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- W4386478595 abstract "Injection and production of hydrogen gas storage through multiple cycles often lead to significant variations in the gas water occurrence state and the associated relative permeability curve (RPC). In this study, a visual sandstone etching model is used to analyze the alteration of the occurrence state after multiple cycles of gas-water inter drive. The influence of the occurrence state on the variation of the RPC is revealed. The Carlson model and experimental data were used to modify the numerical simulation method of wetting hysteresis resulting from multiple cycles of injection and production. The experimental results show that the utilization rate of pore space decreased from 51.06% to 40.57% with the dynamic change of gas-liquid injection and production cycle. The total gas saturation and residual gas saturation in the model show a monotonically increasing trend. The total gas saturation increased from 64.26% to 73.89%. The residual gas saturation increased from 31.45% to 43.91%. The continuity of both gas-liquid phase distributions is enhanced with the cycles of injection and production. The wetting hysteresis is obvious in hydrogen injection and production. The relative permeability of the gas phase decreases rapidly during the imbibition process. The area swept by the gas phase displacement-imbibition curve changed from triangle to cone. The difference in gas saturation of the displacement-imbibition process decreased gradually from 0.314 to 0.054. The Carlson model is more suitable for wetting hysteresis after the second cycle (TSC) of hydrogen injection and production. The numerical simulation results show that the modified RPC can more accurately simulate the injection and extraction variation in hydrogen storage." @default.
- W4386478595 created "2023-09-07" @default.
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- W4386478595 date "2023-11-01" @default.
- W4386478595 modified "2023-10-15" @default.
- W4386478595 title "Pore-scale mechanisms and hysteresis effect during multi-cycle injection and production process in underground hydrogen storage reservoir" @default.
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- W4386478595 doi "https://doi.org/10.1016/j.energy.2023.129007" @default.
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