1887
Volume 40, Issue 10
  • ISSN: 0263-5046
  • E-ISSN: 1365-2397
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2022-10-01
2024-04-23
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References

  1. Bentley, M. and Ringrose, P. [2021]. The Rock Model. In Reservoir Model Design (pp. 11–63). Springer, Cham.
    [Google Scholar]
  2. Eiken, O., Ringrose, P., Hermanrud, C., Nazarian, B., Torp, T.A. and Høier, L. [2011]. Lessons learned from 14 years of CCS operations: Sleipner, In Salah and Snøhvit. Energy Procedia, 4, pp. 5541–5548.
    [Google Scholar]
  3. Furre, A.K., Eiken, O., Alnes, H., Vevatne, J.N. and Kiær, A.F. [2017]. 20 years of monitoring CO2-injection at Sleipner. Energy Procedia, 114, pp. 3916–3926.
    [Google Scholar]
  4. Furre, A.K., Meneguolo, R., Pinturier, L. and Bakke, K. [2020]. Planning deep subsurface CO2 storage monitoring for the Norwegian full-scale CCS project. First Break, 38(10), pp. 55–60.
    [Google Scholar]
  5. Hansen, O., Gilding, D., Nazarian, B., Osdal, B., Ringrose, P., Kristof-fersen, J.B., Eiken, O. and Hansen, H. [2013]. Snøhvit: The history of injecting and storing 1 Mt CO2 in the fluvial Tubåen Fm. Energy Procedia, 37, pp. 3565–3573.
    [Google Scholar]
  6. Meneguolo, R., Kassold, S., Høigjelle, V. and Veselovsky, Z. [2021]. Data acquisition and evaluation from the Eos well (31/5–7), Northern Lights CCS project, Norway. Fourth EAGE Borehole Geology Workshop, Sept. 2021. DOI: https://doi.org/10.3997/2214-4609.2021626019.
    [Google Scholar]
  7. Metz, B., Davidson, O., de Coninck, H.C., Loos, M. and Meyer, L.A. [2005]. IPCC Special Report on Carbon Dioxide Capture and Storage. Cambridge University Press, Cambridge (UK).
    [Google Scholar]
  8. Reynolds, C.A. and Krevor, S. [2015]. Characterizing flow behavior for gas injection: Relative permeability of CO-brine and N2-water in heterogeneous rocks. Water Resources Research, 51(12), 9464–9489.
    [Google Scholar]
  9. Ringrose, P. [2020]. How to store CO2 underground: Insights from early-mover CCS Projects (SpringerBriefs in Earth Sciences, Vol. 129). Cham, Switz: Springer.
    [Google Scholar]
  10. Ringrose, P.S., Furre, A.K., Gilfillan, S.M., Krevor, S., Landrø, M., Leslie, R., Meckel, T., Nazarian, B. and Zahid, A. [2021]. Storage of carbon dioxide in saline aquifers: physicochemical processes, key constraints, and scale-up potential. Annual Review of Chemical and Biomolecular Engineering, 12(1), pp.471–494.
    [Google Scholar]
  11. Trevisan, L., Pini, R., Cihan, A., Birkholzer, J.T., Zhou, Q., González-Nicolás, A. and Illangasekare, I. [2017]. Imaging and quantification of spreading and trapping of carbon dioxide in saline aquifers using meter-scale laboratory experiments. Water Resources Research, 53, pp. 485–502.
    [Google Scholar]
  12. Wu, L., Thorsen, R., Ottesen, S., Meneguolo, R., Hartvedt, K., Ringrose, P. and Nazarian, B. [2021]. Significance of fault seal in assessing CO2 storage capacity and containment risks–an example from the Horda Platform, northern North Sea. Petroleum Geoscience, 27(3), pp.petgeo2020-102.
    [Google Scholar]
  13. Zweigel, P., Arts, R., Lothe, A.E. and Lindeberg, E.B. [2004]. Reservoir geology of the Utsira Formation at the first industrial-scale underground CO2 storage site (Sleipner area, North Sea). Geological Society, London, Special Publications, 233(1), pp.165–180.
    [Google Scholar]
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