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- W2744532256 abstract "Abstract With notion to the potential use of cyclical CO 2 injection as a follow-up post-CHOPS (Cold Heavy Oil Production with Sand) EOR option, a comprehensive core-to-field scale study was performed to investigate the non-equilibrium CO 2 behavior. PVT lab measurements of both CO 2 injection and depletion tests were performed and modeled under highly controlled conditions and at different temperatures to obtain equilibrium properties. To address the kinetics of the non-equilibrium process, a 1.5-m multiple pressure-port core holder was designed to measure the differential pressure in the various sections of the sand-pack during CO 2 depletion tests. Oil and gas volumes and the signature of pressures along the core holder length were recorded at each trial. Next, the CO 2 depletion experiments were numerically simulated and the parameters of reaction kinetics used to model the liberation of dissolved CO 2 gas to trapped CO 2 bubbles and then to free CO 2 gas non-equilibrium foamy oil depletion) were determined. The grid sensitivity of the reaction kinetics was investigated and a power-law core-to-field scaling rule was developed and numerically validated. The scaling rule was then used to upscale the reaction parameters for a previously history matched CHOPS field with 15 wells in Alberta (Rangriz Shokri and Babadagli, 2012, 2014). Lastly, the economic feasibility assessment of cyclic CO 2 stimulation as a follow-up field-scale post-CHOPS option was determined under different oil price scenarios to optimize the operating conditions and the selection of the best possible field development strategies." @default.
- W2744532256 created "2017-08-17" @default.
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- W2744532256 date "2017-11-01" @default.
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- W2744532256 title "Feasibility assessment of heavy-oil recovery by CO2 injection after cold production with sands: Lab-to-field scale modeling considering non-equilibrium foamy oil behavior" @default.
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- W2744532256 doi "https://doi.org/10.1016/j.apenergy.2017.08.029" @default.
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