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Determination of contact angles for three-phase flow in porous media using an energy balance
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1-s2.0-S0021979720310390-main.pdf | Published version | 1.35 MB | Adobe PDF | View/Open |
Title: | Determination of contact angles for three-phase flow in porous media using an energy balance |
Authors: | Blunt, MJ Alhosani, A Lin, Q Scanziani, A Bijeljic, B |
Item Type: | Journal Article |
Abstract: | HYPOTHESIS: We define contact angles, θ, during displacement of three fluid phases in a porous medium using energy balance, extending previous work on two-phase flow. We test if this theory can be applied to quantify the three contact angles and wettability order in pore-scale images of three-phase displacement. THEORY: For three phases labelled 1, 2 and 3, and solid, s, using conservation of energy ignoring viscous dissipation (Δa1scosθ12-Δa12-ϕκ12ΔS1)σ12=(Δa3scosθ23+Δa23-ϕκ23ΔS3)σ23+Δa13σ13, where ϕ is the porosity, σ is the interfacial tension, a is the specific interfacial area, S is the saturation, and κ is the fluid-fluid interfacial curvature. Δ represents the change during a displacement. The third contact angle, θ13 can be found using the Bartell-Osterhof relationship. The energy balance is also extended to an arbitrary number of phases. FINDINGS: X-ray imaging of porous media and the fluids within them, at pore-scale resolution, allows the difference terms in the energy balance equation to be measured. This enables wettability, the contact angles, to be determined for complex displacements, to characterize the behaviour, and for input into pore-scale models. Two synchrotron imaging datasets are used to illustrate the approach, comparing the flow of oil, water and gas in a water-wet and an altered-wettability limestone rock sample. We show that in the water-wet case, as expected, water (phase 1) is the most wetting phase, oil (phase 2) is intermediate wet, while gas (phase 3) is most non-wetting with effective contact angles of θ12≈48° and θ13≈44°, while θ23=0 since oil is always present in spreading layers. In contrast, for the altered-wettability case, oil is most wetting, gas is intermediate-wet, while water is most non-wetting with contact angles of θ12=134°±~10°,θ13=119°±~10°, and θ23=66°±~10°. |
Issue Date: | 15-Jan-2021 |
Date of Acceptance: | 31-Jul-2020 |
URI: | http://hdl.handle.net/10044/1/82167 |
DOI: | 10.1016/j.jcis.2020.07.152 |
ISSN: | 0021-9797 |
Publisher: | Elsevier |
Start Page: | 283 |
End Page: | 290 |
Journal / Book Title: | Journal of Colloid and Interface Science |
Volume: | 582 |
Issue: | Pt A |
Copyright Statement: | © 2020 The Author(s). Published by Elsevier Inc.This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/) |
Sponsor/Funder: | Abu Dhabi Company for Onshore Petroleum Operations (ADCO) |
Funder's Grant Number: | 16312.01 |
Keywords: | Contact angle Curvature Imaging Multiphase flow in porous media Three-phase flow Wettability Contact angle Curvature Imaging Multiphase flow in porous media Three-phase flow Wettability Chemical Physics 02 Physical Sciences 03 Chemical Sciences 09 Engineering |
Publication Status: | Published |
Conference Place: | United States |
Open Access location: | https://reader.elsevier.com/reader/sd/pii/S0021979720310390?token=1C23D74BDC7205626612E7F1E3D03B68062AF5F79FACA7389429B6C376B76F7FB3207A12647B66F4BF5DCF5C04573B0D |
Online Publication Date: | 2020-08-06 |
Appears in Collections: | Earth Science and Engineering |
This item is licensed under a Creative Commons License