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- W4317746089 abstract "Reagent modification is widely used in the coal industry to enhance the pore-fracture structures and seepage channel. Unfortunately, the investigations of methane seepage capacity in coal seams before and after reagent modification from a microscopic perspective were scarce. In this study, a novel lattice Boltzmann (LBM) – based methodology was developed to estimate the methane seepage capacity by incorporating the effects of oxidizing acid (nitrate acid, HNO3) and ionic liquid (1-butyl-3methylimidazole tetrafluoroborate, [Bmim][BF4]). The main conclusions are as follows: the addition of HNO3 and [Bmim][BF4] enhanced the pore structure, increased the maximum seepage velocity, but decreased the average flow velocity; and made the positions of higher cross-sectional velocity closer to the inlet of seepage channel. The reason is mainly attributed to the small cracks or pores adsorbed by [Bmim][BF4], which deteriorated the channel connectivity and slowed down the gas flow. With the increase of solid core distribution probability (Pc) value, the addition of HNO3 and [Bmim][BF4] benefitted the seepage channel more obviously, decreased the maximum seepage velocity more significantly, and declined the average seepage velocity more rapidly. This study can provide a theoretical guidance for the development of acidizing and infiltration enhancement technologies in coal seams." @default.
- W4317746089 created "2023-01-23" @default.
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- W4317746089 date "2023-05-01" @default.
- W4317746089 modified "2023-09-27" @default.
- W4317746089 title "Numerical investigation of methane seepage behaviour in coal with lattice Boltzmann approach: The synergistic effects of oxidizing acid and ionic liquid" @default.
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- W4317746089 doi "https://doi.org/10.1016/j.fuel.2023.127538" @default.
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