A + B → C reaction fronts in Hele-Shaw cells under modulated gravitational acceleration
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Contributors
Abstract
The dynamics of A + B → C reaction fronts is studied under modulated gravitational acceleration by means of a combination of parabolic flight experiments and numerical simulations. During modulated gravity the front position undergoes periodic modulation with an accelerated front propagation under hyper-gravity together with a slowing down under low gravity. The underlying reason for this is an amplification and a decay, respectively, of the buoyancy-driven double vortex associated with the front propagation under standard gravitational acceleration, as explained by reaction-diffusion- convection simulations of convection around an A + B → C front. Deeper insights into the correlation between grey-value changes in the experimental shadowgraph images and characteristic changes in the concentration profiles are obtained by a numerical simulation of the imaging process.
Details
Original language | English |
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Pages (from-to) | 7337-7345 |
Number of pages | 9 |
Journal | Physical Chemistry Chemical Physics |
Volume | 14 |
Issue number | 20 |
Publication status | Published - 28 May 2012 |
Peer-reviewed | Yes |