4.6 Article

The Effect of Natural Flow of Aquifers and Associated Dispersion on the Onset of Buoyancy-Driven Convection in a Saturated Porous Medium

Journal

AICHE JOURNAL
Volume 55, Issue 2, Pages 475-485

Publisher

WILEY
DOI: 10.1002/aic.11664

Keywords

convection; stability analysis; dispersion; saline aquifers; CO2; storage or sequestration

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Carbon diovide injection into deep saline aquifers is an important option for managing CO2 emissions. Injected CO2 dissolves into formation brines from above, increasing brine density and creating at? unstable hydrodynamic state favorable for natural convection. Long-term buoyancy-driven flow of high-density CO2-saturated brine leads to faster trapping through improved dissolution and cat? reduce the risk Of CO2 leakage from storage sites. We investigate the role of natural flow of aquifers and associated dispersion on the onset of convection. A linear stability analysis of a transient concentration field in a laterally infinite, horizontal, and saturated porous layer with steady horizontal flow is presented. The layer is subjected to a sudden rise in CO2 concentration from the top and is closed from the bottom. Solution of the stability equations is obtained using a Galerkin technique and the resulting equations are integrated numerically. We found simple scaling relationship that follow t(Dc similar to)60(1 + Pe(T))Ra-2 for the onset time of convection and a similar to 0.05Ra/(1 + Pe(T)) for the wavenumber of the initial instabilities. Results reveal that transverse dispersion increases the time to onset of convection for the entire range of Ra. Furthermore, transverse dispersion decreases the critical wavenumber of the instabilities. These results facilitate screening candidate sites for geological CO2 storage. (c) 2008 American Institute of Chemical Engineers AIChE J, 55: 475-485, 2009

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