College of Science, China University of Petroleum, Qingdao 266580, China.
State Key Laboratory of Enhanced Oil Recovery, Research Institute of Petroleum Exploration & Development, CNPC, Beijing 100083, China.
Molecules. 2022 Dec 26;28(1):188. doi: 10.3390/molecules28010188.
Because of the growing demand for energy, oil extraction under complicated geological conditions is increasing. Herein, oil displacement by CO2 in wedge-shaped pores was investigated by molecular dynamics simulation. The results showed that, for both single and double wedge-shaped models, pore Ⅱ (pore size from 3 to 8 nm) exhibited a better CO2 flooding ability than pore Ⅰ (pore size from 8 to 3 nm). Compared with slit-shaped pores (3 and 8 nm), the overall oil displacement efficiency followed the sequence of 8 nm > double pore Ⅱ > single pore Ⅱ > 3 nm > double pore Ⅰ > single pore Ⅰ, which confirmed that the exits of the wedge-shaped pores had determinant effects on CO2 enhanced oil recovery over their entrances. “Oil/CO2 inter-pore migration” and “siphoning” phenomena occurred in wedge-shaped double pores by comparing the volumes of oil/CO2 and the center of mass. The results of the interaction and radial distribution function analyses indicate that the wide inlet and outlet had a larger CO2−oil contact surface, better phase miscibility, higher interaction, and faster displacement. These findings clarify the CO2 flooding mechanisms in wedge-shaped pores and provide a scientific basis for the practical applications of CO2 flooding.
由于能源需求的不断增长,在复杂地质条件下进行的石油开采越来越多。本文通过分子动力学模拟研究了 CO2 在楔形孔隙中的驱油作用。结果表明,对于单、双楔形模型,孔Ⅱ(孔径为 3 至 8nm)比孔Ⅰ(孔径为 8 至 3nm)具有更好的 CO2 驱油能力。与狭缝状孔隙(3nm 和 8nm)相比,整体驱油效率的顺序为 8nm>双孔Ⅱ>单孔Ⅱ>3nm>双孔Ⅰ>单孔Ⅰ,这证实了楔形孔隙的出口对 CO2 提高采收率的作用明显大于其入口。通过比较油/CO2 和质心的体积,在楔形双孔隙中发生了“油/CO2 间孔迁移”和“虹吸”现象。相互作用和径向分布函数分析的结果表明,宽进出口具有更大的 CO2-油接触面积、更好的相溶性、更高的相互作用和更快的驱替。这些发现阐明了 CO2 在楔形孔隙中的驱油机理,为 CO2 驱油的实际应用提供了科学依据。