Matches in SemOpenAlex for { <https://semopenalex.org/work/W2896655492> ?p ?o ?g. }
- W2896655492 abstract "Abstract The oil recovery from fractured reservoirs is usually low and the early water breakthrough is one result of the fractured reservoir. Two enhanced oil recovery (EOR) methods, low salinity water flooding (LSWF) and micro-gel, have recently drawn great interest from the oil industry. We integrated both methods into one process. The objective of this study was to test how the combining method could reduce production rates from the fractured layer and improve the production rate from the non-fractured layer through laboratory experiments. The parallel non-crossflow models, which were made of sandstone cores and two core holders, were built. The gel strength, water salinity, gel particle size, and sandstone permeability effects on oil recovery, production rate, and gel penetrations were studied. Sodium chloride (NaCl) was used for brine flooding and preparing swollen PPG. Two brine concentrations (1.0, and 0.01 wt. % NaCl) were used for the experiments. A light mineral oil was used. A flow rate of 0.5 ml/min. was used to inject the brine into the parallel non-crossflow models before and after the gel was placed into the fracture. The gel was injected into Outlet 1 to fill out the fracture at a flow rate of 2.0 ml/min until the gel injection pressure reached 500 psi. The optimum water salinity for the application of the coupled method was determined through laboratory experiments to be 0.01 wt. % NaCl because this gave the highest gel penetration into the partially fractured layer. However, the best water shut-off was obtained when the water salinity was 1.0 wt. % NaCl. The incremental oil recovery was almost the same in both 1.0 and 0.01 wt. % NaCl water salinity. When the gel particle size decreased, the water shut-off from the partially- closed fracture layer and the incremental oil recovery from the matrix were increased. This application had no significant effect when the core permeability was low because there was not much of an effect on the production rate ratio after gel treatment. From the laboratory experiments, we concluded that the PPG application might be more successful it is swelled in a low brine concentration." @default.
- W2896655492 created "2018-10-26" @default.
- W2896655492 creator A5032439098 @default.
- W2896655492 creator A5056096165 @default.
- W2896655492 creator A5060475186 @default.
- W2896655492 creator A5067654590 @default.
- W2896655492 creator A5077164827 @default.
- W2896655492 creator A5084746750 @default.
- W2896655492 date "2018-04-23" @default.
- W2896655492 modified "2023-09-24" @default.
- W2896655492 title "Integrating Microgel-Low Salinity Waterflooding to Improve Production Profile in Non-Crossflow Heterogeneous Reservoir" @default.
- W2896655492 cites W183365269 @default.
- W2896655492 cites W1968412354 @default.
- W2896655492 cites W1983031078 @default.
- W2896655492 cites W1988808701 @default.
- W2896655492 cites W1995754841 @default.
- W2896655492 cites W1997454577 @default.
- W2896655492 cites W1998750825 @default.
- W2896655492 cites W2005323816 @default.
- W2896655492 cites W2005813851 @default.
- W2896655492 cites W2009851197 @default.
- W2896655492 cites W2011392951 @default.
- W2896655492 cites W2014827720 @default.
- W2896655492 cites W2029024044 @default.
- W2896655492 cites W2032835541 @default.
- W2896655492 cites W2034551498 @default.
- W2896655492 cites W2042099423 @default.
- W2896655492 cites W2058170548 @default.
- W2896655492 cites W2074452382 @default.
- W2896655492 cites W2080133152 @default.
- W2896655492 cites W2081006004 @default.
- W2896655492 cites W2081111402 @default.
- W2896655492 cites W2082911834 @default.
- W2896655492 cites W2088059559 @default.
- W2896655492 cites W2101023393 @default.
- W2896655492 cites W2115003854 @default.
- W2896655492 cites W2127121957 @default.
- W2896655492 cites W2265721360 @default.
- W2896655492 cites W2321455723 @default.
- W2896655492 cites W2336453852 @default.
- W2896655492 cites W2336848985 @default.
- W2896655492 cites W2342972154 @default.
- W2896655492 cites W2343647532 @default.
- W2896655492 cites W2565519164 @default.
- W2896655492 cites W2620833798 @default.
- W2896655492 cites W2152453670 @default.
- W2896655492 doi "https://doi.org/10.2118/192154-ms" @default.
- W2896655492 hasPublicationYear "2018" @default.
- W2896655492 type Work @default.
- W2896655492 sameAs 2896655492 @default.
- W2896655492 citedByCount "0" @default.
- W2896655492 crossrefType "proceedings-article" @default.
- W2896655492 hasAuthorship W2896655492A5032439098 @default.
- W2896655492 hasAuthorship W2896655492A5056096165 @default.
- W2896655492 hasAuthorship W2896655492A5060475186 @default.
- W2896655492 hasAuthorship W2896655492A5067654590 @default.
- W2896655492 hasAuthorship W2896655492A5077164827 @default.
- W2896655492 hasAuthorship W2896655492A5084746750 @default.
- W2896655492 hasConcept C111368507 @default.
- W2896655492 hasConcept C127313418 @default.
- W2896655492 hasConcept C129513315 @default.
- W2896655492 hasConcept C139719470 @default.
- W2896655492 hasConcept C162324750 @default.
- W2896655492 hasConcept C2778348673 @default.
- W2896655492 hasConcept C2779681308 @default.
- W2896655492 hasConcept C2984309096 @default.
- W2896655492 hasConcept C39432304 @default.
- W2896655492 hasConcept C78762247 @default.
- W2896655492 hasConceptScore W2896655492C111368507 @default.
- W2896655492 hasConceptScore W2896655492C127313418 @default.
- W2896655492 hasConceptScore W2896655492C129513315 @default.
- W2896655492 hasConceptScore W2896655492C139719470 @default.
- W2896655492 hasConceptScore W2896655492C162324750 @default.
- W2896655492 hasConceptScore W2896655492C2778348673 @default.
- W2896655492 hasConceptScore W2896655492C2779681308 @default.
- W2896655492 hasConceptScore W2896655492C2984309096 @default.
- W2896655492 hasConceptScore W2896655492C39432304 @default.
- W2896655492 hasConceptScore W2896655492C78762247 @default.
- W2896655492 hasLocation W28966554921 @default.
- W2896655492 hasOpenAccess W2896655492 @default.
- W2896655492 hasPrimaryLocation W28966554921 @default.
- W2896655492 hasRelatedWork W1520832281 @default.
- W2896655492 hasRelatedWork W2003924524 @default.
- W2896655492 hasRelatedWork W2016925839 @default.
- W2896655492 hasRelatedWork W2019217877 @default.
- W2896655492 hasRelatedWork W2089410753 @default.
- W2896655492 hasRelatedWork W2143936686 @default.
- W2896655492 hasRelatedWork W2319345998 @default.
- W2896655492 hasRelatedWork W2323692028 @default.
- W2896655492 hasRelatedWork W2515495998 @default.
- W2896655492 hasRelatedWork W2801142780 @default.
- W2896655492 hasRelatedWork W2805727309 @default.
- W2896655492 hasRelatedWork W2884069433 @default.
- W2896655492 hasRelatedWork W2896036134 @default.
- W2896655492 hasRelatedWork W2896276318 @default.
- W2896655492 hasRelatedWork W2896331750 @default.
- W2896655492 hasRelatedWork W2896876224 @default.
- W2896655492 hasRelatedWork W2905511857 @default.
- W2896655492 hasRelatedWork W2921684992 @default.
- W2896655492 hasRelatedWork W2979482210 @default.