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Feasibility Study of Applying Modified Nano-SiO2 Hyperbranched Copolymers for Enhanced Oil Recovery in Low-Mid Permeability Reservoirs

机译:在中低渗透油藏中应用改性纳米SiO2超支化共聚物提高采收率的可行性研究

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摘要

To improve oil recovery significantly in low-mid permeability reservoirs, a novel modified nano-SiO2 hyperbranched copolymer (HPBS), consisting of polyacrylamide as hydrophilic branched chains and modified nano-SiO2 as the core, was synthesized via an in situ free radical polymerization reaction. The structure and properties of the hyperbranched copolymer were characterized through a range of experiments, which showed that HBPS copolymers have better stability and enhanced oil recovery (EOR) capacity and also smaller hydrodynamic radius in comparison with hydrolyzed polyacrylamide (HPAM). The flooding experiments indicated that when a 1000 mg/L HPBS solution was injected, the resistance factor (RF) and residual resistance factor (RRF) increased after the injection. Following a 98% water cut after preliminary water flooding, 0.3 pore volume (PV) and 1000 mg/L HPBS solution flooding and extended water flooding (EWF) can further increase the oil recovery by 18.74% in comparison with 8.12% oil recovery when using HPAM. In this study, one can recognize that polymer flooding would be applicable in low-mid permeability reservoirs.
机译:为了显着提高中低渗透率油藏的采收率,通过原位自由基聚合反应合成了一种新型改性纳米SiO2超支化共聚物(HPBS),该共聚物由聚丙烯酰胺为亲水性支链和改性纳米SiO2为核心。 。通过一系列实验对超支化共聚物的结构和性能进行了表征,结果表明,与水解聚丙烯酰胺(HPAM)相比,HBPS共聚物具有更好的稳定性和提高的采油率(EOR),并且流体动力学半径较小。驱油实验表明,注入1000 mg / L的HPBS溶液后,注入后阻力系数(RF)和残留阻力系数(RRF)均增加。初步注水后,含水率降低了98%,使用0.3孔体积(PV)和1000 mg / L HPBS溶液注水和扩展注水(EWF)可以进一步提高采油量18.74%,而使用时采油量为8.12% HPAM。在这项研究中,人们可以认识到聚合物驱将适用于中低渗透率油藏。

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