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- W2910716731 abstract "In-depth water flooding profile modification is a new problem for low permeability formation under fracturing. Profile control study for in-depth cross flow which couples fracture and matrix is neither comprehensive nor complete at present. Artificial hydraulic fracturing core is manufactured to conduct core flood experiment. In-depth profile modification mechanisms of gel-nitrogen-foam are revealed based on microstructure analysis and mechanical stability evaluation. The instantaneous stability and durability of gel-nitrogen-foam are evaluated by breakthrough pressure and residual resistance factor. Weak movement ability restrains the distribution of gel in cross zone and bubble burst effect declines the active time of nitrogen-foam. Gel-nitrogen-foam displays promised profile modification performance based on synergistic effect which combines movement ability of nitrogen-foam and durability of gel. Nuclear magnetic resonance (NMR) test result shows that sweep area of matrix significant increases after profile modification, which indicates that enhance oil recovery (EOR) main contributes by the remaining oil in matrix nearby injection fracture. The optimized gas/liquid ratio and injection volume are 1.95 and 2.8 PV separately with incremental EOR of 9.74%. Coupling laboratory experiment with numerical simulation, this work offers a new insight of in-depth cross flow profile modification mechanism for formation under fracturing from macroscopic and microscopic views." @default.
- W2910716731 created "2019-01-25" @default.
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- W2910716731 date "2019-01-11" @default.
- W2910716731 modified "2023-10-17" @default.
- W2910716731 title "Laboratory evaluation and numerical simulation study on profile modification performance of gel-nitrogen-foam for low permeability formation under fracturing" @default.
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- W2910716731 doi "https://doi.org/10.1080/02726351.2018.1536684" @default.
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