One-dimensional detonation waves are simulated with the three-step chain branching reaction model, and the instability criterion is studied. The ratio of the induction zone length and the reaction zone length may be used to decide the instability, and the detonation becomes unstable with the high ratio. However, the ratio is not invariable with different heat release values. The critical ratio, corresponding to the transition from the stable detonation to the unstable detonation, has a negative correlation with the heat release. An empirical relation of the Chapman-Jouguet Mach number and the length ratio is proposed as the instability criterion
e sa s be fifth unstable detonation waves. The study shows that the rate of convergence depends on t...
Detonation propagation is unsteady due to the innate instability of the reaction zone structure. Up...
In this study, the surface instability of oblique detonation waves (ODW) formed by two-dimensional, ...
One-dimensional detonation waves are simulated with the three-step chain branching reaction model, a...
Classical modes of one-dimensional (1D) detonation characterized by a simplified reaction model are ...
There is a definite inconsistency between the classical ZND theory of detonation and contemporary ex...
The nonlinear dynamics of one-dimensional pulsating detonations were studied numerically using a sim...
The hydrodynamic mechanisms behind the instability and failure of a one-dimensional pulsating detona...
This article shows that, unlike the situation in many other combustion problems, the progress toward...
The mechanism of detonation instability and deflagration-to-detonation transition is studied by one-...
The chemical-gas dynamic mechanisms behind the instability and failure of a one-dimensional pulsatin...
The structure of the steady planar detonation wave is analyzed for three-step chain-branching kineti...
A numerical study was performed to investigate the detailed effects of activation energy Ea on the o...
International audienceTwo-dimensional inviscid simulations are conducted to assess the effect of che...
A linear stability of freely propagating, adiabatic premixed flames is investigated in the context o...
e sa s be fifth unstable detonation waves. The study shows that the rate of convergence depends on t...
Detonation propagation is unsteady due to the innate instability of the reaction zone structure. Up...
In this study, the surface instability of oblique detonation waves (ODW) formed by two-dimensional, ...
One-dimensional detonation waves are simulated with the three-step chain branching reaction model, a...
Classical modes of one-dimensional (1D) detonation characterized by a simplified reaction model are ...
There is a definite inconsistency between the classical ZND theory of detonation and contemporary ex...
The nonlinear dynamics of one-dimensional pulsating detonations were studied numerically using a sim...
The hydrodynamic mechanisms behind the instability and failure of a one-dimensional pulsating detona...
This article shows that, unlike the situation in many other combustion problems, the progress toward...
The mechanism of detonation instability and deflagration-to-detonation transition is studied by one-...
The chemical-gas dynamic mechanisms behind the instability and failure of a one-dimensional pulsatin...
The structure of the steady planar detonation wave is analyzed for three-step chain-branching kineti...
A numerical study was performed to investigate the detailed effects of activation energy Ea on the o...
International audienceTwo-dimensional inviscid simulations are conducted to assess the effect of che...
A linear stability of freely propagating, adiabatic premixed flames is investigated in the context o...
e sa s be fifth unstable detonation waves. The study shows that the rate of convergence depends on t...
Detonation propagation is unsteady due to the innate instability of the reaction zone structure. Up...
In this study, the surface instability of oblique detonation waves (ODW) formed by two-dimensional, ...