Numerical simulations of gravity-driven fingering in unsaturated porous media using a non-equilibrium model
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Date
Authors
Chapwanya, Michael
Stockie, John M.
Journal Title
Journal ISSN
Volume Title
Publisher
American Geophysical Union
Abstract
This is a computational study of gravity-driven fingering instabilities in unsaturated porous
media. The governing equations and corresponding numerical scheme are based on the work of Nieber et al. (2003) in which non-monotonic saturation profiles are obtained by supplementing the Richards equation with a non-equilibrium capillary pressure-saturation relationship, as well as including hysteretic effects. The first part of the study takes an extensive look at the sensitivity of the finger solutions to certain key parameters in the model such as capillary shape parameter, initial saturation, and capillary relaxation coefficient. The second part is a comparison to published experimental results that demonstrates the ability of the model to capture realistic fingering behaviour.
Description
Keywords
Experimental results, Gravity-driven fingering, Saturation
Sustainable Development Goals
Citation
Chapwanya, M & Stockie JM 2010, 'Numerical simulations of gravity-driven fingering in unsaturated porous media using a nonequilibrium model', Water Resources Research, vol. 46, W09534, pp. 1-16. [http://www.agu.org/journals/wr/]