Dynamic Fluid Connectivity Controls Solute Dispersion in Multiphase Porous Media Flow

Author:

Mathiesen Joachim12ORCID,Linga Gaute2ORCID,Misztal Marek1,Renard François23ORCID,Le Borgne Tanguy24ORCID

Affiliation:

1. Niels Bohr Institute University of Copenhagen Copenhagen Denmark

2. The Njord Centre Departments of Geosciences and Physics University of Oslo Oslo Norway

3. ISTerre University Grenoble Alpes Grenoble INP University Savoie Mont Blanc CNRS IRD University Gustave Eiffel Grenoble France

4. CNRS Géosciences Rennes University Rennes UMR 6118 Rennes France

Abstract

AbstractSolute transport in multiphase flow through porous media plays a central role in many natural systems and geoengineering applications. The interplay between fluid flow and capillary forces leads to transient flow dynamics and phase distributions. However, it is not known how such dynamic flow affects the dispersion of transported species. Here, we use highly resolved numerical simulations of immiscible two‐phase flow to investigate dispersion in multiphase flows. We show that repeated activation and deactivation of different flow pathways under the effect of capillary forces accelerates the spreading of solutes compared to single phase flow. We establish the transport laws under dynamic multiphase flows by linking the dispersion coefficient to the Bond number, the ratio of the force driving the flow and the surface tension. Our results determine the controlling factors for solute dispersion in porous media, opening a range of applications for understanding and controlling transport in porous geological systems.

Funder

Equinor

Publisher

American Geophysical Union (AGU)

Subject

General Earth and Planetary Sciences,Geophysics

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