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Fracture Initiation Model of Shale Fracturing Based on Effective Stress Theory of Porous Media

机译:基于多孔介质有效应力理论的页岩压裂骨折启动模型

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摘要

Unconventional oil and gas are important resources of future energy supply, and shale gas is the focus of the development of unconventional resources. Shale is a special kind rock of porous medium, and an orderly structure of beddings aligned in the horizontal direction where causing the strong elastic anisotropy of shale is easy. A new model has been established to calculate the fracture initiation pressure with the consideration of mechanical characteristics of shale and the anisotropic tensile strength when judging rock failure. The fracture initiation model established in this paper accurately reflects the stress anisotropy and matches well with the actual situation in porous media. Through the sensitivity analysis, the results show that σv/σH, Ev/EH, υv/υH, m/s, and A/B have a certain impact on the tangential stress when the circumferential angle changes, and there is a positive relationship between the initiation pressure and the above sensitive factors except for A/B. The results can provide a valuable and effective guidance for the prediction of fracture initiation pressure and fracture propagation mechanism under special stratum conditions of shale.
机译:非常规石油和天然气是未来能源供应的重要资源,页岩气是非常规资源开发的重点。页岩是多孔介质的一种特殊类型的岩石,并且其中使页岩的强烈的弹性各向异性在水平方向上排列的床上用品的有序结构是容易的。一种新的模型已经建立判断岩石破裂时,以计算与所述考虑的页岩的机械特性和各向异性拉伸强度断裂初始压力。本文建立断裂起始模型准确地反映了应力各向异性,并用在多孔介质中的实际情况相匹配良好。通过灵敏度分析,结果表明,σV/σH,EV / EH,υv/υH,米/秒,以及A / B对切向应力产生一定的影响时的圆周角的变化,并且之间有一个正的关系该初始压力和除A / B在上述敏感因子。结果可页岩地层特殊的条件下提供一种用于断裂初始压力和裂缝传播机制的预测的有价值的和有效的指导。

著录项

  • 作者

    Yuwei Li; Dan Jia;

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  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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