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Enhanced Oil Recovery by a Suspension of Core-Shell Polymeric Nanoparticles in Heterogeneous Low-Permeability Oil Reservoirs

机译:悬浮在非均质低渗透油藏中的核壳聚合物纳米颗粒提高了采收率

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摘要

Polymeric nanoparticle suspension is a newly developed oil-displacing agent for enhanced oil recovery (EOR) in low-permeability reservoirs. In this work, SiO2/P(MBAAm-co-AM) polymeric nanoparticles were successfully synthesized by a simple distillation–precipitation polymerization method. Due to the introduction of polymer, the SiO2/P(MBAAm-co-AM) nanoparticles show a favorable swelling performance in aqueous solution, and their particle sizes increase from 631 to 1258 nm as the swelling times increase from 24 to 120 h. The apparent viscosity of SiO2/P(MBAAm-co-AM) suspension increases with an increase of mass concentration and swelling time, whereas it decreases as the salinity and temperature increase. The SiO2/P(MBAAm-co-AM) suspension behaves like a non-Newtonian fluid at lower shear rates, yet like a Newtonian fluid at shear rates greater than 300 s−1. The EOR tests of the SiO2/P(MBAAm-co-AM) suspension in heterogeneous, low-permeability cores show that SiO2/P(MBAAm-co-AM) nanoparticles can effectively improve the sweep efficiency and recover more residual oils. A high permeability ratio can result in a high incremental oil recovery in parallel cores. With an increase of the permeability ratio of parallel cores from 1.40 to 15.49, the ratios of incremental oil recoveries (low permeability/high permeability) change from 7.69/4.61 to 23.61/8.46. This work demonstrates that this SiO2/P(MBAAm-co-AM) suspension is an excellent conformance control agent for EOR in heterogeneous, low-permeability reservoirs. The findings of this study can help to further the understanding of the mechanisms of EOR using SiO2/P(MBAAm-co-AM) suspension in heterogeneous, low-permeability reservoirs.
机译:聚合物纳米颗粒悬浮液是一种新开发的驱油剂,用于提高低渗透油藏中的石油采收率(EOR)。在这项工作中,通过简单的蒸馏-沉淀聚合方法成功地合成了SiO2 / P(MBAAm-co-AM)聚合物纳米颗粒。由于引入了聚合物,SiO2 / P(MBAAm-co-AM)纳米颗粒在水溶液中表现出良好的溶胀性能,并且随着溶胀时间从24 h增加到120 h,其粒径从631 nm增大到1258 nm。 SiO2 / P(MBAAm-co-AM)悬浮液的表观粘度随质量浓度和溶胀时间的增加而增加,而随盐度和温度的升高而降低。 SiO2 / P(MBAAm-co-AM)悬浮液在较低剪切速率下的行为类似于非牛顿流体,但在大于300 s -1 的剪切速率下却类似于牛顿流体。 SiO2 / P(MBAAm-co-AM)悬浮液在非均质低渗透岩心中的EOR测试表明,SiO2 / P(MBAAm-co-AM)纳米颗粒可有效提高扫油效率并回收更多的残留油。高渗透率会导致平行岩心中较高的增量采油量。随着平行岩心的渗透率从1.40增加到15.49,增量采油率(低渗透率/高渗透率)从7.69 / 4.61变为23.61 / 8.46。这项工作表明,这种SiO2 / P(MBAAm-co-AM)悬浮液是非均质,低渗透油藏中EOR的优良一致性控制剂。这项研究的结果可以帮助进一步理解在非均质,低渗透油藏中使用SiO2 / P(MBAAm-co-AM)悬浮液进行EOR的机理。

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