Surface-tension gradients, which can exist across autocatalytic chemical fronts propagating in thin layers of solution in contact with air, can induce capillary flows that are also called Marangoni flows. These flows in turn affect the spatio-temporal evolution of the concentration fields. This paper addresses the influence of the thickness of the solution layer on the chemo-hydrodynamic pattern resulting from such a coupling between autocatalytic reactions, diffusion and Marangoni effects, neglecting any buoyancy-driven effect. The system reaches an asymptotic dynamics characterized by a steady fluid vortex traveling at a constant speed with the front and deforming it. When the thickness of the fluid layer is increased, Marangoni effects a...
International audienceGradients of concentration and temperature across exothermic chemical fronts p...
In this paper, we review the related studies on the interphase mass transfer process accompanied wit...
Chemical reactions can interplay with hydrodynamic flows to generate various complex phenomena. Beca...
The nonlinear dynamics of A + B → C fronts is analyzed both numerically and theoretically in the pre...
This work describes a new mechanism for the emergence of oscillatory dynamics driven by the interact...
When traveling in thin solution layers, autocatalytic chemical fronts may be deformed and accelerate...
When traveling in thin solution layers, autocatalytic chemical fronts may be deformed and accelerate...
The Marangoni effect induced by mass transfer at the interface between two immiscible liquids displa...
Motivated by the existence of complex behaviors arising from interactions between chemistry and flui...
The Marangoni effect is a frequently observed phenomenon of enhancement of interphase mass transfer ...
For aqueous n-heptanol solutions and in a nearly two-dimensional flow, two strikingfeatures have bee...
Bistable chemical fronts can be deformed by Marangoni-driven convective flows induced by gradients o...
Mass transfer across fluid interfaces is important in chemical process technology. The properties of...
The phenomenon that liquid flows along a gas-liquid or a liquid-liquid interface from areas having l...
The Marangoni effect induced by mass transfer at the interface between two immiscible liquids displa...
International audienceGradients of concentration and temperature across exothermic chemical fronts p...
In this paper, we review the related studies on the interphase mass transfer process accompanied wit...
Chemical reactions can interplay with hydrodynamic flows to generate various complex phenomena. Beca...
The nonlinear dynamics of A + B → C fronts is analyzed both numerically and theoretically in the pre...
This work describes a new mechanism for the emergence of oscillatory dynamics driven by the interact...
When traveling in thin solution layers, autocatalytic chemical fronts may be deformed and accelerate...
When traveling in thin solution layers, autocatalytic chemical fronts may be deformed and accelerate...
The Marangoni effect induced by mass transfer at the interface between two immiscible liquids displa...
Motivated by the existence of complex behaviors arising from interactions between chemistry and flui...
The Marangoni effect is a frequently observed phenomenon of enhancement of interphase mass transfer ...
For aqueous n-heptanol solutions and in a nearly two-dimensional flow, two strikingfeatures have bee...
Bistable chemical fronts can be deformed by Marangoni-driven convective flows induced by gradients o...
Mass transfer across fluid interfaces is important in chemical process technology. The properties of...
The phenomenon that liquid flows along a gas-liquid or a liquid-liquid interface from areas having l...
The Marangoni effect induced by mass transfer at the interface between two immiscible liquids displa...
International audienceGradients of concentration and temperature across exothermic chemical fronts p...
In this paper, we review the related studies on the interphase mass transfer process accompanied wit...
Chemical reactions can interplay with hydrodynamic flows to generate various complex phenomena. Beca...