The propagation of a flame front in a homogeneous and initially quiescent hydrogen-air mixture in a channel with exit contraction is numerically analyzed by means of Computational Fluid Dynamics. For the given configuration, the compressibility effects are important, the average pressure increases in time due to the exit contraction, and pressure waves occur, which affect the flame propagation. Flowturbulence is modelled by the Realizable k-e model. In modelling combustion, turbulence-chemistry interactions are neglected. Predictions are compared with the measurements for evolution of the flame shape, propagation speed and pressure. It is observed that the flame propagation speed, and, thus, the rate of pressure increase are over-predicted ...
A computational study is performed to investigate the effects of hydrogen addition on the fundamenta...
The effect of pressure boundary rupture rate on hydrogen spontaneous ignition has been numerically i...
The structure and propagation of turbulent lean premixed high hydrogen content syngas flames at pres...
Modeling hydrogen-air flames is challenging for several reasons. Due to its high diffusivity and rea...
This paper is aimed at an experimental investigation on effects of initial pressure on flame propaga...
The safe use of hydrogen requires a better understanding of the transition of an accidental slow def...
Atmospheric, laminar, stoichiometric, premixed hydrogen-air flames in a diverging channel are invest...
An experimental study of hydrogen/air premixed flame propagation in a closed rectangular channel wit...
Direct numerical simulations are performed to investigate the transient upstream flame propagation (...
A numerical approach has been developed to simulate flame acceleration and deflagration to detonatio...
In the case of a hypothetical severe accident, a significant amount of hydrogen can be released. Mix...
Spherically expanding turbulent premixed hydrogen-air flames are computed using the Reynolds-Average...
Interactions of turbulence, molecular transport, and energy transport, coupled with chemistry play a...
A computational study was conducted on expanding spherical pre-mixed flames to investigate the dynam...
During a severe accident in a nuclear power plant, hydrogen can be generated, leading to risks of po...
A computational study is performed to investigate the effects of hydrogen addition on the fundamenta...
The effect of pressure boundary rupture rate on hydrogen spontaneous ignition has been numerically i...
The structure and propagation of turbulent lean premixed high hydrogen content syngas flames at pres...
Modeling hydrogen-air flames is challenging for several reasons. Due to its high diffusivity and rea...
This paper is aimed at an experimental investigation on effects of initial pressure on flame propaga...
The safe use of hydrogen requires a better understanding of the transition of an accidental slow def...
Atmospheric, laminar, stoichiometric, premixed hydrogen-air flames in a diverging channel are invest...
An experimental study of hydrogen/air premixed flame propagation in a closed rectangular channel wit...
Direct numerical simulations are performed to investigate the transient upstream flame propagation (...
A numerical approach has been developed to simulate flame acceleration and deflagration to detonatio...
In the case of a hypothetical severe accident, a significant amount of hydrogen can be released. Mix...
Spherically expanding turbulent premixed hydrogen-air flames are computed using the Reynolds-Average...
Interactions of turbulence, molecular transport, and energy transport, coupled with chemistry play a...
A computational study was conducted on expanding spherical pre-mixed flames to investigate the dynam...
During a severe accident in a nuclear power plant, hydrogen can be generated, leading to risks of po...
A computational study is performed to investigate the effects of hydrogen addition on the fundamenta...
The effect of pressure boundary rupture rate on hydrogen spontaneous ignition has been numerically i...
The structure and propagation of turbulent lean premixed high hydrogen content syngas flames at pres...