Uncertainty Quantification for CO2 Sequestration and Enhanced Oil Recovery

This study develops a statistical method to perform uncertainty quantification for understanding CO2 storage potential within an enhanced oil recovery (EOR) environment at the Farnsworth Unit of the Anadarko Basin in northern Texas. A set of geostatistical-based Monte Carlo simulations of CO2-oil-wa...

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Veröffentlicht in:Energy procedia 2014, Vol.63 (C), p.7685-7693
Hauptverfasser: Dai, Zhenxue, Viswanathan, Hari, Fessenden-Rahn, Julianna, Middleton, Richard, Pan, Feng, Jia, Wei, Lee, Si-Yong, McPherson, Brian, Ampomah, William, Grigg, Reid
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Sprache:eng
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Zusammenfassung:This study develops a statistical method to perform uncertainty quantification for understanding CO2 storage potential within an enhanced oil recovery (EOR) environment at the Farnsworth Unit of the Anadarko Basin in northern Texas. A set of geostatistical-based Monte Carlo simulations of CO2-oil-water flow and reactive transport in the Morrow formation are conducted for global sensitivity and statistical analysis of the major uncertainty metrics: net CO2 injection, cumulative oil production, cumulative gas (CH4) production, and net water injection. A global sensitivity and response surface analysis indicates that reservoir permeability, porosity, and thickness are the major intrinsic reservoir parameters that control net CO= injection/storage and oil/gas recovery rates. The well spacing and the initial water saturation also have large impact on the oil/gas recovery rates. Further, this study has revealed key insights into the potential behavior and the operational parameters of CO2 sequestration at CO2-EOR sites, including the impact of reservoir characterization uncertainty; understanding this uncertainty is critical in terms of economic decision making and the cost-effectiveness of CO2 storage through EOR.
ISSN:1876-6102
1876-6102
DOI:10.1016/j.egypro.2014.11.802