International audienceIn this paper we investigate, numerically as well as analytically, the influence of natural convection on thermal explosion in a two-dimensional square vessel, filled with a reactant mixture, whose vertical walls are adiabatic and horizontal walls are infinitely conducting, preset at an equal temperature T0. Natural convection enhances the heat losses at the boundaries while large temperatures tend to promote natural convection, thus yielding two competitive phenomena. The governing equations are taken to be the Navier--Stokes equations in the Oberbeck--Boussinesq approximation of low density variations coupled to the heat equation with an exponential chemical source term. This is valid because we consider a 1-step rea...
In the classical theory of thermal explosions, the condition for explosion to occur is that a partic...
When a gas undergoes an exothermic reaction in a closed vessel, spatial temperature gradients can de...
This paper investigates the effect of buoyancy-driven motion on the quasi-steady “slowly reacting” m...
International audienceIn this paper we investigate, numerically as well as analytically, the influen...
Thermal (or heat) explosion occurs in a reacting medium if the heat production due to an exothermic ...
When any exothermic reaction proceeds in an unstirred vessel, natural convection may develop. This f...
This paper investigates effects of buoyancy-driven motion on the ‘‘slowly reacting” mode of combusti...
Whether or not a chemical reaction in a fluid leads to an explosion is shown to depend on four times...
In this paper we study the interaction between natural convection and heat explosion in porous media...
[[abstract]]In an exothermic reactive chemical storage tank, a thermal explosion can occur when the ...
International audienceIn this article, we study the interaction between natural convection and heat ...
This paper investigates effects of buoyancy-driven motion on the "slowly reacting" mode of combustio...
We have analyzed the condition needed for thermal explosion to occur in a solid sample when the tem-...
International audienceIn this paper, we study complex dynamics of the interaction between natural co...
In the classical theory of thermal explosions, the condition for explosion to occur is that a partic...
When a gas undergoes an exothermic reaction in a closed vessel, spatial temperature gradients can de...
This paper investigates the effect of buoyancy-driven motion on the quasi-steady “slowly reacting” m...
International audienceIn this paper we investigate, numerically as well as analytically, the influen...
Thermal (or heat) explosion occurs in a reacting medium if the heat production due to an exothermic ...
When any exothermic reaction proceeds in an unstirred vessel, natural convection may develop. This f...
This paper investigates effects of buoyancy-driven motion on the ‘‘slowly reacting” mode of combusti...
Whether or not a chemical reaction in a fluid leads to an explosion is shown to depend on four times...
In this paper we study the interaction between natural convection and heat explosion in porous media...
[[abstract]]In an exothermic reactive chemical storage tank, a thermal explosion can occur when the ...
International audienceIn this article, we study the interaction between natural convection and heat ...
This paper investigates effects of buoyancy-driven motion on the "slowly reacting" mode of combustio...
We have analyzed the condition needed for thermal explosion to occur in a solid sample when the tem-...
International audienceIn this paper, we study complex dynamics of the interaction between natural co...
In the classical theory of thermal explosions, the condition for explosion to occur is that a partic...
When a gas undergoes an exothermic reaction in a closed vessel, spatial temperature gradients can de...
This paper investigates the effect of buoyancy-driven motion on the quasi-steady “slowly reacting” m...