The current study primarily aimed to simulate detonation initiation via turbulent jet flame acceleration in partial-premixed H2-air mixtures. Different vertical concentration gradients were generated by varying the duration of hydrogen injection (diffusion time) within an enclosed channel filled with air. H2-air mixtures with average hydrogen concentrations of 22.5% (lean mixture) and 30% (near stoichiometric mixture) were investigated at diffusion times of 3, 5, and 60 s. Numerical results show that the vertical concentration gradient significantly influences the early stage of flame acceleration (FA). In the stratified lean mixture, detonation began at all the diffusion times, and comparing the flame-speed graphs showed that a decrease in...
The influence of initial mixture temperature on deflagration-to-detonation transition (DDT) has been...
During a severe accident in a nuclear power plant, hydrogen can be generated, leading to risks of po...
An experimental study of flame propagation, acceleration and transition to detonation in hydrogen-ai...
The present study aims to test the capability of our newly developed density-based solver, Explosion...
Numerical investigations have been conducted for flame acceleration and transition to detonation in ...
A numerical approach has been developed to simulate flame acceleration and deflagration to detonatio...
Two-dimensional numerical simulation is performed with the open-source program AMROC to study the ef...
In this study, the impact of hydrogen concentration on deflagration to detonation transition (DDT) a...
During an accidental release, hydrogen disperses very quickly in air due to a relatively high densit...
A numerical approach has been developed to simulate flame acceleration and deflagration to detonatio...
Computational Fluid Dynamics solvers are developed for explosion modelling and hazards analysis in H...
Numerical investigations have been conducted for flame acceleration and transition to detonation in ...
Two-dimensional laminar flame simulations of a forced-ignition event in an initially quiescent mixin...
Explosions in homogeneous reactive mixtures have been widely studied both experimentally and numeric...
Explosions in homogeneous reactive mixtures have been widely studied both experimentally and numeric...
The influence of initial mixture temperature on deflagration-to-detonation transition (DDT) has been...
During a severe accident in a nuclear power plant, hydrogen can be generated, leading to risks of po...
An experimental study of flame propagation, acceleration and transition to detonation in hydrogen-ai...
The present study aims to test the capability of our newly developed density-based solver, Explosion...
Numerical investigations have been conducted for flame acceleration and transition to detonation in ...
A numerical approach has been developed to simulate flame acceleration and deflagration to detonatio...
Two-dimensional numerical simulation is performed with the open-source program AMROC to study the ef...
In this study, the impact of hydrogen concentration on deflagration to detonation transition (DDT) a...
During an accidental release, hydrogen disperses very quickly in air due to a relatively high densit...
A numerical approach has been developed to simulate flame acceleration and deflagration to detonatio...
Computational Fluid Dynamics solvers are developed for explosion modelling and hazards analysis in H...
Numerical investigations have been conducted for flame acceleration and transition to detonation in ...
Two-dimensional laminar flame simulations of a forced-ignition event in an initially quiescent mixin...
Explosions in homogeneous reactive mixtures have been widely studied both experimentally and numeric...
Explosions in homogeneous reactive mixtures have been widely studied both experimentally and numeric...
The influence of initial mixture temperature on deflagration-to-detonation transition (DDT) has been...
During a severe accident in a nuclear power plant, hydrogen can be generated, leading to risks of po...
An experimental study of flame propagation, acceleration and transition to detonation in hydrogen-ai...