We address the description of solutes flow with trapping processes in porous media. Starting from a small-scale model for tracer particle trajectories, we derive the corresponding governing equations for the concentration of the mobile and immobile phases within a fractal mobile-immobile model approach. We show that this formulation is fairly general and can easily take into account nonconstant coefficients and in particular space-dependent sorption rates. The transport equations are solved numerically and a comparison with Monte Carlo particle-tracking simulations of spatial contaminant profiles and breakthrough curves is proposed, so as to illustrate the obtained results.
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Univ Avignon & Pays Vaucluse, Fac Sci, UMR EMMAH 1114, F-84018 Avignon, FranceUniv Avignon & Pays Vaucluse, Fac Sci, UMR EMMAH 1114, F-84018 Avignon, France
Neel, Marie-Christine
Joelson, Maminirina
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Univ Avignon & Pays Vaucluse, Fac Sci, UMR EMMAH 1114, F-84018 Avignon, FranceUniv Avignon & Pays Vaucluse, Fac Sci, UMR EMMAH 1114, F-84018 Avignon, France
Joelson, Maminirina
Zoia, Andrea
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CEA Saclay, DEN DM2S SFME LSET, F-91191 Gif Sur Yvette, FranceUniv Avignon & Pays Vaucluse, Fac Sci, UMR EMMAH 1114, F-84018 Avignon, France
Zoia, Andrea
Cartalade, Alain
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CEA Saclay, DEN DM2S SFME LSET, F-91191 Gif Sur Yvette, FranceUniv Avignon & Pays Vaucluse, Fac Sci, UMR EMMAH 1114, F-84018 Avignon, France