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Wettability Indicator Parameter Based on the Thermodynamic Modeling of Chalk-Oil-Brine Systems

机译:基于粉笔油盐水系统热力学建模的润湿性指示器参数

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摘要

The complex physicochemical interactions in the calcite-brine-crude oil system, triggered by the injection of modified salinity water (MSW) into the reservoir, are modeled by several researchers. However, the proposed models are either not consistent with a wettability alteration mechanism or cannot explain the observed improved oil recovery in chalk. We propose a new methodology denominated "Available Adsorption Sites" (AAS) that assesses the wettability alteration as a combined effect of a chemical and electrostatic contribution. Thus, we describe mathematically the interactions between the polar groups in the oil phase and the chalk by considering analogy with the thermodynamics of adsorption of an ion on a charged surface. The chalk wetting properties depend on the number of sites available for the adsorption of oleic polar groups at the mineral surface and the electrical potential at the rock-brine and brine-oil interfaces. We evaluate how the AAS parameter correlates with the remaining oil saturation from spontaneous imbibition tests on chalk samples. This approach is not only useful for the predictive evaluation of the outcome of MSW in chalk reservoirs but can also be integrated in reactive transport models and assess the flow of organic contaminants (e.g., naphtenic acids) in chalk aquifers. The model can potentially be applied to other carbonates.
机译:通过将改性的盐度水(MSW)注入储层的复合物 - 盐水 - 原油系统中的复杂物理化学相互作用由几个研究人员建模。然而,所提出的模型与润湿性改变机制不一致,或者无法解释观察到的粉笔中的改善的油回收。我们提出了一种新的方法,以评估润湿性改变为化学和静电贡献的综合效果评估润湿性改变的新方法。因此,我们通过考虑与带电表面上的离子吸附的热力学的热力学来表示油相和粉笔在油相和粉笔之间的极性基团之间的相互作用。粉末润湿性质取决于可用于在矿物表面和岩石盐水和盐水界面处的电势吸附油性极性基团的位点数。我们评估AAS参数如何与来自粉笔样品的自发性吸收测试的剩余油饱和度相关。这种方法不仅可用于预测粉笔储层中MSW的结果,而且还可以集成在反应性转运模型中,并评估粉笔含水层中有机污染物(例如,环烷酸)的流动。该模型可能适用于其他碳酸盐。

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  • 来源
    《Energy & fuels》 |2020年第7期|8018-8036|共19页
  • 作者单位

    Tech Univ Denmark Danish Hydrocarbon Res & Technol Ctr DK-2800 Lyngby Denmark;

    Tech Univ Denmark Danish Hydrocarbon Res & Technol Ctr DK-2800 Lyngby Denmark;

    Tech Univ Denmark Danish Hydrocarbon Res & Technol Ctr DK-2800 Lyngby Denmark;

  • 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
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