Pi Yanfu, Fan Xinyu, Liu Li, Zhao Mingjia, Jiang Linxiao, Cheng Guoyu
Key Laboratory of Enhanced Oil and Gas Recovery of Ministry of Education, Northeast Petroleum University, Daqing 163319, China.
Polymers (Basel). 2023 Aug 24;15(17):3523. doi: 10.3390/polym15173523.
After polymer flooding in Daqing Oilfield, the heterogeneity of the reservoir is enhanced, leading to the development of the dominant percolation channels, a significant issue with inefficient circulation, a substantial amount of displacement agents, and elevated cost. In order to further improve oil recovery, an adaptive oil displacement system (ASP-PPG) was proposed by combining preformed particle gel (PPG) with an alkali-surfactant-polymer system (ASP). This comprehensive study aims to assess the effectiveness of the adaptive oil displacement system (ASP-PPG) in improving the recovery efficiency of heterogeneous reservoirs after polymer flooding. The evaluation encompasses various critical aspects, including static performance tests, flow experiments, microscopic experiments, profile control experiments, and flooding experiments conducted on a four-layer heterogeneous physical model. The experimental results show that the adaptive system has robust stability, enhanced mobility, effective plugging capability, and profile improvement capability. Notably, the system demonstrates the remarkable ability to successfully pass through the core and effectively block the large pores, resulting in an 18.4% recovery incremental after polymer flooding. This improvement is reflected in the reduced oil saturation values in the ultra-high permeability, high permeability, medium, and low permeability layers, which are 5.09%, 7.01%, 13.81%, and 15.45%, respectively. The adaptive system effectively recovered the remaining oil in the low and medium permeability layers, providing a promising approach for improving the recovery factors under challenging reservoir conditions.
大庆油田聚合物驱油后,油藏非均质性增强,导致优势渗流通道发育,出现低效循环、驱油剂用量大、成本高等问题。为进一步提高采收率,将预交联颗粒凝胶(PPG)与碱-表面活性剂-聚合物体系(ASP)相结合,提出了一种自适应驱油体系(ASP-PPG)。本综合研究旨在评估自适应驱油体系(ASP-PPG)对聚合物驱后非均质油藏提高采收率的有效性。评价包括静态性能测试、流动实验、微观实验、调剖实验以及在四层非均质物理模型上进行的驱油实验等多个关键方面。实验结果表明,该自适应体系具有较强的稳定性、提高的流度、有效的封堵能力和改善剖面能力。值得注意的是,该体系具有成功通过岩心并有效封堵大孔道的显著能力,聚合物驱后采收率提高了18.4%。这种提高体现在特高渗透层、高渗透层、中渗透层和低渗透层的含油饱和度降低,分别为5.09%、7.01%、13.81%和15.45%。该自适应体系有效采出了中低渗透层的剩余油,为在复杂油藏条件下提高采收率提供了一种有前景的方法。