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Role of seepage forces on hydraulic fracturing and failure patterns

机译:渗流力对水力压裂和破坏模式的影响

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摘要

The mechanical role of seepage forces on hydraulic fracturing and failure patterns was studied both by the analytical methods of the continuum mechanics and by numerical simulations. Seepage forces are frictional forces caused by gradients of pore-fluid pressure. Formation of different failure patterns (localized shear bands or tensile fractures) driven by the localized fluid overpressure in the poro-elasto-plastic medium was studied using a numerical code specially developed for this purpose. The pre-failure condition for different failure patterns and fluid pressure at the failure onset was predicted using a new analytical solution.In the analytical solution the elliptical cavity filled with fluid in the non-hydrostatic far-field stress-state is considered. Since, the fluid pressure inside cavity differs from the far-field pore-fluid pressure; the poroelastic coupling is taking into account in the calculation of the deformation. Using Griffith’s theory for failure and this analytical solution, the generalized equation for the effective stress law was obtained. This generalized effective stress law controls the failure in the fluid-saturated porous medium with a non-homogeneous fluid pressure distribution.
机译:通过连续力学的分析方法和数值模拟,研究了渗透力对水力压裂和破坏模式的力学作用。渗流力是由孔隙流体压力梯度引起的摩擦力。使用专门为此目的开发的数字代码,研究了由多孔弹塑性介质中的局部流体超压驱动的不同破坏模式(局部剪切带或拉伸断裂)的形成。使用新的解析解预测了不同失效模式和失效开始时的流体压力的失效前条件。在解析溶液中,考虑了在非静水远场应力状态下充满流体的椭圆形空腔。因为,腔体内的流体压力不同于远场孔隙流体压力;在变形的计算中考虑了多孔弹性耦合。利用格里菲斯的破坏理论和这种解析解,获得了有效应力定律的广义方程。这种广义的有效应力定律控制了流体压力分布不均匀的流体饱和多孔介质的破坏。

著录项

  • 作者

    Rozhko, Alexander;

  • 作者单位
  • 年度 2007
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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