He Hong, Tian Yuhang, Zhang Lianfeng, Li Hongsheng, Guo Yan, Liu Yu, Liu Yifei
College of Petroleum Engineering, Yangtze University, Wuhan 430100, China.
Key Laboratory of Drilling and Production Engineering for Oil and Gas, Wuhan 430100, China.
Gels. 2024 Jul 18;10(7):475. doi: 10.3390/gels10070475.
Heterogeneous phase combined flooding (HPCF) has been a promising technology used for enhancing oil recovery in heterogeneous mature reservoirs. However, the injectivity and propagation behavior of preformed particle gel (PPG) in low-medium-permeability reservoir porous media is crucial for HPCF treatment in a low-medium-permeability reservoir. Thus, the injectivity and propagation behavior of preformed particle gel in a low-medium-permeability reservoir were systematically studied by conducting a series of sand pack flooding experiments. The matching factor (δ) was defined as the ratio of the average size of PPG particles to the mean size of pore throats and the pressure difference ratio (β) was proposed to characterize the injectivity and propagation ability of PPG. The results show that with the increase in particle size and the decrease in permeability, the resistance factor and residual resistance factor increase. With the increase in the matching factor, the resistance factor and residual resistance factor increase. The higher the resistance factor and residual resistance factor are, the worse the injectivity of particles is. By fitting the relationship curve, PPG injection and propagation standards were established: when the matching coefficient is less than 55 and β is less than 3.4, PPG can be injected; when the matching coefficient is 55-72 and β is 3.4-6.5, PPG injection is difficult; when the matching coefficient is greater than 72 and β is greater than 6.5, PPG cannot be injected Thus, the matching relationship between PPG particle size and reservoir permeability was obtained. This research will provide theoretical support for further EOR research and field application of heterogeneous phase combined flooding.
非均相复合驱油技术(HPCF)是一种用于提高非均质成熟油藏采收率的很有前景的技术。然而,预交联颗粒凝胶(PPG)在低渗-中渗油藏多孔介质中的注入性和传播行为对于低渗-中渗油藏的非均相复合驱油处理至关重要。因此,通过进行一系列填砂管驱油实验,系统地研究了预交联颗粒凝胶在低渗-中渗油藏中的注入性和传播行为。将匹配因子(δ)定义为PPG颗粒平均尺寸与孔喉平均尺寸之比,并提出压力差比(β)来表征PPG的注入性和传播能力。结果表明,随着粒径的增大和渗透率的降低,阻力系数和残余阻力系数增大。随着匹配因子的增大,阻力系数和残余阻力系数增大。阻力系数和残余阻力系数越高,颗粒的注入性越差。通过拟合关系曲线,建立了PPG注入和传播标准:当匹配系数小于55且β小于3.4时,PPG可以注入;当匹配系数为55-72且β为3.4-6.5时,PPG注入困难;当匹配系数大于72且β大于6.5时,PPG无法注入。由此得到了PPG粒径与油藏渗透率之间的匹配关系。该研究将为非均相复合驱油的进一步提高采收率研究和现场应用提供理论支持。