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1)  miscible flooding
混相驱
1.
Numerical simulation research on parameter optimization of CO_2 miscible flooding of Gao 89-1 Block in Zhenglizhuang Oilfield;
正理庄高89-1区块CO_2混相驱参数优化数值模拟研究
2.
Research of optimum screening method for gas tracers in miscible flooding;
混相驱中气体示踪剂优选方法研究
3.
Experimental studies on asphaltene precipitation with CO_2 miscible flooding in Fan 124 block of Daluhu Oilfield;
大芦湖油田樊124断块CO_2混相驱过程中沥青质沉淀实验研究
2)  miscible displacement
混相驱
1.
Long core physical simulation for CO_2 miscible displacement;
二氧化碳混相驱的长岩心物理模拟
2.
Mechanism study on miscible displacement and its application prospect.;
混相驱油机理研究及应用前景展望
3.
Miscible and immiscible displacement studies are conducted on different horizons, injection rates, injection time and injection modes by using n.
利用长岩心驱替实验模拟,对地层流体参数进行了校正;通过油藏数值模拟显示,注富化气可以降低原油的混相压力;应用数值模拟技术,对不同的层位、注入量、注入时间和注入方式进行了混相驱和非混相驱研究;数模结果证实,天然气驱能提高采收率15。
3)  miscible displacement
混相驱油
1.
EOR technology using CO2 contains two ways-miscible and immiscible displacement.
CO2提高采收率包括混相驱油和非混相驱油2种方式,实现了最大CO2的埋存和提高原油产量有机结合,改善开发效果。
4)  near miscible flooding
近混相驱
5)  immiscible displacement
非混相驱
1.
Experimental study of optimized steam injection parameters for immiscible displacement in Wenxi3 Block;
温西3块非混相驱注气参数优选室内实验研究
2.
Experiment research of water alternating gas immiscible displacement EOR technology in fractured low permeability reservoir
低渗透裂缝性油藏水气交注非混相驱提高采收率研究
3.
As to low permeability oilfield, Tuha oilfield systematically tackles the key problem of the field applied techniques on enhanced oil recovery by gas injection, sets up the field test base of gas injection miscible displacement in Pubei oilfield and the pilot area of gas injection immiscible displacement in block Wen 5, good effect has been taken.
吐哈油田重点针对低渗透油田,系统开展了注气提高采收率现场应用技术攻关,建成了葡北油田注气混相驱矿场试验基地及温五区块注气非混相驱先导试验区,获得了良好效果。
6)  immiscible drive
非混相驱
1.
Microcosmic experiment research on CO_2 immiscible drive;
CO_2非混相驱微观实验研究
2.
The CO_2 immiscible drive mechanism,injection mode and injection volume were studied by using the high-temperature high-pressure experimental system,and the recovery efficiency,injection pressure,gas consumption and CO_2 recycling usage were analyzed.
苏丹Pa logu e油田主要产层Sam aa组为高孔高渗稠油油藏,采用高温高压物理模拟实验研究其注CO2非混相驱驱油效果。
补充资料:相驱
1.互相争逐。
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