In this study, 3D premixed turbulent ammonia-hydrogen flames in air were studied using DNS. Mixtures with 75%, 50% and 25% ammonia (by mole fraction in the fuel mixture) and equivalence ratios of 0.8, 1.0 and 1.2 were studied. The studies were conducted in a decaying turbulence field with an initial Karlovitz number of 10. The flame structure and the influence of ammonia and the equivalence ratio were first studied. It was observed that the increase in equivalence ratio smoothened out the small scale wrinkles while leading to strongly curved leading edges. Increasing the amount of hydrogen in the fuel mixtures also led to increasingly distorted flames. These effects are attributed to local increases in the equivalence ratio due to the prefe...
A common way of carrying out LES or RANS of premixed and partially premixed turbulent flames with ta...
The structure and propagation of turbulent lean premixed high hydrogen content syngas flames at pres...
Using high-speed Schlieren and Shadow photography, the instabilities of outwardly propagating spheri...
In this study, 3D premixed turbulent ammonia-hydrogen flames in air were studied using DNS. Mixtures...
Three-dimensional direct numerical simulations with detailed chemistry were performed to investigate...
Ammonia NH3 has received considerable attention as a near future carbon-free synthetic fuel due to i...
The structure and propagation of turbulent lean premixed high hydrogen content syngas flames at pres...
Ammonia, a carbon-free source of hydrogen has recently gained considerable attention as energy solut...
This paper presents three-dimensional direct numerical simulations of lean premixed hydrogen flames ...
Three-dimensional direct numerical simulations with detailed chemistry were performed to investigate...
International audienceAmmonia appears a promising hydrogen-energy carrier for renewable energy as we...
Unsteady three-dimensional Direct Numerical Simulation (DNS) data obtained from 16 statistically pla...
The combustion characteristics of ammonia and ammonia-hydrogen fuel blends under spark-ignited turbu...
This study addresses the effects of preferential diffusion on flame structure and propagation of hig...
A common way of carrying out LES or RANS of premixed and partially premixed turbulent flames with ta...
The structure and propagation of turbulent lean premixed high hydrogen content syngas flames at pres...
Using high-speed Schlieren and Shadow photography, the instabilities of outwardly propagating spheri...
In this study, 3D premixed turbulent ammonia-hydrogen flames in air were studied using DNS. Mixtures...
Three-dimensional direct numerical simulations with detailed chemistry were performed to investigate...
Ammonia NH3 has received considerable attention as a near future carbon-free synthetic fuel due to i...
The structure and propagation of turbulent lean premixed high hydrogen content syngas flames at pres...
Ammonia, a carbon-free source of hydrogen has recently gained considerable attention as energy solut...
This paper presents three-dimensional direct numerical simulations of lean premixed hydrogen flames ...
Three-dimensional direct numerical simulations with detailed chemistry were performed to investigate...
International audienceAmmonia appears a promising hydrogen-energy carrier for renewable energy as we...
Unsteady three-dimensional Direct Numerical Simulation (DNS) data obtained from 16 statistically pla...
The combustion characteristics of ammonia and ammonia-hydrogen fuel blends under spark-ignited turbu...
This study addresses the effects of preferential diffusion on flame structure and propagation of hig...
A common way of carrying out LES or RANS of premixed and partially premixed turbulent flames with ta...
The structure and propagation of turbulent lean premixed high hydrogen content syngas flames at pres...
Using high-speed Schlieren and Shadow photography, the instabilities of outwardly propagating spheri...