AbstractThis paper presents models that are suitable for computing steady and unsteady gaseous combustion with finite rate chemistry. Reynold averaging and large eddy simulation (LES) techniques are used to model turbulence for the steady and unsteady cases, respectively. In LES, the Reynold stress terms are modelled by a linear combination of the scale-similarity and eddy dissipation models while the cross terms are of the scale-similarity type. In Reynold averaging, the conventional k–ϵ two-equation model is used. For the chemical reactions, a 3-step mechanism is used for methane oxidation and the extended Zeldovich and N2O mechanism are used for NO formation. The combustion model is a hybrid model of the Arrhenius type and a modified edd...
International audienceFlame ignition, stabilization and extinction or pollutant predictions are cruc...
International audienceFlame ignition, stabilization and extinction or pollutant predictions are cruc...
International audienceFlame ignition, stabilization and extinction or pollutant predictions are cruc...
AbstractThis paper presents models that are suitable for computing steady and unsteady gaseous combu...
Combustion is a complex phenomenon of interest that combines chemical reactions and turbulent flows....
In this work, a novel model for Large Eddy Simulations (LES) of high Reynolds mo...
Turbulence and chemistry interaction (TCI) is still an open problem in the combustion science. Model...
Turbulence and chemistry interaction (TCI) is still an open problem in the combustion science. Model...
In this work, a novel model for Large Eddy Simulations (LES) of high Reynolds mo...
Turbulent combustion is the basic physical phenomenon responsible for efficient energy release by an...
Turbulent combustion is the basic physical phenomenon responsible for efficient energy release by an...
This paper describes the inclusion of detailed chemical reaction mechanisms in the framework of a tu...
© 2015 The Author(s). Published by Taylor & Francis.An algebraic reaction rate closure involving fil...
Abstract. Turbulence is a recurrent and recognised challenge for which the scientific community has ...
Combustion regimes approaching the unity Damkohler number present challenges due to the increase in ...
International audienceFlame ignition, stabilization and extinction or pollutant predictions are cruc...
International audienceFlame ignition, stabilization and extinction or pollutant predictions are cruc...
International audienceFlame ignition, stabilization and extinction or pollutant predictions are cruc...
AbstractThis paper presents models that are suitable for computing steady and unsteady gaseous combu...
Combustion is a complex phenomenon of interest that combines chemical reactions and turbulent flows....
In this work, a novel model for Large Eddy Simulations (LES) of high Reynolds mo...
Turbulence and chemistry interaction (TCI) is still an open problem in the combustion science. Model...
Turbulence and chemistry interaction (TCI) is still an open problem in the combustion science. Model...
In this work, a novel model for Large Eddy Simulations (LES) of high Reynolds mo...
Turbulent combustion is the basic physical phenomenon responsible for efficient energy release by an...
Turbulent combustion is the basic physical phenomenon responsible for efficient energy release by an...
This paper describes the inclusion of detailed chemical reaction mechanisms in the framework of a tu...
© 2015 The Author(s). Published by Taylor & Francis.An algebraic reaction rate closure involving fil...
Abstract. Turbulence is a recurrent and recognised challenge for which the scientific community has ...
Combustion regimes approaching the unity Damkohler number present challenges due to the increase in ...
International audienceFlame ignition, stabilization and extinction or pollutant predictions are cruc...
International audienceFlame ignition, stabilization and extinction or pollutant predictions are cruc...
International audienceFlame ignition, stabilization and extinction or pollutant predictions are cruc...