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- W1998889597 abstract "ABSTRACT A study has been completed on the effects of pattern type, micellar slug size, heterogeneity, and process timing on micellar/polymer flooding. In designing a field-scale enhanced recovery process, one generally knows the laboratory-scale performance of the process, the area of reservoir to be developed, its physical properties, and the number of wells that can be afforded. With these givens, a simple model has been developed for determining the optimum pattern type and optimum micellar slug size as a function of the field-scale capillary number, the Dykstra-Parsons coefficient, and the discount rate. Results show that, on an equal-area-per-well basis, five-spot and staggered line drive patterns are favored over seven- and nine-spot configurations. The optimum slug size for a homogeneous five-spot was found to be the amount required to satisfy about 90% of the surfactant adsorption requirement of the reservoir. The optimum slug size decreased with increasing heterogeneity. Oil recovery in low-permeability fields or those in which the well-spacing is large can be significantly enhanced by utilizing a surfactant whose interfacial tension against oil is less than 10−3 dynes/cm." @default.
- W1998889597 created "2016-06-24" @default.
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- W1998889597 date "1987-09-27" @default.
- W1998889597 modified "2023-09-27" @default.
- W1998889597 title "Estimating Field-Scale Micellar/Polymer Performance" @default.
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- W1998889597 doi "https://doi.org/10.2118/16731-ms" @default.
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