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Assessing productivity impairment of surfactant-polymer EOR using laboratory and field data.

机译:使用实验室和现场数据评估表面活性剂聚合物EOR的生产率损害。

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摘要

Surfactant-polymer (SP) flooding is an enhanced oil recovery (EOR) technique used to mobilize residual oil by lowering the oil-water interfacial tension, micellar solubilization, and lowering the displacing phase mobility to improve sweep efficiency. Surfactant-polymer flooding, also known as micellar flooding, has been studied both in the laboratory and field pilot tests for several decades.;Surfactant polymer flooding is believed to be a major enhanced oil recovery technique based on laboratory experiments; however, its applications to field has not met the expectations of laboratory results. Successful field applications of SP flooding have been limited because of a number of obstacles, which include the large number of laboratory experiments required to design an appropriate SP system, high sensitivity to reservoir rock and fluid characteristics, complexity of reservoirs, infrastructure required for field implementation, and lack of reliable statistics on successes of field applications. In other words, there are many variables that affect reservoir performance.;Traditionally, in SP flooding, a tapered polymer solution follows the injected surfactant slug. However, in recent years co-injection of surfactant and a relatively high concentration of polymer solution have been used in several field trials. Despite significant increase in oil recovery at early times in several surfactant-polymer floods, the increase in oil production period has had short duration followed by significant reduction in oil production. Thus, this research primarily relied on field test data to understand the problem, hoping that an improved solution strategy can be developed for new field applications. Second, current numerical models do not correctly predict the performance of surfactant-polymer floods and tend to over predict. Thus the second objective of this research was to develop a methodology to use combined field and laboratory data in commercial simulators to improve their predictive capability.
机译:表面活性剂-聚合物(SP)驱油是一种提高采油率(EOR)的技术,可通过降低油水界面张力,胶束增溶作用和降低驱替相迁移率来提高扫油效率,从而动员剩余油。表面活性剂聚合物驱,又称胶束驱,已经在实验室和现场先导试验中进行了数十年的研究。表面活性剂聚合物驱被认为是基于实验室实验的一种主要的强化采油技术。但是,其在野外的应用尚未达到实验室结果的期望。 SP驱在现场的成功应用受到诸多障碍的限制,其中包括设计适当的SP系统所需的大量实验室实验,对储层岩石和流体特征的高度敏感性,储层的复杂性,现场实施所需的基础设施,以及缺乏有关现场应用成功案例的可靠统计信息。换句话说,有许多变量会影响油藏性能。传统上,在SP驱中,锥形聚合物溶液跟随注入的表面活性剂段塞。然而,近年来,在一些现场试验中已经使用了表面活性剂和较高浓度的聚合物溶液的共同注入。尽管在几次表面活性剂-聚合物驱中早期采油量显着增加,但采油期的增加持续时间很短,随后采油量显着减少。因此,本研究主要依靠现场测试数据来理解问题,希望可以为新的现场应用开发出改进的解决方案策略。其次,当前的数值模型不能正确预测表面活性剂-聚合物驱的性能,并且往往会过度预测。因此,这项研究的第二个目标是开发一种方法,以在商业模拟器中使用组合的现场和实验室数据来提高其预测能力。

著录项

  • 作者

    Izadi Kamouei, Mehdi.;

  • 作者单位

    Colorado School of Mines.;

  • 授予单位 Colorado School of Mines.;
  • 学科 Petroleum engineering.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 91 p.
  • 总页数 91
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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