A thermodynamic model has been developed to calculate burning speed and entropy production of transient expending spherical laminar flame in an enclosed vessel. The model also predicts the particle trajectories of both unburned and burned gases in the vessel. The input to this model is the dynamic pressure rise due to combustion process. The unburned gases are divided into three regions: The core unburned gases which are compressed isentropically, the vessel walls and electrodes boundary layer gases, and gases in the preheat zone of the flames. The burned gases are in many shells having the same pressure but different temperatures. The model also includes radiation losses from the burned gases to vessel walls. Entropy production due to irre...
AbstractThe calculations of laminar burning velocity are mostly based on empirical correlations obta...
This study considers numerical simulation of the combustion of methane with air, including oxygen an...
This study considers numerical simulation of the combustion of methane with air including 21% oxygen...
Premixed laminar combustion in closed vessels has been widely used for the determination of laminar ...
A theoretical model for entropy generation and utilization of work potential (exergy) in flame impin...
A methodology to determine the laminar burning velocity from closed vessel gas explosionsis explored...
International audiencePremixed laminar flame speed determination is a crucial point since its values...
WOS:000385909500022International audienceThe determination of laminar burning velocity is a complex ...
International audienceWe build in this paper a numerical solution procedure to compute the flow indu...
Large quantities of flammable gases are used in both commercial and residential applications. The ri...
International audienceFacilities using spherically expanding flame in closed vessels are generally u...
A novel multiple burned gas zone model has been used to determine the temperature distribution withi...
This contribution presents a straightforward strategy to investigate the entropy production in strat...
Thermodynamic foundations of the thermal entropy production are rested on the concept of lost heat, ...
Laminar burning velocities, S-L, of nitromethane and air flames at 1 atm and initial gas temperature...
AbstractThe calculations of laminar burning velocity are mostly based on empirical correlations obta...
This study considers numerical simulation of the combustion of methane with air, including oxygen an...
This study considers numerical simulation of the combustion of methane with air including 21% oxygen...
Premixed laminar combustion in closed vessels has been widely used for the determination of laminar ...
A theoretical model for entropy generation and utilization of work potential (exergy) in flame impin...
A methodology to determine the laminar burning velocity from closed vessel gas explosionsis explored...
International audiencePremixed laminar flame speed determination is a crucial point since its values...
WOS:000385909500022International audienceThe determination of laminar burning velocity is a complex ...
International audienceWe build in this paper a numerical solution procedure to compute the flow indu...
Large quantities of flammable gases are used in both commercial and residential applications. The ri...
International audienceFacilities using spherically expanding flame in closed vessels are generally u...
A novel multiple burned gas zone model has been used to determine the temperature distribution withi...
This contribution presents a straightforward strategy to investigate the entropy production in strat...
Thermodynamic foundations of the thermal entropy production are rested on the concept of lost heat, ...
Laminar burning velocities, S-L, of nitromethane and air flames at 1 atm and initial gas temperature...
AbstractThe calculations of laminar burning velocity are mostly based on empirical correlations obta...
This study considers numerical simulation of the combustion of methane with air, including oxygen an...
This study considers numerical simulation of the combustion of methane with air including 21% oxygen...