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Low Salinity Hot Water Injection With Addition of Nanoparticles for Enhancing Heavy Oil Recovery

机译:低盐度热水注射加入纳米颗粒以提高重油回收

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摘要

In this study, a novel technique of low salinity hot water (LSHW) injection with addition of nanoparticles has been developed to examine the synergistic effects of thermal energy, low salinity water (LSW) flooding, and nanoparticles for enhancing heavy oil recovery, while optimizing the operating parameters for such a hybrid enhanced oil recovery (EOR) method. Experimentally, one-dimensional displacement experiments under different temperatures (17 degrees C, 45 degrees C, and 70 degrees C) and pressures (about 2000-4700 kPa) have been performed, while two types of nanoparticles (i.e., SiO2 and Al2O3) are, respectively, examined as the additive in the LSW. The performance of LSW injection with and without nanoparticles at various temperatures is evaluated, allowing optimization of the timing to initiate LSW injection. The corresponding initial oil saturation, production rate, water cut, ultimate oil recovery, and residual oil saturation profile after each flooding process are continuously monitored and measured under various operating conditions. Compared to conventional water injection, the LSW injection is found to effectively improve heavy oil recovery by 2.4-7.2% as an EOR technique in the presence of nanoparticles. Also, the addition of nanoparticles into the LSHW can promote synergistic effect of thermal energy, wettability alteration, and reduction of interfacial tension (IFT), which improves displacement efficiency and thus enhances oil recovery. It has been experimentally demonstrated that such LSHW injection with the addition of nanoparticles can be optimized to greatly improve oil recovery up to 40.2% in heavy oil reservoirs with low energy consumption. Theoretically, numerical simulation for the different flooding scenarios has been performed to capture the underlying recovery mechanisms by history matching the experimental measurements. It is observed from the tuned relative permeability curves that both LSW and the addition of nanoparticles in LSW are capable of altering the sand surface to more water wet, which confirms wettability alteration as an important EOR mechanism for the application of LSW and nanoparticles in heavy oil recovery in addition to IFT reduction.
机译:在该研究中,已经开发出一种新的低盐水热水(LSHW)注射用纳米颗粒注射的技术,以研究热能,低盐水水(LSW)洪水和纳米粒子来提高重油回收的协同作用,同时优化这种混合增强型油回收(EOR)方法的操作参数。实验地,已经进行了不同温度(17℃,45℃和70℃)和压力(约2000-4700kPa)的一维位移实验,而两种类型的纳米颗粒(即SiO 2和Al2O3)是分别检查LSW中的添加剂。评估LSW注射和不含纳米颗粒的LSW注射在各种温度下的性能,允许优化定时启动LSW注射。在各种洪水过程中,相应的初始油饱和度,生产率,净水,终极的溢油和残留的油饱和度曲线在各种操作条件下连续监测和测量。与常规注水相比,发现LSW注射液在纳米颗粒存在下将重油回收率有效地改善重油回收率为2.4-7.2%。此外,将纳米颗粒添加到LSHW中可以促进热能,润湿性变化和界面张力(IFT)的减少的协同效应,这提高了位移效率,从而提高了采油。它已经通过实验证明,这种LSHW注射用加入纳米颗粒可以优化,以大大提高能量消耗量低的重油储层中的溢油回收率高达40.2%。从理论上讲,已经执行了不同泛洪场景的数值模拟,以通过匹配实验测量的历史来捕获底层恢复机制。从调谐的相对渗透率曲线观察到LSW和LSW中的纳米颗粒的添加能够将砂表面改变为更多的水湿,这证实了润湿性改变作为在重油中施加LSW和纳米颗粒的重要EOR机制。除了IFT还原之外还会恢复。

著录项

  • 来源
    《Journal of Energy Resources Technology》 |2019年第7期|072904.1-072904.16|共16页
  • 作者单位

    Univ Regina Petr Syst Engn Fac Engn & Appl Sci Regina SK S4S 0A2 Canada;

    Schulich Sch Engn Dept Chem & Petr Engn Calgary AB T2N 1N4 Canada;

    Univ Regina Petr Syst Engn Fac Engn & Appl Sci Regina SK S4S 0A2 Canada;

    Univ Regina Petr Syst Engn Fac Engn & Appl Sci Regina SK S4S 0A2 Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 21:17:41

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