Fluid Invasion Dynamics in Porous Media With Complex Wettability and Connectivity

Publication date

2021-11-28

Authors

Mascini, Arjen
Boone, Marijn
Van Offenwert, Stefanie
Wang, Shan
Cnudde, VeerleORCID 0000-0002-3269-5914ISNI 0000000351067873
Bultreys, Tom

Editors

Advisors

Supervisors

Document Type

Article
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License

taverne

Abstract

Multiphase flow is important for many natural and engineered processes in subsurface geoscience. Pore-scale multiphase flow dynamics are commonly characterized by an average balance of driving forces. However, significant local variability in this balance may exist inside natural, heterogeneous porous materials, such as rocks and soils. Here, we investigate multiphase flow in heterogeneous rocks with different wetting properties using fast laboratory-based 4D X-ray imaging. The mixed-wet dynamics were characterized by displacement rates that differed over orders of magnitude between directly neighboring pores. While conventional understanding predicted strongly capillary-dominated conditions, our analysis suggests that viscous forces played a key role in these dynamics, facilitated by a complex interplay between the mixed-wettability and the pore structure. These dynamics highlight the need for further studies on the fundamental controls on multiphase flow in geomaterials, which is crucial to design, for example, groundwater remediation and subsurface CO2 storage operations.

Keywords

capillarity, contact angle, multiphase flow, pore-scale imaging, wettability, X-ray microtomography, Taverne, Geophysics, General Earth and Planetary Sciences

Citation

Mascini, A, Boone, M, Van Offenwert, S, Wang, S, Cnudde, V & Bultreys, T 2021, 'Fluid Invasion Dynamics in Porous Media With Complex Wettability and Connectivity', Geophysical Research Letters, vol. 48, no. 22, e2021GL095185, pp. 1-10. https://doi.org/10.1029/2021GL095185