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Modelling of the subgrid scale wrinkling factor for large eddy simulation of turbulent premixed combustion

Authors :
Nicolas Mazellier
Iskender Gökalp
Fabien Thiesset
Christian Chauveau
Fabien Halter
Guillaume Maurice
Institut de Combustion, Aérothermique, Réactivité et Environnement (ICARE)
Centre National de la Recherche Scientifique (CNRS)-Institut des Sciences de l'Ingénierie et des Systèmes (INSIS)-Université d'Orléans (UO)
Laboratoire Pluridisciplinaire de Recherche en Ingénierie des Systèmes, Mécanique et Energétique (PRISME)
Ecole Nationale Supérieure d'Ingénieurs de Bourges (ENSI Bourges)-Université d'Orléans (UO)
ANR-11-LABX-0006,CAPRYSSES,Cinétique chimique et Aérothermodynamique pour des Propulsions et des Systèmes Energétiques Propres(2011)
ANR-13-ASTR-0013,IDYLLE,Cinétique et dynamique de flammes de carburants aéronautiques de synthèse(2013)
Source :
Combustion Theory and Modelling, Combustion Theory and Modelling, Taylor & Francis, 2016, 20 (3), pp.393-409. ⟨10.1080/13647830.2016.1139749⟩
Publication Year :
2016
Publisher :
HAL CCSD, 2016.

Abstract

International audience; 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.

Details

Language :
English
ISSN :
13647830 and 17413559
Database :
OpenAIRE
Journal :
Combustion Theory and Modelling, Combustion Theory and Modelling, Taylor & Francis, 2016, 20 (3), pp.393-409. ⟨10.1080/13647830.2016.1139749⟩
Accession number :
edsair.doi.dedup.....d4c879b20f64e8501b4c4037c881c009