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      The Effect of Shear on the Properties of an Associated Polymer Solution for Oil Displacement

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      Polymers

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          Abstract

          Polymer flooding is one of the techniques used to enhance oil recovery from depleted hydrocarbon reservoirs. Although this technology is popular for this application, the shearing effect in the injection process causes poor performance, which is an obstacle to meeting the needs of the formation. An experimental evaluation of the rheological properties, viscoelasticity, hydrodynamic size, static adsorption, and seepage characteristics of the associated polymer solution before and after shearing was conducted to determine the influence of shearing on the polymer solution. The results show that the effect of shear on the polymer was irreversible, and the properties of the polymer solution damaged by shear were attenuated. After the critical associating concentration, the associated polymer can recover its solution properties through hydrophobic association, which can improve the shear resistance of the polymer solution and make its own rheological law and reduce the viscoelastic change. Although the hydrodynamic size, viscoelasticity, and adsorption capacity of the polymer solution after shear failure decreased, strong flow resistance during porous media seepage and mobility control was achieved. Improving the shear resistance of the polymer solution by increasing the intermolecular force is proposed to develop new polymer systems for subsequent oil displacement.

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          Most cited references29

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          Dynamics of associative polymers.

          Current progress in understanding the dynamics of associating polymers is reviewed, with examples including both ionic and hydrogen bonding associations. A particular emphasis is placed on quantification of the strength of the interaction that sets the association lifetime. Knowledge of the interaction energy and the number density of associating groups allows a rational understanding of the linear viscoelastic response of many associating polymers.
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            Properties of Nanofluids and Their Applications in Enhanced Oil Recovery: A Comprehensive Review

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              Enhanced oil recovery mechanisms of polymer flooding in a heterogeneous oil reservoir

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                Author and article information

                Journal
                POLYCK
                Polymers
                Polymers
                2073-4360
                February 2023
                January 25 2023
                : 15
                : 3
                : 616
                Article
                10.3390/polym15030616
                677b3d32-bf82-4fa5-bfea-23cfe969e51b
                © 2023

                https://creativecommons.org/licenses/by/4.0/

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