Gong Qi, Li Haitao, Ma Xin, Hao Jiating, Jia Fangjun, Luo Hongwen, Gao Sujuan
State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University, Chengdu, People's Republic of China.
Xinjiang Uygur Autonomous Region Geological Exploration Quality Evaluation Center, Urumqi, 830000, People's Republic of China.
Sci Rep. 2025 Aug 22;15(1):30923. doi: 10.1038/s41598-025-15257-5.
Oil displacement agent technology is an attractive technique for improving oil recovery efficiency, as it not only enhances oil recovery efficiency and extends oilfield lifespan, but also helps reduce environmental impact and improve the precision of oilfield management. However, the application of traditional oil displacement agents in oilfield development is limited by poor local fluidity and difficulty in monitoring their effectiveness. To improve oil displacement efficiency and achieve more accurate process monitoring, this paper designs an oil displacement agent that has both oil displacement and tracer functions. In this work, we first synthesized a fluorescent nano displacement agent with an average particle size of 80 nm using an improved Stöber synthesis method and silane coupling agent surface modification theory and characterized it using characterization techniques. Finally, we evaluated the migration characteristics, oil displacement performance, and tracer performance of the fluorescent nano displacement agent in the reservoir through core flow experiments. The results showed that the fluorescent nano displacement agent has good migration ability, with an improved recovery efficiency of 14.09%. The error between the fitted permeability and the actual permeability of the core in the experiment was about 10%. The simulation results once again proved that the fluorescent nano displacement agent can be used for tracer testing.
驱油剂技术是提高原油采收率的一项具有吸引力的技术,因为它不仅能提高原油采收率、延长油田寿命,还有助于减少环境影响并提高油田管理的精度。然而,传统驱油剂在油田开发中的应用受到局部流动性差和监测其有效性困难的限制。为了提高驱油效率并实现更精确的过程监测,本文设计了一种兼具驱油和示踪功能的驱油剂。在这项工作中,我们首先使用改进的Stöber合成方法和硅烷偶联剂表面改性理论合成了平均粒径为80 nm的荧光纳米驱油剂,并使用表征技术对其进行了表征。最后,我们通过岩心流动实验评估了荧光纳米驱油剂在油藏中的运移特性、驱油性能和示踪性能。结果表明,荧光纳米驱油剂具有良好的运移能力,采收率提高了14.09%。实验中岩心拟合渗透率与实际渗透率之间的误差约为10%。模拟结果再次证明,荧光纳米驱油剂可用于示踪测试。