Efficiently engineering pore-scale processes: The role of force dominance and topology during nonwetting phase trapping in porous media

Author:

Herring Anna L.,Andersson Linnéa,Schlüter Steffen,Sheppard Adrian,Wildenschild Dorthe

Funder

U.S. Department of Energy, Basic Energy Sciences, Geosciences Program

LANL

LDRD Program

National Science Foundation – Earth Sciences

Department of Energy, Geosciences

Swedish Science Council

Australian Research Council Future Fellowship

Publisher

Elsevier BV

Subject

Water Science and Technology

Reference47 articles.

1. Impact of relative permeability hysteresis on geological CO2 storage;Juanes;Water Resour Res,2006

2. Measurements of non-wetting phase trapping applied to carbon dioxide storage;Al Mansoori;Int J Greenhouse Gas Control,2010

3. Relative permeability hysteresis and capillary trapping characteristics of supercritical CO2/brine systems: an experimental study at reservoir conditions;Akbarabadi;Adv Water Resour,2013

4. Pore-scale imaging of geological carbon dioxide storage under in situ conditions;Andrew;Geophys Res Lett,2013

5. Metz B, et al. IPCC special report on carbon dioxide capture and storage. Prepared by Working Group III of the Intergovernmental Panel on Climate Change. Cambridge, United Kingdom and New York, USA: IPCC, Cambridge University Press; 4, 2005.

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