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Performance Optimization of Abrasive Fluid Jet for Completion and Stimulation of Oil and Gas Wells

机译:油气井完井和增产的磨料射流性能优化

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摘要

This paper provides an overview of the development and optimization of abrasive-slurry-jet methods for completion and stimulation applications. Abrasive particles added to the fluid dramatically reduced the system pressure requirements. The paper discusses the technical capabilities of cutting through various materials and formations and also discusses improvements and proven applications. Abrasive fluid-jet systems are capable of cutting through rocks of all types, and with greater location control that is not susceptible to the geologically induced deviations encountered with mechanical methods. Abrasive fluid-jets drill rock through the erosion induced by very small particles which individually remove only small fragments but are in such numbers that the drilling rate is at or above that of conventional tools. The particles are powered by the velocity of the supporting fluid, generated in turn by pumps on the surface. The cutting occurs ahead of the nozzle body allowing the nozzle assembly to be fed in the tunnel to create drain-holes. Fluid-jet methods have the potential of improving completion and stimulation efficiency in heterogeneous formations such as fractured and/or vuggy carbonate reservoirs. Application for completion, stimulation and, even, well/platform abandonment has been successful.
机译:本文概述了用于完井和增产应用的磨料浆喷射方法的开发和优化。添加到流体中的磨料颗粒大大降低了系统压力要求。本文讨论了切穿各种材料和地层的技术能力,还讨论了改进和经过验证的应用。磨料射流系统能够切穿所有类型的岩石,并且具有更大的位置控制能力,因此不易受到机械方法遇到的地质引起的偏差的影响。磨料射流通过非常细小的颗粒引起的侵蚀来钻凿岩石,这些颗粒分别仅除去小碎片,但数量却使得钻孔速率等于或高于常规工具。颗粒由支撑液的速度提供动力,支撑液的速度又由表面上的泵产生。切割发生在喷嘴主体的前面,从而允许喷嘴组件被送入通道中以形成排水孔。流体喷射方法具有改善非均质地层如裂缝和/或多孔碳酸盐岩储层中的完井和增产效率的潜力。完井,增产甚至井/平台遗弃的申请已经成功。

著录项

  • 来源
    《Journal of Energy Resources Technology》 |2012年第2期|p.021001.1-021001.6|共6页
  • 作者

    Anuj Gupta;

  • 作者单位

    Texas ASM University at Qatar,213 E Texas A&M Engineering Building,Education City, P.O. Box 23874, Doha, Qatar;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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