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A Novel Ultra-Low Interfacial Tension Nanofluid for Enhanced Oil Recovery in Super-Low Permeability Reservoirs

机译:一种新型超低界面张力纳米流体,用于超低渗透储层增强的采油

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The exploration and development of super-low permeability reservoirs have become a global focus in recent years. However,conventional flooding systems commonly face problems of high injection pressure and poor displacement efficiency in super-low permeability reservoirs. Thus,it is imperative to find new flooding agents that tackle such problems. In this study,a novel ultra-low interfacial tension(IFT)nanofluid was formulated,consisting of surfactants to achieve ultra-low IFT and silica nanoparticles to reduce injection pressure. The compatibility test between the surfactants and silica nanoparticles in 10,000 mg/L NaCl solution at 90 °C was conducted to ensure their adaption to harsh reservoir conditions. Also,the effects of silica nanoparticles on the IFT and emulsion stability of the surfactant solution as well as wettability of reservoir rock were evaluated to determine the optimum concentration of nanoparticles. Finally,oil displacement efficiency of the nanofluid was assessed and compared from respective nanofluid flooding,surfactant flooding and surfactant-free nanofluid flooding. The compatibility results showed that the ultra-low IFT surfactant solution with silica nanoparticles remained clear and stable at 90 °C for one month. The surfactant solution can effectively emulsify oil,and the stability of the oil emulsion could be further improved in the presence of silica nanoparticles. In addition,the solution could achieve lower IFT at both low and high temperature with the addition of 0.01% silica nanoparticles. The silica nanoparticles could effectively alter the wettability of the rock,making it become more water-wet with increasing silica nanoparticle concentration. The displacement experiments through 0.2–0.3 mD tight cores indicated that the enhanced oil recovery could reach 21.12%OOIP by the nanofluid flooding after water flooding,higher than that of surfactant flooding(18.84% OOIP),and much higher than that of surfactant-free nanofluid flooding(3.48% OOIP). Moreover,the injection pressure difference was able to decrease nearly 50% after nanofluid injection in comparison with the occurrence of an increase in pressure along the surfactant solution injection. Thus,the combined surfactant and nanoparticles behaved excellent synergistic effect. The newly formulated surfactant based silica nanofluids can efficiently enhance oil recovery in comparison with water flooding,and significantly lower the injection pressure compared with the surfactant flooding. This work lays the foundation for the application of ultralow IFT nanofluid flooding technology in super-low permeability reservoirs.
机译:超低渗透油藏的勘探开发已成为近年来全球关注的焦点。然而,传统的驱系统通常面临在超低渗透油藏高喷射压力和位移效率差的问题。因此,当务之急是要找到解决这些问题的新的水浸剂。在这项研究中,一种新型的超低界面张力(IFT)纳米流体配制,其由表面活性剂来实现超低IFT和二氧化硅纳米粒子,以减少喷射压力。物进行的表面活性剂和二氧化硅纳米粒子之间10,000毫克/升NaCl溶液中在90℃下的相容性测试,以确保其适应恶劣的储层条件。此外,在表面活性剂溶液的IFT和乳化稳定性以及储层岩石的润湿性的二氧化硅纳米粒子的效果进行评估,以确定纳米粒子的最佳浓度。最后,将纳米流体的驱油效率进行了评估,并从各自的纳米流体驱,表面活性剂驱和不含表面活性剂的纳米流体驱比较。的相容性的结果表明,与二氧化硅纳米粒子的超低IFT的表面活性剂溶液在90保持澄清和稳定℃下一个月。表面活性剂溶液可以有效地乳化油,和油乳状液的稳定性可在二氧化硅纳米粒子的存在下得到进一步改善。此外,该解决方案可以实现在低和高温在添加0.01%的二氧化硅纳米粒子的低IFT。二氧化硅纳米粒子可有效地改变岩石的润湿性,使得它变得更水湿随着二氧化硅纳米微粒浓度。通过0.2-0.3毫达西紧芯位移实验表明,强化油采收可以达到通过注水后的纳米流体驱21.12%OOIP,比表面活性剂驱(18.84%OOIP)的高,且比的高得多的表面活性剂的无纳米流体洪水(3.48%OOIP)。另外,注射压力差能够在沿着所述表面活性剂溶液注入压力增加的发生比较纳米流体注射后降低近50%。因此,组合的表面活性剂和纳米颗粒表现优异的协同效果。新配制系表面活性剂的二氧化硅纳米流体能够有效地提高原油采收率与水驱比较,以及显著降低注射压力与表面活性剂驱比较。这项工作奠定了超低的IFT纳米流体驱油技术在超低渗透油藏的应用奠定了基础。

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