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Modelling of the subgrid scale wrinkling factor for large eddy simulation of turbulent premixed combustion
Authors:Fabien Thiesset  Guillaume Maurice  Nicolas Mazellier  Christian Chauveau  Iskender Gökalp
Affiliation:1. CNRS ICARE, Orléans, France;2. University of Orléans, INSA de Bourges, PRISME, Orléans, France;3. University of Orléans, INSA de Bourges, PRISME, Orléans, France
Abstract:We propose a model for assessing the unresolved wrinkling factor in the large eddy simulation of turbulent premixed combustion. It relies essentially on a power-law dependence of the wrinkling factor on the filter size and an original expression for the ‘active’ corrugating strain rate. The latter is written as the turbulent strain multiplied by an efficiency function that accounts for viscous effects and the kinematic constraint of Peters. This yields functional expressions for the fractal dimension and the inner cut-off length scale, the latter being (i) filter-size independent and (ii) consistent with the Damköhler asymptotic behaviours at both large and small Karlovitz numbers. A new expression for the wrinkling factor that incorporates finite Reynolds number effects is further proposed. Finally, the model is successfully assessed on an experimental filtered database.
Keywords:large eddy simulation  efficiency function  flame wrinkling  strain  stretch
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