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The influence of salinity on the viscous instability in viscous-modified low-interfacial tension flow during surfactant-polymer flooding in heavy oil reservoirs

机译:盐度对稠油油藏表面活性剂-聚合物驱过程中黏性改性低界面张力流中黏性不稳定性的影响

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摘要

In this study, the effect of viscous instability at varying salinities of the displacing non-wetting phase (i.e., surfactant-polymer solution) in surfactant-polymer flooding of heavy oil reservoirs- which is a viscous-modified low-interfacial tension (IFT) flow through an initially preferential oil-wet porous medium- is quantified in the presence of the adverse mobility ratio. The dynamic mean pore-scale capillary number values are determined using two different approaches. The first approach is a Pore network approach (PNA) that excludes the viscous instability effects. The second approach is using the Viscous instability model (VIM) proposed by Peters and Flock [49] in which the concept of the wavelength of the viscous fingers is introduced. Afterwards, these two dynamic mean pore-scale capillary number values are compared to each other to highlight the effects of viscous instability at different salinity levels of the surfactant-polymer solution. The results show that including the viscous instability effects in the qualitative and quantitative evaluations of the viscous-modified low-IFT flow is vital. In particular, the viscous instability effects become more complex near the breakthrough of the displacing non-wetting phase. Furthermore, the effects of the salinity on the dynamic mean pore-scale capillary number (by excluding/excluding the viscous instability effects, i.e., from PNA and VIM, respectively), IFT, dynamic viscosity, contact angle, displacement front configuration, wavelength of the viscous fingers, dynamic values of the desaturated displaced wetting phase, breakthrough time, and the time of infinite injected pore volume is discussed in the surfactant-polymer flooding of an initially preferential oil-wet porous medium containing heavy oil.
机译:在这项研究中,稠度不稳定的影响是在稠油油中表面活性剂-聚合物驱油过程中,不同的非润湿相盐度(即表面活性剂-聚合物溶液)的盐度变化引起的,这是粘性修正的低界面张力在存在不利迁移率的情况下,对通过最初优先使用油湿性多孔介质的流动进行了定量。动态平均孔径毛细血管数量值是使用两种不同的方法确定的。第一种方法是孔隙网络方法(PNA),它排除了粘性不稳定性的影响。第二种方法是使用由Peters和Flock [49]提出的粘性不稳定性模型(VIM),其中引入了粘性手指的波长的概念。然后,将这两个动态平均孔尺度毛细管数值相互比较,以强调在表面活性剂-聚合物溶液的不同盐度水平下粘性不稳定性的影响。结果表明,将粘性不稳定性影响包括在对粘性修饰的低IFT流量的定性和定量评估中至关重要。尤其是,粘性不稳定性的影响在位移非润湿阶段的突破附近变得更加复杂。此外,盐度对动态平均孔尺度毛细管数的影响(通过排除/排除粘性不稳定性影响,即分别来自PNA和VIM),IFT,动态粘度,接触角,位移前沿构型,波长在最初优先使用含重油的油湿性多孔介质的表面活性剂-聚合物驱中,讨论了粘性指状物,不饱和置换润湿相的动态值,突破时间和无限注入孔隙时间。

著录项

  • 来源
    《Fuel》 |2012年第2012期|p.174-185|共12页
  • 作者单位

    Petroleum Systems Engineering Department, Faculty of Engineering and Applied Science, The University of Regina, Regina, Saskatchewan, Canada,Petroleum Research Center, Petroleum University of Technology, Tehran, Iran,;

    Petroleum Research Center, Petroleum University of Technology, Tehran, Iran;

    Petroleum Systems Engineering Department, Faculty of Engineering and Applied Science, The University of Regina, Regina, Saskatchewan, Canada,Husky Energy Lnc.Calgary,AB,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

    viscous instability; oil-wet; surfactant-polymer flooding; heavy oil recovery; capillary number;

    机译:粘性不稳定油湿表面活性剂-聚合物驱;重油回收;毛细管数;
  • 入库时间 2022-08-18 00:51:44

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