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  • Journal of Fluid Mechanics, Volume 618
  • January 2009, pp. 349-359

The effect of drainage on the capillary retention of CO2 in a layered permeable rock

  • DOI:
  • Published online: 10 January 2009

Buoyant plumes of CO2 spreading through water-saturated permeable rock, bounded by layers of lower permeability, tend to spread laterally. As they advance, they may gradually leak through fractures or discontinuities in the lower permeability boundary, leading to a gradual waning of the original plume and dispersal of CO2 higher in the formation. With a finite release of CO2, the trailing edge of the plume recedes with time, and capillary forces tend to trap a fraction of this CO2 within the pore space. This also leads to a gradual waning of the plume with time and limits the mass of CO2 which can leak through the boundary and rise higher into the formation. We explore the balance between these two effects and calculate some of the controls on the fraction of the CO2 plume which becomes trapped within the original layer of rock.

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G. I. Barenblatt , V. M. Entov & V. M. Ryzhik 1990 Theory of fluid flows through natural rocks. Kluwer.

M. Bickle , A. Chadwick , H. E. Huppert , M. Hallworth , & S. Lyle 2007 Modelling carbon dioxide accumulation at Sleipner: implications for underground carbon storage. Earth Planet. Sci. Lett. 255, 164176.

Y. K. Kharaka , D. R. Cole , S. D. Hovorka , W. D. Gunter , K. G. Knauss & B. M. Freifeld 2006 Gas water rock interactions in Frio Formation following CO2 injection: implications for the storage of greenhouse gases in sedimentary basins. Geology 34 (7), 577580.

E.-O. I. Obi & M. J. Blunt 2006 Streamline-based simulation of carbon dioxide storage in a North Sea aquifer. Water Resour. Res. 42, W03414, doi:10.1029/2004WR003347.

R. Qi , V. Beraldo , T. LaForce & M. J. Blunt 2007 Design of carbon dioxide storage in the North Sea using streamline-based simulation: SPE 109905. In SPE Annu. Tech. Conf. Exhibition, Anaheim, CA.

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Journal of Fluid Mechanics
  • ISSN: 0022-1120
  • EISSN: 1469-7645
  • URL: /core/journals/journal-of-fluid-mechanics
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