We investigate the flow structure and the porosity-permeability relationship of porous media that undergo morphology modifications due to evaporation or microbially induced calcite precipitation, as well as wettability modifications of the solid-fluid interface due to fluid pH, composition, or salt con¬centration changes. We develop simulation methods based on coupled multi-phase and multi-component Lattice-Boltzmann and solute molecular dynamics simulations, capable of reproducing these processes in detail on the pore scale, yielding results to be used to improve existing continuum models.
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Apr 11, 2024
Dataverse collecting the simulation input scripts around the theoretical studies of the ANR funded project "Transport of Water In Soft confinemenT (TWIST)"
Dec 11, 2023
Lohrmann, Christoph; Holm, Christian, 2023, "Replication Data for: Lohrmann, Holm, Datta: Influence of bacterial motility and hydrodynamics on phage bacteria encounters", https://doi.org/10.18419/darus-3836, DaRUS, V1
Code and Data for "Influence of bacterial motility and hydrodynamics on phage bacteria encounters". For details, see README.md
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