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A Technical Playbook for Chemicals and Additives Used in the Hydraulic Fracturing of Shales

机译:用于Shales水力压裂的化学品和添加剂技术剧本

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摘要

Improving production of shale gas and tight oil from low-permeability formations has dominated the energy landscape over the past two decades. Successful applications of horizontal drilling combined with hydraulic fracturing (HF) techniques, first demonstrated in the Texas Barnett shales in the 1990s, are the impetus for the current shale boom in the Americas. Chemicals are at the heart of the fracturing (or "fracking") process, which includes pumping a water-based fluid and proppant into a shale formation to create fissures that access the buried hydrocarbons. The fracturing fluid composition is critical to the completion design and should reduce wellbore friction while enabling proppant placement into the fractures. However, adding too many chemicals without properly evaluating the fracturing fluid formulation can lead to increased cost, poor fluid performance, or even damage to the reservoir. This review discusses the purpose of each chemical used in HF fluids, the techniques applied by the production chemist to assess fluid performance, and suggested best practices in optimizing formulations to reduce costs, enhance performance, and improve footprint.
机译:从低渗透形成的改善物流和较小的油的生产占据了过去二十年中的能源景观。卧式钻井的成功应用结合液压压裂(HF)技术,首先在20世纪90年代的德克萨斯州Barnett Shales中展示,是当前在美洲的物流繁荣的动力。化学品位于压裂(或“压裂”)过程的核心,包括将水基流体泵送入页岩形成以产生进入掩埋烃的裂缝。压裂液组合物对完成设计至关重要,并应减少井筒摩擦,同时使支撑剂放置在骨折中。然而,在没有适当评估压裂流体制剂的情况下添加过多的化学物质可以导致成本增加,更低的流体性能,甚至对储层造成损坏。本综述讨论了HF流体中使用的每种化学品的目的,该技术通过生产化学家评估流体性能,并在优化配方中提出了最佳实践,以降低成本,提高性能和改善足迹。

著录项

  • 来源
    《Energy & fuels》 |2020年第12期|15106-15125|共20页
  • 作者

    Reynolds Michael A.;

  • 作者单位

    Shell Explorat & Prod Co Houston TX 77079 USA;

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

  • 入库时间 2022-08-18 23:01:32

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