Surface tension driven convection affects the propagation of chemical reaction fronts in liquids. The changes in surface tension across the front generate this type of convection. The resulting fluid motion increases the speed and changes the shape of fronts as observed in the iodate-arsenous acid reaction. We calculate these effects using a thin front approximation, where the reaction front is modeled by an abrupt discontinuity between reacted and unreacted substances. We analyze the propagation of reaction fronts of small curvature. In this case the front propagation equation becomes the deterministic Kardar-Parisi-Zhang (KPZ) equation with the addition of fluid flow. These results are compared to calculations based on a set of reaction-d...
We study front propagation in stirred media using a simplified modelization of the turbulent flow. C...
This work describes a new mechanism for the emergence of oscillatory dynamics driven by the interact...
The linear stability of exothermic autocatalytic reaction fronts that convert unreacted fluid into ...
We study chemical reaction fronts described by the Kuramoto–Sivashinsky equation coupled to surface ...
We present a thin front model for the propagation of chemical reaction fronts in liquids inside a He...
The coupling of molecular diffusion and chemical autocatalysis leads to propagating chemical fronts....
Poiseuille flow between parallel plates advects chemical reaction fronts, distorting them and alter...
We present a theory for the vertical propagation of chemical waves near the onset of convection. Flu...
We present a theory for the transition to convection for flat chemical wave fronts propagating upwa...
The spatiotemporal dynamics of vertical autocatalytic fronts traveling horizontally in thin solution...
Chemical fronts propagating in vertical cylinders exhibit flat, nonaxisymmetric, and axisymmetric fr...
Density gradients across reaction fronts propagating vertically can lead to Rayleigh−Taylor in...
The linear stability of exothermic autocatalytic reaction fronts that convert unreacted fluid into a...
Motivated by the existence of complex behaviors arising from interactions between chemistry and flui...
We study front propagation in stirred media using a simplified modelization of the turbulent flow. C...
We study front propagation in stirred media using a simplified modelization of the turbulent flow. C...
This work describes a new mechanism for the emergence of oscillatory dynamics driven by the interact...
The linear stability of exothermic autocatalytic reaction fronts that convert unreacted fluid into ...
We study chemical reaction fronts described by the Kuramoto–Sivashinsky equation coupled to surface ...
We present a thin front model for the propagation of chemical reaction fronts in liquids inside a He...
The coupling of molecular diffusion and chemical autocatalysis leads to propagating chemical fronts....
Poiseuille flow between parallel plates advects chemical reaction fronts, distorting them and alter...
We present a theory for the vertical propagation of chemical waves near the onset of convection. Flu...
We present a theory for the transition to convection for flat chemical wave fronts propagating upwa...
The spatiotemporal dynamics of vertical autocatalytic fronts traveling horizontally in thin solution...
Chemical fronts propagating in vertical cylinders exhibit flat, nonaxisymmetric, and axisymmetric fr...
Density gradients across reaction fronts propagating vertically can lead to Rayleigh−Taylor in...
The linear stability of exothermic autocatalytic reaction fronts that convert unreacted fluid into a...
Motivated by the existence of complex behaviors arising from interactions between chemistry and flui...
We study front propagation in stirred media using a simplified modelization of the turbulent flow. C...
We study front propagation in stirred media using a simplified modelization of the turbulent flow. C...
This work describes a new mechanism for the emergence of oscillatory dynamics driven by the interact...
The linear stability of exothermic autocatalytic reaction fronts that convert unreacted fluid into ...