the velocity–reaction rate correlation term were also modelled, and these models mimicked DNS well.
Keywords:Turbulent premixed flames  Turbulent scalar flux  Modelling  DNS
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