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The Role of Shearing Energy and Interfacial Gibbs Free Energy in the Emulsification Mechanism of Waxy Crude Oil

机译:剪切能和界面吉布斯自由能在含蜡原油乳化机理中的作用

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Crude oil is generally produced with water, and the water cut produced by oil wells is increasingly common over their lifetime, so it is inevitable to create emulsions during oil production. However, the formation of emulsions presents a costly problem in surface process particularly, both in terms of transportation energy consumption and separation efficiency. To deal with the production and operational problems which are related to crude oil emulsions, especially to ensure the separation and transportation of crude oil-water systems, it is necessary to better understand the emulsification mechanism of crude oil under different conditions from the aspects of bulk and interfacial properties. The concept of shearing energy was introduced in this study to reveal the driving force for emulsification. The relationship between shearing stress in the flow field and interfacial tension (IFT) was established, and the correlation between shearing energy and interfacial Gibbs free energy was developed. The potential of the developed correlation model was validated using the experimental and field data on emulsification behavior. It was also shown how droplet deformation could be predicted from a random deformation degree and orientation angle. The results indicated that shearing energy as the energy produced by shearing stress working in the flow field is the driving force activating the emulsification behavior. The deformation degree and orientation angle of dispersed phase droplet are associated with the interfacial properties, rheological properties and the experienced turbulence degree. The correlation between shearing stress and IFT can be quantified if droplet deformation degree vs. droplet orientation angle data is available. When the water cut is close to the inversion point of waxy crude oil emulsion, the interfacial Gibbs free energy change decreased and the shearing energy increased. This feature is also presented in the special regions where the suddenly changed flow field can be formed. Hence, the shearing energy is an effective form that can show the contribution of kinetic energy for the oil-water mixtures to interfacial Gibbs free energy in emulsification process, and the emulsification mechanism of waxy crude oil-water emulsions was further explained from the theoretical level.
机译:原油通常是用水生产的,在油井的整个使用寿命中,油井产生的含水率越来越高,因此在油生产过程中不可避免地会产生乳液。然而,乳液的形成在表面处理中尤其在运输能量消耗和分离效率方面都存在昂贵的问题。为了解决与原油乳液有关的生产和经营问题,特别是为了确保原油-水系统的分离和运输,有必要从散装方面更好地了解不同条件下原油的乳化机理。和界面特性。在这项研究中引入了剪切能的概念,以揭示乳化的驱动力。建立了流场中的剪切应力与界面张力(IFT)的关系,并建立了剪切能与界面吉布斯自由能之间的关系。使用关于乳化行为的实验和现场数据验证了开发的相关模型的潜力。还显示了如何从随机变形程度和取向角度预测液滴变形。结果表明,剪切能是剪切应力在流场中产生的能量,是驱动乳化行为的驱动力。分散相液滴的变形度和取向角与界面性质,流变性质和经历的湍流度有关。如果可获得液滴变形程度与液滴取向角数据,则可以量化剪切应力与IFT之间的相关性。当含水率接近蜡质原油乳液的转化点时,界面吉布斯自由能变化减少,剪切能增加。在可能形成突然变化的流场的特殊区域中也显示了此功能。因此,剪切能是一种有效形式,可以显示乳化过程中油水混合物的动能对界面吉布斯自由能的贡献,并从理论层面进一步解释了蜡质原油水乳化液的乳化机理。 。

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