Modeling two-phase flow behaviour in a shale gas reservoir with complex fracture networks and flow dynamics
Author:
Funder
Natural Sciences and Engineering Research Council of Canada
Publisher
Elsevier BV
Reference48 articles.
1. A new numerical approach for investigation of the effects of dynamic capillary pressure in imbibition process;Abbasi;J. Petrol. Sci. Eng.,2018
2. Wettability literature survey-Part 4: the effects of wettability on capillary pressure;Anderson;J. Petrol. Technol.,1987
3. A new technique for production prediction in stress-sensitive reservoirs;Chen;J. Can. Petrol. Technol.,2008
4. A semianalytical model for pressure-transient analysis of fractured wells in unconventional plays with arbitrarily distributed discrete fractures;Chen;SPE J.,2018
5. Transient pressure analysis: finite conductivity fracture case versus damaged fracture case;Cinco-Ley,1981
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