Abstract
Reactive convection in a porous medium has received recent interest in the context of the geological storage of carbon dioxide in saline formations. We study theoretically and numerically the gravitational instability of a diffusive boundary layer in the presence of a first-order precipitation reaction. We compare the predictions from normal mode, linear stability analysis, and nonlinear numerical simulations, and discuss the relative deviations. The application of our findings to the storage of carbon dioxide in a siliciclastic aquifer shows that while the reactive-diffusive layer can become unstable within a timescale of 1 to 1.5 months after the injection of carbon dioxide, it can take almost 10 months for sufficiently vigorous convection to produce a considerable increase in the dissolution flux of carbon dioxide.
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Ghoshal, P., Kim, M. C., & Cardoso, S. S. S. (2018). Onset of convection in the presence of a precipitation reaction in a porous medium: A comparison of linear stability and numerical approaches. Fluids, 3(1). https://doi.org/10.3390/fluids3010001
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