Gao Wei, Wang Mo, Lian Shixin, Bai Yingrui, Yang Jingbin
Key Laboratory of Enhanced Oil Recovery in Carbonate Fractured-Vuggy Reservoirs, Sinopec, Urumqi 830011, China.
Sinopec Northwest Company of China Petroleum and Chemical Corporation, Urumqi 830011, China.
Gels. 2024 Sep 30;10(10):633. doi: 10.3390/gels10100633.
Lost circulation is one of the important problems that restricts the speed and efficiency of oil and gas drilling and production. In this study, a resin plugging system was successfully developed for lost circulation formation. The resin plugging system showed excellent performance under high temperature and pressure conditions. The experimental results showed that the compressive strength of the resin plugging material can reach 9.23 MPa after curing, which is significantly higher than that of the traditional polymer gel material. The resin material can achieve effective curing in the temperature range of 60 °C to 100 °C, and the curing time decreases with the increase of temperature and only needs 3.46 h at 140 °C. The microstructure results showed that the resin material can form a chain or three-dimensional network structure after curing, which can effectively increase the toughness and strength of the cured plugging layer. Infrared and thermogravimetric analysis further confirmed the thermal stability of the chemical bonds in the material, and the initial decomposition temperature was about 241 °C, indicating that it had good thermal stability at about 300 °C. In addition, the effects of curing temperature, salinity, and drilling fluid pollution on the properties of the resin plugging agent were also investigated. The results showed that curing agent dosage and curing temperature are the key factors affecting curing time, while salinity and drilling fluid pollution affect the curing strength and overall properties of the materials. After adding 20% KCl polysulfonate drilling fluid, the compressive strength of the consolidated body decreased to 4.55 MPa. This study can provide an efficient and reliable plugging solution for malignant loss formation.
漏失是制约油气钻井和生产速度与效率的重要问题之一。在本研究中,成功开发了一种用于漏失地层的树脂堵漏体系。该树脂堵漏体系在高温高压条件下表现出优异的性能。实验结果表明,树脂堵漏材料固化后的抗压强度可达9.23MPa,显著高于传统聚合物凝胶材料。该树脂材料在60℃至100℃的温度范围内可实现有效固化,固化时间随温度升高而缩短,在140℃时仅需3.46h。微观结构结果表明,树脂材料固化后可形成链状或三维网络结构,能有效提高固化堵漏层的韧性和强度。红外和热重分析进一步证实了材料中化学键的热稳定性,初始分解温度约为241℃,表明其在约300℃时有良好的热稳定性。此外,还研究了固化温度、矿化度和钻井液污染对树脂堵漏剂性能的影响。结果表明,固化剂用量和固化温度是影响固化时间的关键因素,而矿化度和钻井液污染会影响材料的固化强度和整体性能。加入20%KCl聚磺钻井液后,固结体的抗压强度降至4.55MPa。本研究可为恶性漏失地层提供一种高效可靠的堵漏解决方案。