This paper describes the inclusion of detailed chemical reaction mechanisms in the framework of a turbulent flame simulation. Calculations are based on a finite-volume solution procedure including sub-models for turbulent flow, radiative heat transfer, combustion of fuel, and pollutant formation. The inter-action of chemical reactions and turbulence is modeled using the eddy dissipation concept (EDC), which has been extended to include detailed chemical reaction mechanisms. For the oxidation of methane, a detailed C1/C2 mechanism is compared with a skeletal mechanism, which is also used to calculate the formation of nitrogen oxide. The basic idea of incorporating the reaction mechanism into the EDC is described. The numerical effort of the ...
Soot and radiation play an important role when designing practical combustion devices, and great eff...
Soot and radiation play an important role when designing practical combustion devices, and great eff...
This study describes a numerical effort to predict pollutant species such as CO and NO formed in pre...
Four alternative ways to describe methane oxidation that all can be used in computational fluid dyna...
Combustion is a complex phenomenon of interest that combines chemical reactions and turbulent flows....
In this paper specious transport and gaseous combustion have been modeled numerically using computa...
AbstractThis paper presents models that are suitable for computing steady and unsteady gaseous combu...
Combustion is an important phenomenon in many engineering applications; com-bustion of hydrocarbons ...
The problem of pollutant emissions from combustion devices is moving the attention towards the devel...
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...
The problem of pollutant emissions from combustion devices is moving the attention towards the devel...
The problem of pollutant emissions from combustion devices is moving the attention towards the devel...
This study describes a numerical effort to predict pollutant species such as CO and NO formed in pre...
The problem of pollutant emissions from combustion devices is moving the attention towards the devel...
Soot and radiation play an important role when designing practical combustion devices, and great eff...
Soot and radiation play an important role when designing practical combustion devices, and great eff...
This study describes a numerical effort to predict pollutant species such as CO and NO formed in pre...
Four alternative ways to describe methane oxidation that all can be used in computational fluid dyna...
Combustion is a complex phenomenon of interest that combines chemical reactions and turbulent flows....
In this paper specious transport and gaseous combustion have been modeled numerically using computa...
AbstractThis paper presents models that are suitable for computing steady and unsteady gaseous combu...
Combustion is an important phenomenon in many engineering applications; com-bustion of hydrocarbons ...
The problem of pollutant emissions from combustion devices is moving the attention towards the devel...
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...
The problem of pollutant emissions from combustion devices is moving the attention towards the devel...
The problem of pollutant emissions from combustion devices is moving the attention towards the devel...
This study describes a numerical effort to predict pollutant species such as CO and NO formed in pre...
The problem of pollutant emissions from combustion devices is moving the attention towards the devel...
Soot and radiation play an important role when designing practical combustion devices, and great eff...
Soot and radiation play an important role when designing practical combustion devices, and great eff...
This study describes a numerical effort to predict pollutant species such as CO and NO formed in pre...