Mobility ratio, relative permeability and sweep efficiency of supercritical CO2 and methane injection to enhance natural gas and condensate recovery: Coreflooding experimentation
Author:
Publisher
Elsevier BV
Subject
Energy Engineering and Power Technology,Geotechnical Engineering and Engineering Geology,Fuel Technology
Reference21 articles.
1. Afidick, D., Kaczorowski, N.J., Bette, S., 1994. Production Performance of Retrograde Gas Reservoir: a Case Study of the Arun Field. SPE Paper Presented at the Asia Pacific Oil and Gas Conference.
2. Al-Anzi, H.A., Sharma, M.M., Pope, G., 2004. Revalorization of Condensate with Methane Flood. SPE Paper Presented at the International Petroleum Conference.
3. Ayyalasomayajula, P., Silpngarmlers, N., Kamath, J., 2005. Well Deliverability Predications for a Low-Permeability Gas Condensate Reservoir. SPE Paper Presented at the Annual Technical Conference and Exhibition.
4. Barnum, R.S., Brinkman, F.P., Richardson, T.W., Spillette, A.G., 1995. Gas Condensate Reservoir Behaviour: Productivity and Recovery Reduction Due to Condensation. SPE Paper Presented at the Annual Technical Conference and Exhibition.
5. Carbon dioxide in enhanced oil recovery;Blunt;Energ. Convers. Manag.,1993
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