Li Daqi, Wang Xianguang, Chen Yu, Han Zixuan, Xie Gang
State Key Laboratory of Shale Oil and Gas Enrichment Mechanisms and Effective Development, Sinopec Research Institute of Petroleum Engineering, Beijing102206, China.
State Key Laboratory of Oil & Gas Reservoir Geology and Exploitation, Southwest Petroleum University, Chengdu610500, Sichuan, China.
ACS Omega. 2022 Nov 2;7(45):40799-40806. doi: 10.1021/acsomega.2c03164. eCollection 2022 Nov 15.
Well wall instability is one of the problems that seriously affect the efficiency of oil and gas drilling and extraction, and the economic losses caused by accidents due to well wall instability amount to billions of dollars every year. Aiming at the fact that well wall stabilization is the current technical difficulty of drilling shale gas horizontal wells with oil-based drilling fluids, the oil-based nanoplugging agent poly(MMA-BMA-BA-St) was synthesized by the Michael addition reaction with compounds such as styrene, methyl methacrylate, and butyl methacrylate as raw materials. The structure and characteristics of the oil-based nanoblocker poly(MMA-BMA-BA-St) were characterized by infrared spectroscopy, particle size analysis, and thermal weight loss analysis. The particle size distribution of poly(MMA-BMA-BA-St) is 80.56-206.61 nm, with an average particle size of 137.10 nm, and it can resist the high temperature of 372 °C. The effects of poly(MMA-BMA-BA-St) on the performance parameters of oil-based drilling fluids were investigated by rheological experiments, electrical stability tests, and HTHP filtration loss experiments. The results show that when poly(MMA-BMA-BA-St) is added at 0.5 wt %, it has less influence on the rheological parameters of drilling fluids, the breaking emulsion pressure remains basically unchanged, the stability of the drilling fluid is better, the dynamic-plastic ratio of the drilling fluid is higher than 0.27, the filtration loss is the lowest, and it shows good rock-carrying properties. The results of mud cake experiments and artificial lithology experiments show that poly(MMA-BMA-BA-St) has the best sealing effect, with a mud cake permeability of 1.12 × 10 mD and a sealing rate of 30.00% when added at 0.5 wt %; the artificial core permeability was 4.0 × 10 mD, and the sealing rate was 91.23%. Poly(MMA-BMA-BA-St) showed good sealing performance. The oil-based nanoplugging agent poly(MMA-BMA-BA-St) has good dispersion in oil-based drilling fluids and can enter the nanopore joints to form a dense plugging layer under the action of formation pressure to prevent the intrusion of drilling fluids, thus reducing the impact of drilling fluids on the formation, maintaining the stability of the well wall and reducing downhole complications.
井壁失稳是严重影响油气钻采效率的问题之一,每年因井壁失稳事故造成的经济损失达数十亿美元。针对油基钻井液钻页岩气水平井时井壁稳定是当前技术难题这一情况,以苯乙烯、甲基丙烯酸甲酯、甲基丙烯酸丁酯等化合物为原料,通过迈克尔加成反应合成了油基纳米封堵剂聚(MMA - BMA - BA - St)。采用红外光谱、粒度分析、热重分析对油基纳米封堵剂聚(MMA - BMA - BA - St)的结构和特性进行了表征。聚(MMA - BMA - BA - St)的粒径分布为80.56 - 206.61nm,平均粒径为137.10nm,能耐受372℃的高温。通过流变实验、电稳定性测试、高温高压滤失实验研究了聚(MMA - BMA - BA - St)对油基钻井液性能参数的影响。结果表明,当聚(MMA - BMA - BA - St)添加量为0.5wt%时,对钻井液流变参数影响较小,破乳压力基本不变,钻井液稳定性较好,钻井液动塑比高于0.27,滤失量最低,且携岩性能良好。泥饼实验和人造岩性实验结果表明,聚(MMA - BMA - BA - St)封堵效果最佳,添加量为0.5wt%时泥饼渗透率为(1.12×10)mD,封堵率为30.00%;人造岩心渗透率为(4.0×10)mD,封堵率为91.23%。聚(MMA - BMA - BA - St)表现出良好的封堵性能。油基纳米封堵剂聚(MMA - BMA - BA - St)在油基钻井液中具有良好的分散性,能在地层压力作用下进入纳米孔隙缝间形成致密封堵层,阻止钻井液侵入,从而降低钻井液对地层的影响,维持井壁稳定,减少井下复杂情况。