The evolution of a competitive-consecutive chemical reaction is\ud computed numerically in a two-dimensional chaotic fluid flow with\ud initially segregated reactants. Results from numerical simulations are\ud used to evaluate a variety of reduced models commonly adopted to model\ud the full advection-reaction-diffusion problem. Particular emphasis is\ud placed upon fast reactions, where the yield varies most significantly\ud with Peclet number (the ratio of diffusive to advective time scales).\ud When effects of the fluid mechanical mixing are strongest, we find that\ud the yield of the reaction is underestimated by a one-dimensional\ud lamellar model that ignores the effects of fluid mixing, but\ud overestimated by two other lamellar mode...
The aim of these notes is to provide an overview of the different approaches used to address the adv...
This thesis studies an infinitely fast bimolecular chemical reaction in a two-dimensional Navier-Sto...
Chemical oscillations generated by the {Belousov-Zhabotinsky} reaction in batch unstirred reactors, ...
The evolution of a competitive-consecutive chemical reaction is computed numerically in a two-dimen...
The interplay between diffusive and convective mixing processes may have a strong, impact upon appar...
We describe and evaluate two reduced models for nonlinear chemical reactions in a chaotic laminar fl...
We study the evolution of a localized perturbation in a chemical system with multiple homogeneous st...
A reaction–diffusion–convection (RDC) model is introduced as a convenient framework for studying ins...
We investigate the origin of deterministic chaos in the Belousov–Zhabotinsky (BZ) reaction carried o...
In this significant paper, submitted in 2006 and published in 2006, we showed that the progress of a...
Reactive mixing in liquids can be quantitatively described by combining chemical kinetics and hydrod...
This thesis deals with mixing of passive scalars in a turbulent flow. The passive scalars are releas...
Laboratory experiments and numerical simulations have shown that the outcome of cyclic competition i...
Simple kinetic models capture the propagation and evolution of patterns produced by competing autoca...
In many of the models applied to simulations of turbulent transport and turbulent combustion, the mi...
The aim of these notes is to provide an overview of the different approaches used to address the adv...
This thesis studies an infinitely fast bimolecular chemical reaction in a two-dimensional Navier-Sto...
Chemical oscillations generated by the {Belousov-Zhabotinsky} reaction in batch unstirred reactors, ...
The evolution of a competitive-consecutive chemical reaction is computed numerically in a two-dimen...
The interplay between diffusive and convective mixing processes may have a strong, impact upon appar...
We describe and evaluate two reduced models for nonlinear chemical reactions in a chaotic laminar fl...
We study the evolution of a localized perturbation in a chemical system with multiple homogeneous st...
A reaction–diffusion–convection (RDC) model is introduced as a convenient framework for studying ins...
We investigate the origin of deterministic chaos in the Belousov–Zhabotinsky (BZ) reaction carried o...
In this significant paper, submitted in 2006 and published in 2006, we showed that the progress of a...
Reactive mixing in liquids can be quantitatively described by combining chemical kinetics and hydrod...
This thesis deals with mixing of passive scalars in a turbulent flow. The passive scalars are releas...
Laboratory experiments and numerical simulations have shown that the outcome of cyclic competition i...
Simple kinetic models capture the propagation and evolution of patterns produced by competing autoca...
In many of the models applied to simulations of turbulent transport and turbulent combustion, the mi...
The aim of these notes is to provide an overview of the different approaches used to address the adv...
This thesis studies an infinitely fast bimolecular chemical reaction in a two-dimensional Navier-Sto...
Chemical oscillations generated by the {Belousov-Zhabotinsky} reaction in batch unstirred reactors, ...