An integrated approach to derive relative permeability from capillary pressure
Author:
Funder
Office of Fossil Energy and Carbon Management
Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s10596-024-10297-8.pdf
Reference46 articles.
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2. Ball, M.M., Henry M.E., Frezon, S.E.: Petroleum Geology of the Anadarko Basin Region, Province (115), Kansas, Oklahoma, and Texas. Open File Report 88–450W. Denver: U.S. Geological Survey (1991)
3. Behrenbruch, P., Hoang, T.G., Do Huu, M.T., Bui, K.D., Kennaird, T.: The Importance of Optimal Choice of Relative Permeability Relationships in Reservoir Simulation. In Spe Asia Pacific Oil and Gas Conference and Exhibition, D021S017R002. SPE (2018)
4. Bennion, B., Bachu, S.:Relative Permeability Characteristics for Supercritical CO2 Displacing Water in a Variety of Potential Sequestration Zones in the Western Canada Sedimentary Basin. SPE Annual Technical Conference and Exhibition. Dallas, TX: Society of Petroleum Engineers (2005)
5. Bennion, B., Bachu, S. The Impact of Interfacial Tension and Pore-Size Distribution/Capillary Pressure Character on CO2 Relative Permeability at Reservoir Conditions in CO2-Brine Systems. SPE - DOE Improved Oil Recovery Symposium Proceedings 1:142–51 (2006a). https://doi.org/10.2118/99325-ms
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