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Low-dimensional models for turbulent plane Couette flow in a minimal flow unit.
The previously suggested models for turbulent dissipation in inline RSMs are inconsistent with this observation.
The coalescence-dispersion (C/D) models for turbulent micromixing are considered.
This paper reviews recent and ongoing work on numerical models for turbulent combustion systems based on a classical LES approach.
Flamelet models for turbulent combustion typically employ the assumption of unity Lewis number, i.e., equal thermal and species diffusivities.
However, models for turbulent premixed combustion normally assume that atomic mass fractions are conserved from reactants to fully burnt products.
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Gas flow is modelled using k ε model for turbulent flow.
In this paper a three-dimensional mathematical model for turbulent flow and combustion on the basis of turbulence-chemistry interactions and radiative heat transfer taking into account spectral effects of surrounding walls and combustion gases is described.
For the turbulent case, the standard k ε turbulence model was used with the most common eddy lifetime model for turbulent particle dispersion [Gosman and Ioannides (1983) J. Energy 7, 482 490].
"Toward a flame embedding model for turbulent combustion simulation". AIAA Journal.
An improved stochastic model for turbulent diffusion is developed.
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