Publication | Closed Access
Describing a strategy to estimate the CO<sub>2</sub>-heavy oil minimum miscibility pressure based on the experimental methods
25
Citations
21
References
2018
Year
Slim TubePetroleum ReservoirPetroleum MachineryFluid PropertiesEngineeringSlim Tube MethodCo2 Immiscible FloodingCivil EngineeringMechanical EngineeringMmp ValueExperimental MethodsPressure VesselPetroleum Production EngineeringHeavy Oil RecoveryMultiphase FlowGas-liquid FlowCo2 Miscible FloodingPetroleum Engineering
To measure MMP, slim tube method is time consuming, especially for heavy oils. In this study, a strategy is considered to measure the MMP in one of the Iranian heavy oil reservoirs. The strategy steps were done through; partial data of slim tube, coupling numerical model (CNM), full slim tube, and VIT test. The results showed that CNM technique with two experimental data obtains the MMP value faster than running a full slim tube with low error result. However, VIT determined MMP faster and its results illustrated that miscibility pressure for heavy oil occurs at zero IFT, unlike light oils.
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