Numerical simulations of spontaneous flame acceleration are performed within the problem of flame transition to detonation in two-dimensional channels. The acceleration is studied in the extremely wide range of flame front velocity changing by 3 orders of magnitude during the process. Flame accelerates from realistically small initial velocity (with Mach number about 10(-3)) to supersonic speed in the reference frame of the tube walls. It is shown that flame acceleration undergoes three distinctive stages: (1) initial exponential acceleration in the quasi-isobaric regime, (2) almost linear increase in the flame speed to supersonic values, and (3) saturation to a stationary high-speed deflagration velocity. The saturation velocity of deflagr...
Propulsion systems are influenced by the efficiency of combustion systems. One approach to substanti...
In the process of deflagration-to-detonation transition (DDT) in reactive gases, the flame typically...
Numerical simulations are performed to study the mechanism of deflagration to detonation transition ...
Numerical simulations of spontaneous flame acceleration are performed within the problem of flame tr...
It was demonstrated recently in Bychkov et al. [Bychkov et al., Phys. Rev. Lett. 101 (2008) 1645011,...
Abstract We investigate the influence of gas compression on the developed stages of flame accelerati...
The present paper addresses the phenomenon of spontaneous acceleration of a pre-mixed flame front pr...
Various premixed flame phenomena are studied by means of direct numerical simulations of the complet...
We explain the physical mechanism of ultrafast flame acceleration in obstructed channels used in mod...
Acceleration of premixed laminar flames in the early stages of burning in long tubes is considered. ...
The mechanism of finger flame acceleration at the early stage of burning in tubes was studied experi...
Spontaneous flame acceleration leading to explosion triggering in open tubes/channels due to wall fr...
The physical mechanism of fast flame acceleration in tubes with obstacles is explained by recognizin...
Premixed flame acceleration is especially strong in the case of flame propagation in tubes or channe...
International audienceDeflagration-to detonation transition (DDT) of the tip of self-accelerating el...
Propulsion systems are influenced by the efficiency of combustion systems. One approach to substanti...
In the process of deflagration-to-detonation transition (DDT) in reactive gases, the flame typically...
Numerical simulations are performed to study the mechanism of deflagration to detonation transition ...
Numerical simulations of spontaneous flame acceleration are performed within the problem of flame tr...
It was demonstrated recently in Bychkov et al. [Bychkov et al., Phys. Rev. Lett. 101 (2008) 1645011,...
Abstract We investigate the influence of gas compression on the developed stages of flame accelerati...
The present paper addresses the phenomenon of spontaneous acceleration of a pre-mixed flame front pr...
Various premixed flame phenomena are studied by means of direct numerical simulations of the complet...
We explain the physical mechanism of ultrafast flame acceleration in obstructed channels used in mod...
Acceleration of premixed laminar flames in the early stages of burning in long tubes is considered. ...
The mechanism of finger flame acceleration at the early stage of burning in tubes was studied experi...
Spontaneous flame acceleration leading to explosion triggering in open tubes/channels due to wall fr...
The physical mechanism of fast flame acceleration in tubes with obstacles is explained by recognizin...
Premixed flame acceleration is especially strong in the case of flame propagation in tubes or channe...
International audienceDeflagration-to detonation transition (DDT) of the tip of self-accelerating el...
Propulsion systems are influenced by the efficiency of combustion systems. One approach to substanti...
In the process of deflagration-to-detonation transition (DDT) in reactive gases, the flame typically...
Numerical simulations are performed to study the mechanism of deflagration to detonation transition ...