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Effect of Temperature on Bitumen/Water Relative Permeability in Oil Sands

机译:温度对油砂中沥青/水相对渗透率的影响

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摘要

The steam-assisted gravity drainage (SAGD) process is among the most applicable thermal enhanced oil recovery (TEOR) methods in North American heavy oil reservoirs. In addition to improving oil mobility through viscosity reduction, the high-temperature condition that a TEOR method causes may significantly alter the fluid flow performance and behavior, as manifested by the relative permeability to fluids in the reservoir. Therefore, in a SAGD and cyclic steam stimulation (CSS), the relative permeabilities can change within the temperature-gradient region developed around the SAGD chamber or between two cycles of CSS processes. However, there is no unique two-phase relative permeability model, especially for bitumen systems to cover a wide range of temperatures. Therefore, the primary objective of this study is to history-match the results of the recent study done by Esmaeili et al. using a new methodology and to conduct limited steady-state relative permeability measurements at different temperatures to confirm the validity of displacement-based relative permeability curves and then to propose a reliable general relative permeability model as a function of temperature. Twelve history-matched bitumen/water relative permeability sets are obtained in a wide range of temperatures from 70 to 220 degrees C under a confining pressure higher than 1000 psi and the test pressure in the range of 350-400 psi. An in-house developed reservoir simulator was used to obtain relative permeability curves from isothermal displacement data using the history-matching approach. The results demonstrated that both production and pressure-drop data can be matched using the optimized values of parameters of the generalized Corey relative permeability model. Furthermore, a more reliable value for actual residual oil saturation was determined by applying our new methodology in history matching. A comparative analysis with the steady-state relative permeability data allowed us to determine the extent to which the unsteady-state relative permeability is affected by viscous fingering. A considerable shift in both oil and water relative permeability at higher temperatures is noticed. Furthermore, it is also noted that the endpoint relative permeability to oil and water is also altered significantly. The implicit relative permeability data obtained from this study are consistent with the results of the JBN method that were reported in our previous study. By making the parameters of the Corey relative permeability model dependent on temperature, a new model of temperature-dependent bitumen/water relative permeability in sand was developed. It is anticipated that this model can facilitate inclusion of temperature-dependent relative permeability in reservoir simulation studies.
机译:蒸汽辅助重力排水(SAGD)工艺是北美重油储层中最适用的热增强储蓄(TEOR)方法。除了通过粘度降低改善油动流动性之外,TEOR方法原因的高温条件可能显着改变流体流动性能和行为,表现为储存器中的流体的相对渗透性。因此,在SAGD和循环蒸汽刺激(CSS)中,相对渗透性可以在围绕纱腔室产生的温度梯度区域内或在两个CSS过程之间的循环之间发生变化。然而,没有独特的两相相对渗透性模型,特别是沥青系统,以覆盖各种温度。因此,本研究的主要目的是历史 - 通过Esmaeili等人完成最近进行的研究结果。使用新方法和在不同温度下进行有限的稳态相对渗透率测量,以确认基于位移的相对渗透曲线的有效性,然后提出可靠的一般相对渗透性模型作为温度的函数。在狭窄压力下在70至220℃的宽范围温度下获得12次历史匹配的沥青/水相对渗透装置,在高于1000psi和350-400psi范围内的测试压力。使用历史匹配方法使用内部开发的储层模拟器来获得来自等温位移数据的相对渗透曲线。结果表明,可以使用广义核心相对渗透率模型的参数的优化值匹配生产和压力下降数据。此外,通过在历史匹配中应用我们的新方法来确定实际残留油饱和度的更可靠的值。具有稳态相对渗透性数据的比较分析使我们能够确定不稳定状态相对渗透率受粘性指法影响的程度。注意到在较高温度下的油和水相对渗透性的相当大的转变。此外,还注意到,对油和水的终点相对渗透性也显着改变。本研究中获得的隐式相对渗透性数据与我们以前的研究中报告的JBN方法的结果一致。通过依赖于温度的Corey相对渗透性模型的参数,开发了砂中的温度依赖性沥青/水相对渗透性的新模型。预计该模型可以促进包含水库模拟研究中的温度依赖性相对渗透性。

著录项

  • 来源
    《Energy & fuels》 |2020年第10期|12314-12329|共16页
  • 作者单位

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

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

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

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

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

  • 入库时间 2022-08-18 22:25:00

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