Accelerated computational micromechanics for solute transport in porous media
Author:
Funder
Resnick Sustainability Institute for Science, Energy and Sustainability, California Institute of Technology
US Army Research Office
Publisher
Elsevier BV
Reference50 articles.
1. Fluid flow and reactive transport around potential nuclear waste emplacement tunnels at yucca mountain, nevada;Spycher;J. Contam. Hydrol.,2003
2. A fully-coupled flow-reactive-transport formulation based on element conservation, with application to CO2 storage simulations;Fan;Adv. Water Resour.,2012
3. A coupled model for reactive flow through deformable fractures in enhanced geothermal systems;Salimzadeh;Geothermics,2019
4. Reactive transport modeling of the enhancement of density-driven CO2 convective mixing in carbonate aquifers and its potential implication on geological carbon sequestration;Islam;Sci. Rep.,2016
5. A review on reactive transport model and porosity evolution in the porous media;Baqer;Environ. Sci. Pollut. Res.,2022
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1. A Learning‐Based Multiscale Model for Reactive Flow in Porous Media;Water Resources Research;2024-08-28
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