Low-salinity water-alternating-CO2 EOR
Autor: | Waleed Alameri, Tadesse Weldu Teklu, Ramona M. Graves, Ali M. AlSumaiti, Hossein Kazemi |
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Rok vydání: | 2016 |
Předmět: |
Carbon dioxide flooding
Petroleum engineering 020209 energy 02 engineering and technology Geotechnical Engineering and Engineering Geology Contact angle Surface tension chemistry.chemical_compound Permeability (earth sciences) Fuel Technology 020401 chemical engineering chemistry 0202 electrical engineering electronic engineering information engineering Carbonate Seawater Wetting Enhanced oil recovery 0204 chemical engineering Geology |
Zdroj: | Journal of Petroleum Science and Engineering. 142:101-118 |
ISSN: | 0920-4105 |
Popis: | Carbon dioxide flooding is currently the most technically and economically viable enhanced oil recovery (EOR) process in carbonate and sandstone reservoirs. Low-salinity waterflood is a relatively new EOR process; and our experiments in carbonate cores show significant oil recovery improvements with low-salinity waterflood. We propose a new EOR process to improve recovery, which involves low-salinity water-alternating-CO 2 /gas (LS-WACO 2 or LS-WAG) injection. To evaluate the proposed idea, three core floods and several contact angle and IFT measurements were performed. The core floods include: seawater flood, followed by low-salinity waterflood, followed by CO 2 injection, which yielded fourteen, twenty-five, and thirty-eight percent additional oil recovery by CO 2 from two carbonate and one sandstone experiments. We performed contact angle measurements on several low-permeability carbonate, medium-permeability Berea sandstone, and ultra-low permeability Three Forks mudstone core discs using different salinities brine with and without CO 2 gas. The contact angle measurements confirmed that favorable wettability alteration is achievable with the proposed EOR process. In addition, visual observations suggested that the proposed EOR process could be effective for cleaning the matrix-fracture interface in conventional and unconventional reservoirs. Interfacial tension (IFT) measurements and correlation relevant to the EOR process is also included in this study. |
Databáze: | OpenAIRE |
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