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Letture consigliate

De Paoli, M. (2023). Convective mixing in porous media: a review of Darcy, pore-scale and Hele-Shaw studies. The European Physical Journal E, 46(12), 129.

Nordbotten, J. M., & Celia, M. A. (2011). Geological storage of CO2: Modeling approaches for large-scale simulation. John Wiley & Sons.

Flemisch, B. et al. (2024). The FluidFlower Validation Benchmark Study for the Storage of CO2. Transport in Porous Media, 151(5), 865–912.

Jiménez-Martínez, J. et al. (2015). Pore-scale mechanisms for the enhancement of mixing in unsaturated porous media and implications for chemical reactions. Geophysical Research Letters. https://doi.org/10.1002/2015GL064513

Jiménez-Martínez, J. et al. (2020). Homogenization of dissolution and enhanced precipitation induced by bubbles in multiphase flow systems. Geophysical Research Letters.

Zhang et al. (2025). Enhanced reaction kinetics in stationary two-phase flow through porous media. Environmental Science & Technology.

Kurz et al. (2022). Competition between growth and shear stress drives intermittency in preferential flow paths in porous media biofilms. Proceedings of the National Academy of Sciences.

Salek, M. M. et al. (2024). Multiscale porosity microfluidics to study bacterial transport in heterogeneous chemical landscapes. Advanced Science.

Rutqvist, J. et al. (2016). Fault activation and induced seismicity in geological carbon storage – lessons learned from recent modeling studies. Journal of Rock Mechanics and Geotechnical Engineering.

Hosseini et al. (2026). A decade of progress in the modeling and simulation of geologic carbon storage. International Journal of Greenhouse Gas Control.

Ougier-Simonin et al. (2026). The pressure balancing act in geological storage: sharing the subsurface for the common good. International Journal of Greenhouse Gas Control.

DOVE

Centro Internazionale di Scienze Meccaniche
Piazza G. Garibaldi, 18
33100 UDINE
Udine
Italia

DatA/e

21/06/2027 — 25/06/2027

Coordinatori

Jakub Wiktor Both
University of Bergen , Norvegia
Marco De Paoli
TU Wien , Austria

Public documents

C2708_Flyer.pdf

CoDICE CORSO/EVENTO

C2708

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