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- W3210037333 abstract "Slickwater is widely used in unconventional reconstruction, but its sand-carrying capacity is weak, and the influencing factors of friction reduction are not clear. To cope with various complex working conditions, it is necessary to develop a new system with strong sand-carrying capacity and good friction reduction tolerance. In this paper, polymer with high friction reduction rate is selected firstly, and then a new type of viscoelastic slickwater system is formed by adding nano-emulsion. Then, the relationship between the friction reduction performance and temperature, shear flow, salinity of the slickwater system was studied. The influence on the microstructure of the slickwater with the change of friction reduction rate under various factors was analyzed by using electron microscope. The viscoelasticity and viscosity of the slickwater system were evaluated by using rheometer. Finally, based on the D&M formula, the friction calculation model suitable for viscoelastic slickwater system is established and verified with field application. The results showed that the friction reduction performance was improved slightly after the combination of the high friction reduction slickwater and nano-emulsion, and the resistance to salt, shear, and temperature was better; The intersection point of viscoelastic modulus curve moved from 0.47 Hz to 0.10 Hz, and the network structure of the tissue was more well developed, and the law of friction reduction can be could be fitted by the D&M formula; It is found that it has good consistency by fitting the field data through the friction reduction model. It provides theoretical support for the improvement of efficiency, mechanism research, and on-site friction prediction of slickwater system products in the future." @default.
- W3210037333 created "2021-11-08" @default.
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- W3210037333 date "2021-12-01" @default.
- W3210037333 modified "2023-10-15" @default.
- W3210037333 title "Optimization and friction reduction study of a new type of viscoelastic slickwater system" @default.
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- W3210037333 doi "https://doi.org/10.1016/j.molliq.2021.117876" @default.
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