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A mathematical model for three-dimensional nonsteady-state streamline simulation of horizontally drilled reservoirs.

机译:用于水平钻探油藏的三维非稳态流线模拟的数学模型。

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摘要

Among the recent technological breakthroughs that have revolutionized the search for oil and its production are innovations realized in the field of horizontal drilling. Once dormant, this practice is fast becoming routine in the oil industry. Thanks to the very large contact area they provide with the permeable medium and their ability to intercept natural fractures, horizontal wells have revived aging oil reservoirs and yielded remarkable augmentations of productivity compared to what is normally attained via conventional vertical wells. These most impressive results have warranted and spurred research on virtually all fronts of the upstream sector of the oil industry.;One of the areas with a great need for new advances is that of reservoir engineering. New theories and techniques must be developed to parlay the tremendous potential of horizontal drilling. It is in this spirit that this work was undertaken. This study probes deeply into the subject of nonsteady-state fluid flow around horizontal wells. In particular, pressure distribution in closed reservoirs is investigated in detail, and the assumptions of uniform flux and infinite conductivity are put under close scrutiny. Most importantly, a three-dimensional mathematical model that describes fluid flow around horizontal wells is derived as a preliminary step for the development of a full-fledged three-dimensional nonsteady-state streamtube simulator. A major portion of the computer code is written and tested.
机译:在最近的技术突破中,对石油及其生产的搜寻方式发生了革命性变化,其中包括在水平钻井领域中实现的创新。一旦处于休眠状态,这种做法在石油行业中已迅速成为常规。与常规的垂直井相比,由于水平井的接触面积非常大,它们具有渗透介质,并具有拦截天然裂缝的能力,因此水平井可以恢复老化的油藏并显着提高生产率。这些最令人印象深刻的结果已在石油工业上游部门的几乎所有方面中得到了保证和刺激。储层工程是迫切需要新进展的领域之一。必须开发新的理论和技术来发挥水平钻井的巨大潜力。正是本着这种精神进行了这项工作。这项研究深入探究了水平井周围非稳态流体的流动问题。特别是,对封闭油藏中的压力分布进行了详细研究,并对均匀通量和无限电导率的假设进行了严格审查。最重要的是,描述了围绕水平井的流体流动的三维数学模型是开发成熟的三维非稳态流管模拟器的第一步。计算机代码的主要部分已编写并经过测试。

著录项

  • 作者

    Seghier, Morsli.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Engineering Petroleum.
  • 学位 Ph.D.
  • 年度 1992
  • 页码 288 p.
  • 总页数 288
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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