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Article

Experimental and Simulation Studies of Sequestration of Supercritical Carbon Dioxide in Depleted Gas Reservoirs

[+] Author and Article Information
Jeong G. Seo, Daulat D. Mamora

Department of Petroleum Engineering, Texas A&M University, 3116 TAMU, 407 Richardson Building, College Station, TX 77843-3116

J. Energy Resour. Technol 127(1), 1-6 (Mar 29, 2005) (6 pages) doi:10.1115/1.1790538 History: Received May 20, 2003; Revised May 28, 2004; Online March 29, 2005
Copyright © 2005 by ASME
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References

Wigley,  T. M. L., Richels,  R., and Edmonds,  J. A., 1996, “Economics and Environmental Choices in the Stabilization of Atmospheric CO2 Concentrations,” Nature (London), 18, pp. 240–243.
Holloway,  S., 1996, “An Overview of the Joule II Project: The Underground Disposal of Carbon Dioxide,” Energy Convers. Manage., 37(6–8), pp. 1149–1154.
Holloway,  S., and van der Straaten,  R., 1995, “The Joule II Project: The Underground Disposal of Carbon Dioxide,” Energy Convers. Manage., 36(6–9), pp. 519–522.
Stalkup, F. I., Jr., 1984, Miscible Displacement, SPE Monograph Series, Soc. Petr. Engr., Richardson, TX.
Mamora, D. D., and Seo, J. G., 2002, “Enhanced Gas Recovery by Carbon Dioxide Sequestration in Depleted Gas Reservoirs,” Paper No. SPE 77347, presented at the SPE Annual Technical Conferences and Exhibition, San Antonio, TX.
Abramowitz, M., and Stegun, I. A., 1972, Handbook of Mathematical Functions, Dover, New York.
Clemens, T. G., and Wit, K., 2002, “CO2 Enhanced Gas Recovery Studied for an Example Gas Reservoir,” Paper No. SPE 77348, presented at the SPE Annual Technical Conferences and Exhibition, San Antonio, TX.

Figures

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Schematic diagram of supercritical carbon dioxide coreflood apparatus
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CT images of porosity profile using Voxelcalc software
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Gas mass rate vs. time from experimental and simulation results to calculate gas-liquid relative permeability curves
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Gas-liquid relative permeability curves
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Schematic of one-eighth of 5-spot and simulation model
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C1 recovery factor vs. injection rates for cases 1 and 2
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CO2 breakthrough time at various injection rates for cases 1 and 2
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Amounts of CO2 sequestered vs. injection rates for cases 1 and 2
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CO2 injection end vs. injection rates for cases 1 and 2
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C1 recovery factor vs. abandoned reservoir pressure for cases 1 and 2
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CO2 breakthrough time at various abandoned reservoir pressures for cases 1 and 2
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Amounts of CO2 sequestered vs. abandoned reservoir pressures for cases 1 and 2
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CO2 injection end vs. abandoned reservoir pressures for cases 1 and 2

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