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Mixed imbibition controls the advance of wetting fluid in multiscale geological media.

Authors :
Kurotori, Takeshi
Murugesu, Manju Pharkavi
Zahasky, Christopher
Vega, Bolivia
Druhan, Jennifer L.
Benson, Sally M.
Kovscek, Anthony R.
Source :
Advances in Water Resources. May2023, Vol. 175, pN.PAG-N.PAG. 1p.
Publication Year :
2023

Abstract

Imbibition plays a central role during multiphase flows in geological media; yet, our understanding of imbibition dynamics across the multiscale features of rocks, including fractures, microcracks, and heterogeneous matrices is limited. Here, we deployed a unique combination of micro- and clinical X-ray CT imaging to probe directly the spatiotemporal evolution of imbibition in a natural, multiscale shale sample. The method enabled unraveling of mixed imbibition behavior, with spontaneous imbibition rates in the matrix pores and microcracks driven by capillarity proceeding as ∝ t − 1 / 2 , whereas pressure-driven flows in the macroscopic fractures yield apparent imbibition rates with ∝ t − 1 scaling. Regardless of the aperture, we showed that spontaneous imbibition proceeds uniformly away from the fractures. The effects of microcracks are further investigated by comparing the dynamics of the imbibition fronts with and without microcracks. These results highlight the paramount role of microcracks on anomalous front roughening and the need to account for microcracks appropriately in the development of predictive theoretical models. [Display omitted] • Unraveled μ m-scale mixed imbibition phenomena using X-ray CT techniques. • Pronounced imbibition dynamics, irrespective of the size of fracture apertures. • Micro-cracks played a dominant role in anomalous front broadening in shales. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03091708
Volume :
175
Database :
Academic Search Index
Journal :
Advances in Water Resources
Publication Type :
Academic Journal
Accession number :
163587416
Full Text :
https://doi.org/10.1016/j.advwatres.2023.104429