While hydrogen is attractive as a clean fuel, it poses a significant risk due to its highreactivity. This paper presents Large Eddy Simulations (LES) of turbulent premixed flames of hydrogeneair mixtures propagating in a small scale combustion chamber. The sub-grid-scale model for reaction rate uses a dynamic procedure for calculating the flame/ flow interactions. Sensitivity of the results to the ignition source and to different flow configurations is examined. Using the relevant parameter from the calculations, the flames are located on the regimes of combustion and are found to span the thin and corrugated flamelet regimes, hence confirming the validity of flamelet modelling. The calculations are compared to published experimental data f...
Large Eddy Simulation (LES) was used to study transient interactions between hydrogen-enriched metha...
Abstract. The application of LES to supersonic reactive flows is still a technical and scientific ch...
The application of large-eddy simulation (LES) to the prediction of H2-enriched lean methane–air tur...
While hydrogen is attractive as a clean fuel, it poses a significant risk due to its highreactivity....
Numerical experiments have been carried out to study turbulent premixed flames of hydrogen-air mixtu...
© 2020 ASME Although hydrogen is a clean and renewable fuel, there is still a need to understand and...
The increasing use of hydrogen as a renewable source of energy underlines the need to be able to ass...
Turbulent premixed flames are present in a wide range of applications. The nature of these flames tr...
Hydrogen (H2) enrichment of hydrocarbon fuels in lean premixed systems is desirable since it can lea...
This paper presents numerical study of turbulent premixed flames characteristics of two different fu...
In this study large eddy simulation (LES) technique has been used to predict the fuel variability ef...
International audienceThis work evaluates the capabilities of Large Eddy Simulation with perfectly s...
Hydrogen (H2) enrichment of hydrocarbon fuels in lean premixed systems is desirable since it can lea...
Large-eddy simulation (LES) of a lean-premixed hydrogen turbulent jet flame with combustion instabil...
International audienceThe modelling of premixed combustion in the presence of a turbulent field in t...
Large Eddy Simulation (LES) was used to study transient interactions between hydrogen-enriched metha...
Abstract. The application of LES to supersonic reactive flows is still a technical and scientific ch...
The application of large-eddy simulation (LES) to the prediction of H2-enriched lean methane–air tur...
While hydrogen is attractive as a clean fuel, it poses a significant risk due to its highreactivity....
Numerical experiments have been carried out to study turbulent premixed flames of hydrogen-air mixtu...
© 2020 ASME Although hydrogen is a clean and renewable fuel, there is still a need to understand and...
The increasing use of hydrogen as a renewable source of energy underlines the need to be able to ass...
Turbulent premixed flames are present in a wide range of applications. The nature of these flames tr...
Hydrogen (H2) enrichment of hydrocarbon fuels in lean premixed systems is desirable since it can lea...
This paper presents numerical study of turbulent premixed flames characteristics of two different fu...
In this study large eddy simulation (LES) technique has been used to predict the fuel variability ef...
International audienceThis work evaluates the capabilities of Large Eddy Simulation with perfectly s...
Hydrogen (H2) enrichment of hydrocarbon fuels in lean premixed systems is desirable since it can lea...
Large-eddy simulation (LES) of a lean-premixed hydrogen turbulent jet flame with combustion instabil...
International audienceThe modelling of premixed combustion in the presence of a turbulent field in t...
Large Eddy Simulation (LES) was used to study transient interactions between hydrogen-enriched metha...
Abstract. The application of LES to supersonic reactive flows is still a technical and scientific ch...
The application of large-eddy simulation (LES) to the prediction of H2-enriched lean methane–air tur...