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Key geological factors controlling oil displacement efficiency of CO_2 injection in low-permeability reservoirs

机译:低渗透油藏CO_2注射油位移效率的关键地质因素

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Carbon dioxide (CO2) flooding is an effective method to enhance oil recovery in low-permeability reservoirs. Studying key geological factors controlling oil displacement efficiency is of great significance to the CO2 injection scheme design in low-permeability reservoirs. Focusing on low-permeable H reservoir in Songliao Basin, China, this paper describes the contact and connection of sand bodies, natural fractures and high-permeability zones with core samples, log data and experiment firstly. After that, the impact of interaction of sand body connection, natural fracture and high-permeability zone on oil displacement efficiency is determined by using geological and dynamic data in CO2 injection area. Results indicate that the connection of single sand bodies between injectors and producters wells primarily controls CO2 flooding in low-permeability reservoirs. Furthermore, coupling of sand body connection, natural fractures and high-permeability zones is the key geological factor governing oil displacement efficiency of CO2 injection in low-permeability reservoirs, where well or generally-connected sand bodies can improve the efficiency significantly. Meanwhile, the dominant seepage channels in other directions have no influence on producers, which is beneficial to improve CO2 flooding efficiency.
机译:二氧化碳(二氧化碳)洪水是增强低渗透储层中的采油的有效方法。研究控制油位移效率的关键地质因素对低渗透油藏的二氧化碳注射方案设计具有重要意义。专注于中国松辽盆地的低渗透性H水库,本文介绍了砂体,自然骨折和高渗透区的接触和连接,首先是核心样本,日志数据和实验。之后,通过在CO2注射区域中使用地质和动态数据来确定砂体连接的相互作用,自然骨折和高渗透区对油位移效率的影响。结果表明,喷射器和生产者之间的单砂体的连接主要控制低渗透储层的二氧化碳洪水。此外,砂体连接的耦合,自然裂缝和高渗透区是低渗透储存器中CO2注射的电流效率的关键地质因子,其中井或一般连接的砂体可以显着提高效率。同时,在其他方向上的主导渗流渠道对生产者没有影响,这有利于提高二氧化碳洪水效率。

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