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连续相与分散相驱油体系驱油机理及其性能对比 被引量:20
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作者 孙哲 吴行才 +4 位作者 康晓东 卢祥国 李强 姜维东 张晶 《石油勘探与开发》 SCIE EI CAS CSCD 北大核心 2019年第1期116-124,共9页
为了对比连续相驱油体系(传统聚合物溶液)与分散相驱油体系(颗粒型聚合物SMG水分散液)驱油机理及性能,利用微流控技术模拟SMG水分散液在孔隙运移中的颗粒相分离现象,以生物流体力学中红细胞树状叉浓度分布理论为指导,建立SMG在不同孔隙... 为了对比连续相驱油体系(传统聚合物溶液)与分散相驱油体系(颗粒型聚合物SMG水分散液)驱油机理及性能,利用微流控技术模拟SMG水分散液在孔隙运移中的颗粒相分离现象,以生物流体力学中红细胞树状叉浓度分布理论为指导,建立SMG在不同孔隙中浓度分布数学模型,开展连续相与分散相驱油体系的微观和宏观物理模拟实验。研究表明,连续相驱油体系无区分地进入所有波及区域,增加不同大小孔隙中的流动阻力,而分散相驱油体系注入过程中产生颗粒相分离现象,SMG颗粒在大孔隙中聚集形成桥堵,携带液进入小孔隙中驱油,SMG颗粒与携带液分工合作,逐级启动相对低渗区域的剩余油,实现提高采收率的目的。室内实验结果表明,分散相驱油体系的增油降水效果比连续相驱油体系更好,这与矿场试验结果一致。 展开更多
关键词 聚合物驱油 颗粒型聚合物 聚合物水分散液 颗粒相分离 微流控技术 深部液流转向能力 驱油机理
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Comparison of oil displacement mechanisms and performances between continuous and dispersed phase flooding agents 被引量:2
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作者 SUN Zhe WU Xingcai +4 位作者 KANG Xiaodong LU Xiangguo LI Qiang JIANG Weidong ZHANG Jing 《Petroleum Exploration and Development》 2019年第1期121-129,共9页
To compare the oil displacement mechanisms and performances of continuous phase flooding agent(traditional polymer solution) and dispersed phase flooding agent(particle-type polymer SMG dispersion), the particle phase... To compare the oil displacement mechanisms and performances of continuous phase flooding agent(traditional polymer solution) and dispersed phase flooding agent(particle-type polymer SMG dispersion), the particle phase separation of SMG dispersion migrating in pores was simulated by using the microfluidic technology. Theoretically guided by the tree fork concentration distribution of red cells in biological fluid mechanics, the concentration distribution mathematical model of SMG in different pores is established. Furthermore, the micro and macro physical simulation experiments of continuous and dispersed phase flooding agents were carried out. The results show that the continuous flooding agent enters all the swept zones and increases the flow resistance in both larger and small pores. On the contrary, the particle phase separation phenomenon occurs during the injection process of dispersed flooding agent. The SMG particles gather in the larger pore to form bridge blinding, and the carrier fluid displace oil in the small pore. Working in cooperation, the SMG particle and carrier fluid drive the residual oil in the low permeability layers step by step and achieve the goal of enhanced oil recovery. The laboratory experimental results indicate that, the oil increment and water reduction effect of dispersed flooding agent is much better than that of continuous flooding agent, which is consistent with the field test results. 展开更多
关键词 polymer FLOODING particle-type polymer polymer water dispersion PARTICLE phase separation microfluidic technology deep fluid DIVERSION ability oil DISPLACEMENT mechanism
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