Multi-scale random walk models for reactive transport processes in fracture-matrix systems
Author:
Funder
CNRS
Publisher
Elsevier BV
Subject
Water Science and Technology
Reference26 articles.
1. The chemical continuous time random walk framework for upscaling transport limitations in fluid–solid reactions;Aquino;Adv. Water Resour.,2021
2. Hybrid models of reactive transport in porous and fractured media;Battiato;Adv. Water Resour.,2011
3. Simulation of chemical reaction via particle tracking: Diffusion-limited versus thermodynamic rate-limited regimes;Benson;Water Resour. Res.,2008
4. Characterizing flow and transport in fractured geological media: A review;Berkowitz;Adv. Water Resour.,2002
5. Measurements and models of reactive transport in geological media;Berkowitz;Rev. Geophys.,2016
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1. Anomalous transport and upscaling in critically-connected fracture networks under stress conditions;Journal of Hydrology;2024-02
2. The friction factor of the fracture-matrix system considering the effects of free flow, seepage flow, and roughness;Journal of Hydrology;2024-01
3. Vertical Matrix Advection Dominates Transient Anomalous Diffusion within Fracture-Matrix Systems Using a Modified Diffusion Model;2023
4. Particle tracking as a vulnerability assessment tool for drinking water production;Frontiers in Earth Science;2022-08-25
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