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Dynamics of fluid displacement in mixed-wet porous media

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Title: Dynamics of fluid displacement in mixed-wet porous media
Authors: Scanziani, A
Lin, Q
Alhosani, A
Blunt, M
Bijeljic, B
Item Type: Journal Article
Abstract: We identify a distinct two-phase flow invasion pattern in a mixed-wet porous medium. Time-resolved highresolution synchrotron X–ray imaging is used to study the invasion of water through a small rock sample filled with oil, characterized by a wide non-uniform distribution of local contact angles both above and below 90 . The water advances in a connected front, but throats are not invaded in decreasing order of size, as predicted by invasion percolation theory for uniformly hydrophobic systems. Instead, we observe pinning of the three-phase contact between the fluids and the solid, manifested as contact angle hysteresis, which prevents snap-off and interface retraction. In the absence of viscous dissipation, we use an energy balance to find an effective, thermodynamic, contact angle for displacement and show that this angle increases during the displacement. Displacement occurs when the local contact angles overcome the advancing contact angles at a pinned interface: it is wettability which controls the filling sequence. The product of the principal interfacial curvatures, the Gaussian curvature, is negative, implying wellconnected phases which is consistent with pinning at the contact line while providing a topological explanation for the high displacement efficiencies in mixed-wet media.
Issue Date: 5-Aug-2020
Date of Acceptance: 24-Jun-2020
URI: http://hdl.handle.net/10044/1/81162
DOI: 10.1098/rspa.2020.0040
ISSN: 1364-5021
Publisher: The Royal Society
Start Page: 1
End Page: 16
Journal / Book Title: Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences
Volume: 476
Issue: 2240
Copyright Statement: © 2020 The Authors. Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/ by/4.0/, which permits unrestricted use, provided the original author and source are credited.
Sponsor/Funder: Abu Dhabi Company for Onshore Petroleum Operations (ADCO)
Funder's Grant Number: 16312.01
Keywords: Science & Technology
Multidisciplinary Sciences
Science & Technology - Other Topics
wettability
multiphase flow
mixed-wet
contact angle
X-ray imaging
porous media
PORE-SCALE
CONTACT-ANGLE
INTERFACIAL-TENSION
WETTABILITY
FLOW
INVASION
DROPLETS
ADHESION
STORAGE
ROCKS
X-ray imaging
contact angle
mixed-wet
multiphase flow
porous media
wettability
01 Mathematical Sciences
02 Physical Sciences
09 Engineering
Publication Status: Published
Online Publication Date: 2020-08-05
Appears in Collections:Earth Science and Engineering
Faculty of Engineering



This item is licensed under a Creative Commons License Creative Commons