特种油气藏 ›› 2026, Vol. 33 ›› Issue (2): 135-142.DOI: 10.3969/j.issn.1006-6535.2026.02.015

• 钻采工程 • 上一篇    下一篇

耐温凝胶封堵体系在稠油蒸汽驱开发中的应用

闫瑞升   

  1. 中国石油辽河油田分公司欢喜岭采油厂,辽宁 盘锦 124010
  • 收稿日期:2025-11-12 修回日期:2026-01-07 发布日期:2026-07-30
  • 作者简介:闫瑞升(1972—),男,高级工程师,1995年毕业于石油大学(北京)石油工程专业,现主要从事油气开发生产管理与研究工作。
  • 基金资助:
    国家自然科学基金“孔隙介质中稠油多重乳化作用和纳米超分子化学降黏降阻方法研究”(52374054)

Application of a temperature-resistant gel plugging system in steam flooding heavy oil reseruoir

YAN Ruisheng   

  1. Huanxiling Oil Production plant, PetroChina Liaohe Oilfield Company,Panjin,Liaoning 124010,China
  • Received:2025-11-12 Revised:2026-01-07 Published:2026-07-30

摘要: 针对稠油蒸汽驱开发过程中地层非均质性导致的汽窜频发、蒸汽波及体积缩减、热能利用率低的问题,采用耐温凝胶颗粒+纳微米耐温凝胶协同封堵技术,研制了耐温260 ℃的功能型封堵体系。研究表明:耐温凝胶颗粒具备优异耐温性、强变形能力及热聚并特性,可针对性封堵大孔道与高渗通道;纳微米耐温凝胶初始黏度低、流动性强、封堵强度高,在高温下快速成胶,能有效填充微小窜流通道;通过先注入凝胶颗粒建立封堵骨架,后注入纳微米凝胶填补缝隙的组合工艺,实现对高渗层及蒸汽窜流通道的协同高效封堵。将该技术应用于辽河油田齐40块蒸汽驱先导试验井组,实施封堵后注汽井未与周围生产井发生汽窜,阶段累计增油量为1 085 t,显著提升了蒸汽利用率及热采开发效果。该技术可为同类稠油油藏汽窜治理提供有效技术支撑。

关键词: 蒸汽窜流, 凝胶颗粒, 纳微米耐温凝胶, 数值模拟, 稠油, 蒸汽驱, 辽河油田

Abstract: To tackle the problems of frequent steam channeling,shrinkage of steam swept volume,and low thermal-energy utilization caused by formation heterogeneity during heavy-oil steam flooding,a synergistic plugging technology combining temperature-resistant gel particles and nano-micron temperature-resistant gel was applied,and a functional plugging system with temperature resistance up to 260 ℃ was developed.Results show that the temperature-resistant gel particles have excellent thermal stability,strong deformability,and thermal coalescence behavior,allowing targeted plugging of large pore channels and high-permeability channels.The nano-micron temperature-resistant gel has low initial viscosity,strong mobility,and high plugging strength;it gels rapidly at high temperature and can effectively fill small channeling pathways.By injecting gel particles first to establish a plugging framework and then injecting nano-micron gel to fill gaps,a combined process achieves synergistic and efficient plugging of high-permeability and steam-channeling pathways.This technology was applied to a steamflood pilot well group in the Qi 40 Block of the Liaohe Oilfield.After plugging,no steam channeling occurred between steam-injection wells and surrounding production wells,and the staged cumulative incremental oil was 1 085 t,significantly improving steam utilization and thermal-recovery performance.This technology can provide effective technical support for managing steam channeling in similar heavy-oil reservoirs.

Key words: steam channeling, gel particles, nano-micron temperature-resistant gel, numerical simulation, heavy oil, steam flooding, Liaohe Oilfield

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