Improving reservoir conformance using gelled polymer systems. Fourteenth quarterly report, January 1, 1996--March 31, 1996
Author(s) -
D.W. Green,
G.P. Willhite
Publication year - 1996
Publication title -
osti oai (u.s. department of energy office of scientific and technical information)
Language(s) - English
Resource type - Reports
DOI - 10.2172/256130
Subject(s) - polyacrylamide , porous medium , polymer , petroleum engineering , process (computing) , aqueous solution , porosity , chemical engineering , wellbore , process engineering , enhanced oil recovery , chemistry , chromatography , materials science , computer science , polymer science , geology , engineering , organic chemistry , operating system
The general objectives are to (1) to identify and develop gelled polymer systems which have potential to improve reservoir conformance of fluid displacement processes, (2) to determine the performance of these systems in bulk and in porous media, and (3) to develop methods to predict the capability of these systems to recover oil from petroleum reservoirs. This work focuses on three types of gel systems - an aqueous polysaccharide (KUSP1) system that gels as a function of pH, the chromium(III)-polyacrylamide system and the aluminum citrate-polyacrylamide system. Laboratory research is directed at the fundamental understanding of the physics and chemistry of the gelation process in bulk form and in porous media. This knowledge will be used to develop conceptual and mathematical models of the gelation process. Mathematical models will then be extended to predict the performance of gelled polymer treatments in oil reservoirs. Technical progress of Task III, mechanisms of in situ gelation is presented in this progress report
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