Du Juan, Xiang Kun, Zhao Liqiang, Lan Xitang, Liu Pingli, Liu Yue
School of Petroleum and Natural Gas Engineering, State Key Lab, Southwest Petroleum University Chengdu Sichuan 610500 People's Republic of China
CNOOC China Co. Ltd Tianjin branch Tianjin 300000 People's Republic of China.
RSC Adv. 2019 Oct 25;9(59):34389-34400. doi: 10.1039/c9ra02853f. eCollection 2019 Oct 23.
Fracturing fluids are important media for hydraulic fracturing. Typically, the fluids are gelled using a polymeric gelling agent. Technological improvements over the years have focused primarily on improving the rheological performance, thermal stability, and the clean-up of crosslinked gels. In this study, novel supramolecular assembly of a low-damage fracturing fluid combining an ionic polymer gel (hydroxypropyl trimethylammonium chloride guar-cationic guar) and a bola surfactant fluid (bola carboxylate polypropylene glycol) is carried out and it is reported to have improved properties and special characteristics due to the synergistic effects of the dual systems, which are different from those of polymer gels and surfactant fluids. The viscosity of the fracturing fluid shows a sudden increase upon an increase in temperature and excellent self-assembly recovery after shearing. The fracturing fluid exhibits pH-responsive viscosity changes and low permeability impairment, due to the formation of a network structure and supramolecular microspheres at different pH values.
压裂液是水力压裂的重要介质。通常,这些液体使用聚合物胶凝剂进行胶凝。多年来的技术改进主要集中在改善流变性能、热稳定性以及交联凝胶的破胶性能。在本研究中,开展了一种低伤害压裂液的新型超分子组装,该压裂液将离子聚合物凝胶(羟丙基三甲基氯化铵瓜尔胶 - 阳离子瓜尔胶)和双 bola 表面活性剂流体(羧酸盐型聚丙二醇双 bola 表面活性剂)结合在一起,据报道,由于双体系的协同作用,其具有改进的性能和特殊特性,这与聚合物凝胶和表面活性剂流体不同。压裂液的粘度随温度升高而突然增加,并且在剪切后具有优异的自组装恢复能力。由于在不同 pH 值下形成了网络结构和超分子微球,该压裂液表现出 pH 响应性粘度变化和低渗透率损害。