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低渗油藏用聚合物微球/表面活性剂复合调驱体系
引用本文:曲文驰,李还向,但庆祝,张安治,马 波. 低渗油藏用聚合物微球/表面活性剂复合调驱体系[J]. 油田化学, 2014, 31(2): 227-230
作者姓名:曲文驰  李还向  但庆祝  张安治  马 波
作者单位:1.东北石油大学石油工程学院,黑龙江 大庆163318;2.川庆钻探长庆井下技术作业公司,陕西 西安 710021;3.塔里木油田公司库车勘探开发项目经理部,新疆 库尔勒 841000;4. 长庆油田分公司第七采油厂,陕西 西安 710200
基金项目:黑龙江省自然科学基金“低渗透油田精细评价与提高采收率机理研究”(项目编号E200902)。
摘    要:针对低渗油藏多发育微裂缝、非均质性严重、水窜严重,常规调驱技术难以发挥有效作用的难题,对实验室自制的聚合物微球(聚丙酰胺类微球)/表面活性剂(烷醇酰胺型表面活性剂)复合调驱体系展开研究。在复合调驱体系配伍性评价的基础上,优化了复合调驱各段塞的注入参数,评价了复合调驱体系的驱油性能。结果表明:聚合物微球与表面活性剂具有良好配伍性,最优的复合注入体系为0.4 PV聚合物微球溶液(2000 mg/L)+0.3 PV表面活性剂溶液(2000 mg/L),在水驱基础上平均提高采收率幅度达15%以上。聚合物微球/表面活性剂复合调驱技术在裂缝性低渗油藏中具较强适应性。

关 键 词:聚合物微球;表面活性剂;配伍性;低渗;提高采收率

Polymer Microsphere/Surfactant Compound Flooding System In Low Permeability Reservoir
QU Wen-Chi,LI Hai-Xiang,DAN Qing-Zhu,ZHANG An-Zhi,MA Bo. Polymer Microsphere/Surfactant Compound Flooding System In Low Permeability Reservoir[J]. Oilfield Chemistry, 2014, 31(2): 227-230
Authors:QU Wen-Chi  LI Hai-Xiang  DAN Qing-Zhu  ZHANG An-Zhi  MA Bo
Abstract:Aiming at the problem of numerous microcracks, serious heterogeneity and water channeling in low permeability reservoir, and that conventional flooding technology?was difficult to play an effective role in the reservoir, experiment study on polymer microsphere(polyacrylamide microsphere)/surfactant (alkanolamide surfactant)compound flooding system was carried out, compatibility of the compounding flooding system was evaluated firstly, then the injection parameter and oil displacement performance were optimized and evaluated. The results showed that polymer microsphere and surfactant were?compatible, and the optimal composite injection system was as follows: 0.4 PV polymer microspheres solution (2000 mg/L) +0.3 PV surfactant solution (2000 mg/L), and the composite system could improve the recovery efficiency by above 15% based on the water flooding. Polymer microspheres/surfactant compound flooding control technology was well suitable for low permeability fractured reservoirs.
Keywords:polymer microsphere   surfactant   compatibility   low permeability   enhanced oil recovery
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