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Propagation of in situ horizontal fractures in shale due to steam injection

机译:注蒸汽引起的页岩水平裂缝的扩展

摘要

Thermal recovery processes, such as cyclic steam stimulation and steam assisted gravity drainage, involve the injection of large volumes of steam into oil sand formations. Dilatation of oil sand formations due to steam injection induces stresses and deformations in the shale overburden. Natural horizontal fissures or extensive fractures with no tensile and cohesive strength are commonly found in the shale formation. New fractures will be initiated at these in situ horizontal fracture tips if the stresses and deformation induced by the steam injection are excessive. Reactivation and propagation of these in situ fractures in the shale formation could not only cause casing impairment problems, but could also cause an environmental hazard. This paper presents an analytical model to investigate the propensity for fracture propagation in shale due to steam injection under tensile (mode I) and shear (model II) fracturing. Practical numerical examples are presented along with a risk assessment and implications.
机译:热采过程(例如循环蒸汽刺激和蒸汽辅助重力排水)涉及将大量蒸汽注入油砂岩层中。由于蒸汽注入而引起的油砂地层膨胀会在页岩覆盖层中引起应力和变形。在页岩地层中通常会发现天然的水平裂缝或没有抗张强度和内聚强度的广泛裂缝。如果蒸汽注入引起的应力和变形过大,则会在这些原位水平裂缝尖端处引发新的裂缝。页岩地层中这些原位裂缝的重新活化和传播不仅会引起套管损伤问题,而且还会造成环境危害。本文提出了一个分析模型,以研究在拉伸(模式I)和剪切(模式II)压裂下注入蒸汽引起的页岩裂缝扩展的倾向。给出了实用的数值示例以及风险评估和含义。

著录项

  • 作者

    Wong RCK; Chau KT;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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