Novel self-assembling polymeric system based on a hydrophobic modified copolymer: formulation, rheological characterization, and performance in enhanced heavy oil recovery
Author:
Affiliation:
1. Department of Chemical Engineering; University of New Brunswick; Head Hall,15 Dineen Dr. E3B 5A3 Fredericton Canada
2. Department of Chemical Engineering; Université Laval; 1065 avenue de la Médecine Québec (Québec) G1V 0A6 Canada
Publisher
Wiley
Subject
Polymers and Plastics
Reference45 articles.
1. Polymer Flood Application to Improve Heavy Oil Recovery at East Bodo
2. B. K. Maitin Performance analysis of several polyacrylamide floods on North German oil fields 1992
3. D. M. Wang J. C. Cheng Q. Y. Yang W. C. Gong Q. Li F. M. Chen Viscous-elastic polymer can increase microscale displacement efficiency in cores 2000
4. Potential for Polymer Flooding Reservoirs with Viscous Oils
5. D. M. Wang J. C. Zhang F. R. Meng H. Liu L. Li B. H. Han L. Q. Qi Commercial test of polymer flooding in Daqing oil field 1995
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