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Effects of crude oil composition and alcohol augmentation on transient interfacial phenomena in alkaline-water/crude-oil systems.

机译:原油成分和酒精增加对碱性水/原油系统中瞬态界面现象的影响。

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摘要

The microscopic phenomena which occur at the alkaline-water/crude-oil interface greatly affect the potential for success of the alkaline water flooding process. The propensity of crude oils to emulsify and the ability of the oil to coalesce improves the chance for successful oil bank formation and leads to better recovery efficiency. Interfacial phenomena are affected by interfacial rheological properties and interfacial tensions. This research investigates the interfacial behavior of alkaline-water/crude-oil systems in three parts.;In part one, a new method and apparatus are designed for the measurement of interfacial shear viscosity (IFSV). The method is applied to study the effect of oil composition and alcohol augmentation on the IFSV and to correlate IFSV with recovery efficiency. A phenolic, non-surfactant fraction is found to severely increase the oil IFSV. Alkalinity of the water can increase or reduce the oil/water IFSV. Small, polar molecules are shown to affect interfacial structures reducing the IFSV in some cases and increasing it in others. In alcohol augmentation, a developed correlation shows that the alcohol that yields the lowest IFSV results in the best recovery.;Part two comprises an investigation of the transient interfacial tensions in the system. The effect of crude oil composition, temperature, and oil viscosity on the IFT transients is determined. It is found that stability of the transients can be diffusion dependent, and that the nature of the acid fraction in the crude is responsible for the rate of loss of acid to the water.;In part three the interfacial phenomena are observed microvisually in cryolite porous media. The predominant emulsification mechanism is stringing of oil due to low IFT and flow of the water and subsequent breakup of the strings into emulsion droplets. A chronological description is developed describing the events which lead to alkaline flooding oil recovery.;The research improves the understanding of the phenomena which lead to alkaline flooding oil mobilization and displacement and enhances the capacity for future research of interfacial phenomena. The techniques employed will lead to improved screening tests for designing alkaline floods.
机译:发生在碱水/原油界面处的微观现象极大地影响了碱水驱替过程成功的可能性。原油的乳化倾向和原油的聚结能力提高了成功形成油库的机会,并提高了采收率。界面现象受界面流变性质和界面张力的影响。本研究分三部分研究了碱水/原油系统的界面行为。第一部分,设计了一种新的方法和装置来测量界面剪切粘度(IFSV)。该方法用于研究油组成和酒精增加对IFSV的影响,并使IFSV与采收率相关。发现酚类非表面活性剂馏分会严重增加油IFSV。水的碱度可以增加或减少油/水IFSV。显示出小的极性分子会影响界面结构,在某些情况下会降低IFSV,而在另一些情况下会增加IFSV。在酒精增强中,已发展的相关性表明,产生最低IFSV的酒精可实现最佳的回收率。;第二部分包括对系统中瞬态界面张力的研究。确定了原油组成,温度和油粘度对IFT瞬变的影响。发现瞬变的稳定性可能与扩散有关,并且原油中酸部分的性质决定了酸向水中的损失速率。第三部分,在冰晶石多孔体中目视观察到界面现象。媒体。乳化的主要机理是由于低IFT和水的流动以及随后将细绳打碎成乳液液滴而造成的细绳拉丝。建立了按时间顺序的描述,描述了导致碱性驱油油采收的事件。该研究增进了对导致碱性驱油油动员和驱替的现象的理解,并增强了对未来界面现象研究的能力。所采用的技术将改善用于设计碱性驱油的筛查测试。

著录项

  • 作者

    Cambridge, Vivien Johan.;

  • 作者单位

    Louisiana State University and Agricultural & Mechanical College.;

  • 授予单位 Louisiana State University and Agricultural & Mechanical College.;
  • 学科 Engineering Petroleum.
  • 学位 Ph.D.
  • 年度 1987
  • 页码 349 p.
  • 总页数 349
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:51:02

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