The structure and propagation of turbulent lean premixed high hydrogen content syngas flames at pressure values of 1 bar, 2 bar and 4 bar are studied using three-dimensional direct numerical simulations. Simulations for each pressure considered were performed for three different initial turbulence levels at the turbulent Reynolds numbers of 50, 100 and 150. The DNS of expanding spherical flames has taken into account detailed chemical kinetics and preferential diffusion effects. The mixture-averaged transport model has been employed. Effects of pressure on flame structures, heat release rate and radical species distributions under low to high initial turbulent conditions are examined. The results show that elevated pressures greatly influen...
A Direct Numerical Simulation (DNS) study of statistically one-dimensional and planar, lean complex-...
In this study, 3D premixed turbulent ammonia-hydrogen flames in air were studied using DNS. Mixtures...
Turbulent premixed flames are used in many energy conversion and propulsion devices. The efficiency ...
The structure and propagation of turbulent lean premixed high hydrogen content syngas flames at pres...
This study addresses the effects of preferential diffusion on flame structure and propagation of hig...
This study addresses the effects of preferential diffusion on flame structure and propagation of hig...
This paper investigates influence of elevated pressures on flame structure and propagation of lean s...
\u3cp\u3eThree-dimensional direct numerical simulations with detailed chemistry were performed to in...
Three-dimensional direct numerical simulations with detailed chemistry were performed to investigate...
The objective of this work was to investigate the influence of preferential diffusion on flame struc...
This work describes analyses of impact of chemical kinetic mechanisms on species mass fraction distr...
Lean premixed combustion is a promising strategy for the next generation of gas turbines, which is c...
This paper is a continuation of the work we carried out in Part I (Wen et al., 2021), studying the f...
This paper presents three-dimensional direct numerical simulations of lean premixed hydrogen flames ...
This paper presents three-dimensional direct numerical simulations of lean premixed turbulent H2/air...
A Direct Numerical Simulation (DNS) study of statistically one-dimensional and planar, lean complex-...
In this study, 3D premixed turbulent ammonia-hydrogen flames in air were studied using DNS. Mixtures...
Turbulent premixed flames are used in many energy conversion and propulsion devices. The efficiency ...
The structure and propagation of turbulent lean premixed high hydrogen content syngas flames at pres...
This study addresses the effects of preferential diffusion on flame structure and propagation of hig...
This study addresses the effects of preferential diffusion on flame structure and propagation of hig...
This paper investigates influence of elevated pressures on flame structure and propagation of lean s...
\u3cp\u3eThree-dimensional direct numerical simulations with detailed chemistry were performed to in...
Three-dimensional direct numerical simulations with detailed chemistry were performed to investigate...
The objective of this work was to investigate the influence of preferential diffusion on flame struc...
This work describes analyses of impact of chemical kinetic mechanisms on species mass fraction distr...
Lean premixed combustion is a promising strategy for the next generation of gas turbines, which is c...
This paper is a continuation of the work we carried out in Part I (Wen et al., 2021), studying the f...
This paper presents three-dimensional direct numerical simulations of lean premixed hydrogen flames ...
This paper presents three-dimensional direct numerical simulations of lean premixed turbulent H2/air...
A Direct Numerical Simulation (DNS) study of statistically one-dimensional and planar, lean complex-...
In this study, 3D premixed turbulent ammonia-hydrogen flames in air were studied using DNS. Mixtures...
Turbulent premixed flames are used in many energy conversion and propulsion devices. The efficiency ...