Multiscale Finite Volume Model for Reactive Transport in Porous and Fractured Media
Abstract
Several recent studies demonstrated that under certain conditions, Darcy-scale reactive transport equations are not able to provide sufficiently accurate predictions of multiphase flow and reactive transport. We will present a hybrid a hybrid pore/Darcy scale model based on the Multiscale Finite Volume (MsFV) method, which couples a Darcy-scale model with a MsFV characterization of transport in a region of the computational domain where the Darcy-scale is deficient or inaccurate. The considered examples include transport and mineral precipitation in fractures and porous media. The proposed model results in a significant reduction of computational effort with respect to pore-scale simulations, and increased accuracy with respect to Darcy-scale models. The range of applicability and limitations of the proposed multiscale method will be also discussed.
- Publication:
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AGU Fall Meeting Abstracts
- Pub Date:
- December 2014
- Bibcode:
- 2014AGUFM.H23B0873T
- Keywords:
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- 1805 Computational hydrology;
- HYDROLOGY;
- 1829 Groundwater hydrology;
- HYDROLOGY;
- 1832 Groundwater transport;
- HYDROLOGY;
- 1847 Modeling;
- HYDROLOGY