Fang Junwei, Sun Jinsheng, Feng Xingen, Pan Lijuan, Bai Yingrui, Yang Jingbin
School of Petroleum Engineering, China University of Petroleum (East China), Qingdao 266580, China.
Northwest Petroleum Branch, Sinopec, Urumqi 830011, China.
Gels. 2025 May 8;11(5):350. doi: 10.3390/gels11050350.
Gas channeling phenomena in carbonate fracture-vuggy reservoirs frequently occur, primarily in the form of negative pressure gas channeling and displacement gas channeling, with the possibility of mutual conversion between the two. This is accompanied by the risk of hydrogen sulfide (HS) release from the reservoir, which poses significant challenges to controlling safety. Currently, liquid bridging and gel plugging technologies are effective methods for mitigating complex issues such as downhole overflow, fluid loss, and heavy oil backflow. This paper focuses on the development and optimization of key treatment agents, including high-temperature-resistant polymers and crosslinking agents, to formulate a high-temperature chemical gel plugging agent. A gel-breaking, high-strength colloidal chemical gel plugging agent system capable of withstanding temperatures up to 150 °C was developed, and it has an apparent viscosity of about 7500 mPa·s, an energy storage modulus and a loss modulus of 51 Pa and 6 Pa, respectively, after gel formation at elevated temperatures, and an apparent viscosity retention rate of the gel of greater than 82% after aging for 9 d at a temperature of 150 °C. This system forms a stable gas isolation barrier in the wellbore, with performance remaining stable after 7 to 12 days of aging, and the degradation rate reaches 99.8% after 24 h at 150 °C. This technology is of significant importance in solving complex issues such as overflow, fluid loss, and heavy oil backflow in gas injection and recovery wells in high-temperature, high-pressure reservoir conditions.
碳酸盐岩缝洞型油藏中窜气现象频发,主要表现为负压窜气和置换窜气两种形式,且二者存在相互转化的可能。这伴随着储层硫化氢(HS)释放的风险,给安全控制带来了重大挑战。目前,液桥和凝胶堵漏技术是缓解井下溢流、漏失和稠油回流等复杂问题的有效方法。本文着重于关键处理剂的研发与优化,包括耐高温聚合物和交联剂,以配制高温化学凝胶堵漏剂。研制出了一种能耐受高达150℃温度的破胶、高强度胶体化学凝胶堵漏剂体系,该体系在高温成胶后表观粘度约为7500 mPa·s,储能模量和损耗模量分别为51 Pa和6 Pa,在150℃温度下老化9 d后凝胶表观粘度保留率大于82%。该体系在井筒中形成稳定的气体隔离屏障,老化7至12天后性能保持稳定,在150℃温度下24 h后降解率达到99.8%。这项技术对于解决高温、高压储层条件下注气井和采油井中的溢流、漏失和稠油回流等复杂问题具有重要意义。