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- W3202015943 abstract "Summary Enhanced Oil Recovery (EOR) is nowdays gaining more attention than any time before. EOR methods have been applied world widely to sandstone reservoirs and proved to increase oil recovery factor. So far Naturally fractured carbonate Reservoirs (NFCRs) have showed short life time production with low ultimate recovery factor during primary recovery stage. The oil produced at surface depleting natural reservoir energy is drained mainly from the fracture system where 90% of the oil in matrixes remains trapped in. Towards treating this situation, there has been extensive research in oil/brine/rock systems as well as natural and chemical emulsion formation at conventional reservoir conditions. However, no experimental simulation study has investigated the dynamic fluid flow and advancement between matrix and fracture system for NFCR. In this study a laboratory micro-model carbonate has been designed to simulate and evaluate the dynamic flow of chemical emulsion and reservoir fluids advance in fractures and matrixes of carbonate reservoirs during the injection of surface-active agent. The findings demonstrated that viscous forces as well as increased viscosity in the microemulsion lead to better mobility control which can substantially increase oil production in NFC reservoirs." @default.
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- W3202015943 date "2021-01-01" @default.
- W3202015943 modified "2023-09-24" @default.
- W3202015943 title "Increasing Oil Recovery in Naturally-Fractured Carbonate Reservoirs Using Microemulsions" @default.
- W3202015943 doi "https://doi.org/10.3997/2214-4609.202011956" @default.
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