We study a mathematical model for high Lewis number combustion processes with the reaction rate of the form of an Arrhenius law with or without an ignition cut-off. An efficient method for the proof of the existence and uniqueness of combustion fronts is provided by geometric singular perturbation theory. The fronts supported by the model with very large Lewis numbers are small perturbations of the front supported by the model with infinite Lewis number
We study the existence of planar flames, in the case of a single-step chemical reaction with volumet...
We consider a condensed phase (or solid) combustion model and its linearization around the travellin...
Large-activation-energy asymptotic techniques are used to describe the effects of non-unity Lewis nu...
We consider wave fronts that arise in a mathematical model for high Lewis number combustion processe...
We consider wavefronts that arise in a mathematical model for high Lewis number combustion processes...
We consider wavefronts that arise in a mathematical model for high Lewis number combustion processes...
We consider wavefronts that arise in a mathematical model for high Lewis number combustion processes...
Abstract. The wavespeed and stability of wavefronts associated with a one-dimensional com-bustion mo...
The wavefronts associated with a one-dimensional combustion model with Arrhenius kinetics and no hea...
Abstract. The wavefronts associated with a one-dimensional combustion model with Arrhe-nius kinetics...
In this paper a mathematical model is considered that describes combustion processes characterized b...
In this paper a mathematical model is considered that describes combustion processes characterized b...
International audienceWe investigate a model of solid propellant combustion involving surface pyroly...
International audienceWe investigate a model of solid propellant combustion involving surface pyroly...
In this paper, the Cauchy problem of the system u1,t = Δu1 - u1u2m, u2,t = dΔu2 + u1u2m is studied, ...
We study the existence of planar flames, in the case of a single-step chemical reaction with volumet...
We consider a condensed phase (or solid) combustion model and its linearization around the travellin...
Large-activation-energy asymptotic techniques are used to describe the effects of non-unity Lewis nu...
We consider wave fronts that arise in a mathematical model for high Lewis number combustion processe...
We consider wavefronts that arise in a mathematical model for high Lewis number combustion processes...
We consider wavefronts that arise in a mathematical model for high Lewis number combustion processes...
We consider wavefronts that arise in a mathematical model for high Lewis number combustion processes...
Abstract. The wavespeed and stability of wavefronts associated with a one-dimensional com-bustion mo...
The wavefronts associated with a one-dimensional combustion model with Arrhenius kinetics and no hea...
Abstract. The wavefronts associated with a one-dimensional combustion model with Arrhe-nius kinetics...
In this paper a mathematical model is considered that describes combustion processes characterized b...
In this paper a mathematical model is considered that describes combustion processes characterized b...
International audienceWe investigate a model of solid propellant combustion involving surface pyroly...
International audienceWe investigate a model of solid propellant combustion involving surface pyroly...
In this paper, the Cauchy problem of the system u1,t = Δu1 - u1u2m, u2,t = dΔu2 + u1u2m is studied, ...
We study the existence of planar flames, in the case of a single-step chemical reaction with volumet...
We consider a condensed phase (or solid) combustion model and its linearization around the travellin...
Large-activation-energy asymptotic techniques are used to describe the effects of non-unity Lewis nu...