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Investigation of inverse emulsion assisted controlled release of polyacrylamides for enhanced oil recovery

机译:反相乳液辅助控制聚丙烯酰胺控释促进采油的研究

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Conventional polymer flooding ( e.g. using polyacrylamide) has been widely used in the oil fields as an economical means for enhanced oil recovery. However, its efficacy is affected by the polymer properties and increasingly harsh reservoir conditions. In this study, a high-molecular-weight modified polyacrylamide polymer ( GF-1 ) encapsulated in a water-in-oil emulsion is proposed for controlled polymer release towards enhanced oil recovery. It is compared with the conventional polyacrylamide in terms of their microscopic morphology, dissolving capacity, concentration–viscosity relationship, and rheological properties. It contained swollen polymer micelles and gradually released the polymer after phase inversion, which caused its viscosity, viscoelasticity, and plugging capacity to increase with aging time. The plugging analysis surprisingly showed a four-fold increase in the dimensionless breakthrough pressure of the emulsion polymer and five-fold increase in the residual resistance factor after five days of aging, confirming the significant increase in viscosity in confined spaces. The most interesting results were obtained by parallel core flooding experiments, where a higher recovery factor of 2.7% more than the conventional polymer was observed for GF-1 and GF-1 outperformed the conventional polymer by 6.9% in the low permeability zone. This emulsion polymer is a promising material to achieve enhanced oil recovery using in-depth profile modification in future oilfield related efforts.
机译:常规的聚合物驱油(例如使用聚丙烯酰胺)已被广泛用于油田中,作为提高采油率的经济手段。但是,其功效受聚合物性能和日益苛刻的储层条件影响。在这项研究中,提出了一种包封在油包水乳液中的高分子量改性聚丙烯酰胺聚合物(GF-1),以控制聚合物的释放,从而提高采油率。与常规聚丙烯酰胺的微观形态,溶解能力,浓度-粘度关系和流变特性方面均与之比较。它含有溶胀的聚合物胶束,并在相转化后逐渐释放出聚合物,这导致其粘度,粘弹性和堵塞能力随老化时间而增加。堵塞分析出乎意料地表明,乳液聚合物在老化五天后,无因次突破压力的增加了4倍,残余电阻系数增加了5倍,证实了密闭空间中粘度的显着增加。最有趣的结果是通过平行岩心驱油实验获得的,其中GF-1的回收率比常规聚合物高2.7%,而GF-1在低渗透率区域中优于常规聚合物6.9%。这种乳液聚合物是一种有前途的材料,可以在未来的油田相关工作中使用深度剖面修改技术来提高采收率。

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