We describe and evaluate two reduced models for nonlinear chemical reactions in a chaotic laminar flow. Each model involves two separate steps to compute the chemical composition at a given location and time. The “manifold tracking model” first tracks backwards in time a segment of the stable manifold of the requisite point. This then provides a sample of the initial conditions appropriate for the second step, which requires solving one-dimensional problems for the reaction in Lagrangian coordinates. By contrast, the first step of the “branching trajectories model” simulates both the advection and diffusion of fluid particles that terminate at the appropriate point; thechemical reaction equations are then solved along each of the branched t...
A model for an imperfectly mixed batch reactor with the chlorine dioxide-iodine-malonic acid (CDIMA)...
In this significant paper, submitted in 2006 and published in 2006, we showed that the progress of a...
Simulation of chemically reacting flows modeled by dissipative dynamical systems with spectral gaps ...
We describe and evaluate two reduced models for nonlinear chemical reactions in a chaotic laminar fl...
The evolution of a competitive-consecutive chemical reaction is computed numerically in a two-dimen...
We implement conditional moment closure (CMC) for simulation of chemical reactions in laminar chaoti...
We implement conditional moment closure (CMC) for simulation of chemical reactions in laminar chaoti...
We examine the evolution of a bistable reaction in a one-dimensional stretching flow, as a model for...
This thesis studies an infinitely fast bimolecular chemical reaction in a two-dimensional Navier-Sto...
Chaos is ubiquitous in Nature and represents one of the most fascinating expressions of real world c...
We describe the evolution of a bistable chemical reaction in a closed two-dimensional chaotic lamina...
We investigate the origin of deterministic chaos in the Belousov–Zhabotinsky (BZ) reaction carried o...
Rapid transport of heat and mass is required in many industrial processes. Mixing is a fundamental i...
A model for an imperfectly mixed batch reactor with the chlorine dioxide-iodine-malonic acid (CDIMA)...
In this significant paper, submitted in 2006 and published in 2006, we showed that the progress of a...
Simulation of chemically reacting flows modeled by dissipative dynamical systems with spectral gaps ...
We describe and evaluate two reduced models for nonlinear chemical reactions in a chaotic laminar fl...
The evolution of a competitive-consecutive chemical reaction is computed numerically in a two-dimen...
We implement conditional moment closure (CMC) for simulation of chemical reactions in laminar chaoti...
We implement conditional moment closure (CMC) for simulation of chemical reactions in laminar chaoti...
We examine the evolution of a bistable reaction in a one-dimensional stretching flow, as a model for...
This thesis studies an infinitely fast bimolecular chemical reaction in a two-dimensional Navier-Sto...
Chaos is ubiquitous in Nature and represents one of the most fascinating expressions of real world c...
We describe the evolution of a bistable chemical reaction in a closed two-dimensional chaotic lamina...
We investigate the origin of deterministic chaos in the Belousov–Zhabotinsky (BZ) reaction carried o...
Rapid transport of heat and mass is required in many industrial processes. Mixing is a fundamental i...
A model for an imperfectly mixed batch reactor with the chlorine dioxide-iodine-malonic acid (CDIMA)...
In this significant paper, submitted in 2006 and published in 2006, we showed that the progress of a...
Simulation of chemically reacting flows modeled by dissipative dynamical systems with spectral gaps ...