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Design of a Polymer Composition for the Conformance Control in Heterogeneous Reservoirs

Inzir Raupov (), Mikhail Rogachev and Julia Sytnik
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Inzir Raupov: Department of Petroleum Engineering, Saint Petersburg Mining University, 199106 St. Petersburg, Russia
Mikhail Rogachev: Department of Petroleum Engineering, Ufa State Petroleum Technological University, 450000 Ufa, Russia
Julia Sytnik: Department of Petroleum Engineering, Saint Petersburg Mining University, 199106 St. Petersburg, Russia

Energies, 2023, vol. 16, issue 1, 1-18

Abstract: The article is devoted to the issue of a low sweep efficiency in the heterogeneous terrigenous reservoirs containing remaining oil. Water plugging operations that redirect the injection fluid flows into unswept zones, are one approach to enhancing the oil recovery in these reservoirs. The commonly used chemical reagents in these treatments are acrylate polymer solutions. The polymer solutions must reach the target water-saturated zones and form a strong gel barrier there. Furthermore, the polymer compositions should have a low initial viscosity to provide a good injectivity and penetration ability. Therefore, the methods of adjusting the gelation time are necessary. There are numerous studies in modern scientific society devoted to the study of water-plugging polymer compositions. However, aspects, such as the effect of the hydrogen index on gelation, have received insufficient attention. In this paper, we describe the features of the developed polymer composition, based on a hydrolyzed polymer of acrylonitrile with a controlled gelation time for the chemically enhanced oil recovery. The component composition and the concentration levels were selected, based on the alterations in the hydrogen index of the polymer solution. It was scientifically proven that by adhering to a neutral hydrogen index, it is possible to improve the properties of the polymer composition. Moreover, using a model of a heterogeneous reservoir, it was confirmed that the proposed polymer composition achieves selective plugging. As a result of the polymer gel treatment, the water cut decreased by 4% and the displacement coefficient of oil increased by 20%, in comparison with the effect of the original composition without a gel-time modifier.

Keywords: enhanced oil recovery; chemical EOR; gel treatment; conformance control; water cut; polymer composition; gel-time modifier; sweep efficiency improvement (search for similar items in EconPapers)
JEL-codes: Q Q0 Q4 Q40 Q41 Q42 Q43 Q47 Q48 Q49 (search for similar items in EconPapers)
Date: 2023
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