Implications of Wettability Alteration of Sandstone Rocks Using Non-fluorinated scCO2-based Silylation

This research has compared the multiphase flow characteristics of the CO2-brine-rock system under the strongly water-wet and CO2-wet states. It has also developed a novel scCO2-based silylation technique that can be used to induce the necessary wettability alteration to sandstone rocks. This researc...

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Main Author: Arjomand, Eghan
Format: Thesis
Published: Curtin University 2020
Online Access:http://hdl.handle.net/20.500.11937/81766
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author Arjomand, Eghan
author_facet Arjomand, Eghan
author_sort Arjomand, Eghan
building Curtin Institutional Repository
collection Online Access
description This research has compared the multiphase flow characteristics of the CO2-brine-rock system under the strongly water-wet and CO2-wet states. It has also developed a novel scCO2-based silylation technique that can be used to induce the necessary wettability alteration to sandstone rocks. This research serves to fill an existing gap in the published literature by providing reliable experimental evidence about the effect of wettability on dynamic multiphase flow characteristics of CO2-brine system.
first_indexed 2025-11-14T11:19:10Z
format Thesis
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T11:19:10Z
publishDate 2020
publisher Curtin University
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repository_type Digital Repository
spelling curtin-20.500.11937-817662020-11-27T06:37:49Z Implications of Wettability Alteration of Sandstone Rocks Using Non-fluorinated scCO2-based Silylation Arjomand, Eghan This research has compared the multiphase flow characteristics of the CO2-brine-rock system under the strongly water-wet and CO2-wet states. It has also developed a novel scCO2-based silylation technique that can be used to induce the necessary wettability alteration to sandstone rocks. This research serves to fill an existing gap in the published literature by providing reliable experimental evidence about the effect of wettability on dynamic multiphase flow characteristics of CO2-brine system. 2020 Thesis http://hdl.handle.net/20.500.11937/81766 Curtin University fulltext
spellingShingle Arjomand, Eghan
Implications of Wettability Alteration of Sandstone Rocks Using Non-fluorinated scCO2-based Silylation
title Implications of Wettability Alteration of Sandstone Rocks Using Non-fluorinated scCO2-based Silylation
title_full Implications of Wettability Alteration of Sandstone Rocks Using Non-fluorinated scCO2-based Silylation
title_fullStr Implications of Wettability Alteration of Sandstone Rocks Using Non-fluorinated scCO2-based Silylation
title_full_unstemmed Implications of Wettability Alteration of Sandstone Rocks Using Non-fluorinated scCO2-based Silylation
title_short Implications of Wettability Alteration of Sandstone Rocks Using Non-fluorinated scCO2-based Silylation
title_sort implications of wettability alteration of sandstone rocks using non-fluorinated scco2-based silylation
url http://hdl.handle.net/20.500.11937/81766