A model for an imperfectly mixed batch reactor with the chlorine dioxide-iodine-malonic acid (CDIMA) reaction, with the mixing being modelled by chaotic advection, is considered. The reactor is assumed to be operating in oscillatory mode and the way in which an initial spatial perturbation becomes homogenized is examined. When the kinetics are such that the only stable homogeneous state is oscillatory then the perturbation is always entrained into these oscillations. The rate at which this occurs is relatively insensitive to the chemical effects, measured by the Damkohler number, and is comparable to the rate of homogenization of a passive contaminant. When both steady and oscillatory states are stable, spatially homogeneous states, two pos...
Chemical oscillations generated by the {Belousov-Zhabotinsky} reaction in batch unstirred reactors, ...
Chemical oscillations generated by the Belousov-Zhabotinsky reaction in batch unstirred reactors, sh...
Chemical oscillations generated by the Belousov-Zhabotinsky reaction in batch unstirred reactors, sh...
We study the evolution of a localized perturbation in a chemical system with multiple homogeneous st...
grantor: University of TorontoThis thesis examines the role of spatial inhomogeneity in ra...
grantor: University of TorontoThis thesis examines the role of spatial inhomogeneity in ra...
The evolution of a competitive-consecutive chemical reaction is computed numerically in a two-dimen...
The evolution of a competitive-consecutive chemical reaction iscomputed numerically in a two-dimensi...
Chaos is ubiquitous in Nature and represents one of the most fascinating expressions of real world c...
Chaos is ubiquitous in Nature and represents one of the most fascinating expressions of real world c...
Chaos is ubiquitous in Nature and represents one of the most fascinating expressions of real world c...
Chaos is ubiquitous in Nature and represents one of the most fascinating expressions of real world c...
Chaos is ubiquitous in Nature and represents one of the most fascinating expressions of real world c...
Chaos is ubiquitous in Nature and represents one of the most fascinating expressions of real world c...
Chaos is ubiquitous in Nature and represents one of the most fascinating expressions of real world c...
Chemical oscillations generated by the {Belousov-Zhabotinsky} reaction in batch unstirred reactors, ...
Chemical oscillations generated by the Belousov-Zhabotinsky reaction in batch unstirred reactors, sh...
Chemical oscillations generated by the Belousov-Zhabotinsky reaction in batch unstirred reactors, sh...
We study the evolution of a localized perturbation in a chemical system with multiple homogeneous st...
grantor: University of TorontoThis thesis examines the role of spatial inhomogeneity in ra...
grantor: University of TorontoThis thesis examines the role of spatial inhomogeneity in ra...
The evolution of a competitive-consecutive chemical reaction is computed numerically in a two-dimen...
The evolution of a competitive-consecutive chemical reaction iscomputed numerically in a two-dimensi...
Chaos is ubiquitous in Nature and represents one of the most fascinating expressions of real world c...
Chaos is ubiquitous in Nature and represents one of the most fascinating expressions of real world c...
Chaos is ubiquitous in Nature and represents one of the most fascinating expressions of real world c...
Chaos is ubiquitous in Nature and represents one of the most fascinating expressions of real world c...
Chaos is ubiquitous in Nature and represents one of the most fascinating expressions of real world c...
Chaos is ubiquitous in Nature and represents one of the most fascinating expressions of real world c...
Chaos is ubiquitous in Nature and represents one of the most fascinating expressions of real world c...
Chemical oscillations generated by the {Belousov-Zhabotinsky} reaction in batch unstirred reactors, ...
Chemical oscillations generated by the Belousov-Zhabotinsky reaction in batch unstirred reactors, sh...
Chemical oscillations generated by the Belousov-Zhabotinsky reaction in batch unstirred reactors, sh...