4.5 Article

Characteristics of Viscoelastic-Surfactant-Induced Wettability Alteration in Porous Media

期刊

ENERGIES
卷 14, 期 24, 页码 -

出版社

MDPI
DOI: 10.3390/en14248454

关键词

wettability; porous media; viscoelastic surfactant; Amott; USBM

资金

  1. Ministry of Science and Higher Education of the Russian Federation [075-15-2020-931]
  2. China National Natural Science Fund [U19B2010]

向作者/读者索取更多资源

Wettability alteration is an important mechanism in surfactant flooding. The study used the Amott/USBM method to investigate the average wettability alteration of initially neutral cores after viscoelastic-surfactant (VES) filtration, with results showing that dynamic aging had a greater impact on wettability and increased VES concentration enhanced the alteration.
Wettability alteration is one of the most important mechanisms of surfactant flooding. In this work, the combined Amott/USBM (United States Bureau of Mines) method was applied to study the average wettability alteration of initially neutral cores after viscoelastic-surfactant (VES) filtration. The effects of static aging, dynamic aging, VES concentration, filtration flow rate, and pore radius on the alteration of a core's average wettability were studied. The wettability-alteration trends measured by Amott and USBM were consistent, demonstrating that the overall hydrophilicity of the core was enhanced after VES filtration. The wettability alterations of the core brought about by dynamic aging were more significant than by static aging. The viscoelastic properties of the VES played an important role in altering the wettability. In addition, the ability of the VES to affect the core's wettability was significantly enhanced when the VES concentration was increased, which was beneficial in increasing VES adsorption on the pore-wall surface, thus altering the overall wettability of the core. Increasing filtration flow rates can destroy those high-viscosity VES aggregates via the higher shear rate. A higher retention of VES makes the core more hydrophilic. The difference in the wettability of cores with different pore radius after VES filtration was not significant. The alteration of average wettability caused by VES in porous media provides a new vision for studying the EOR mechanism of VES.

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