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Plane strain propagation of a hydraulic fracture in a permeable rock

机译:渗透性岩石中水力裂缝的平面应变传播

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This paper describes the solution of the plane strain problem of a hydraulic fracture propagating in a permeable, linear elastic medium. The fracture propagation is driven by injection of an incompressible Newtonian fluid at a constant rate. The fracture opening and the fluid pressure are related through an elastic singular integral equation, and the flow of fluid within the fracture is modeled using lubrication theory. The leak-off or infiltration of fracturing fluid into the surrounding medium is treated as a one-dimensional diffusion process. The solution of this problem is restricted to cases where the toughness of the medium and the lag between the fluid front and the fracture tip are both zero. These particular conditions are taken to correspond to limiting cases where the energy rate dissipated in fracturing the medium is negligible compared to viscous dissipation (zero toughness) and the far-field stress perpendicular to the fracture is large (zero lag). The problem is solved numerically, using an explicit time-marching algorithm. A description of the near-tip asymptotic behavior, which is of fundamental importance for the successful convergence of the algorithm, is also included. We obtain the semi-analytic asymptotic solutions corresponding to small and large time, and compare them with the numerical solution, in order to delineate the limits of the propagation regimes.
机译:本文描述了在可渗透的线性弹性介质中传播的水力压裂的平面应变问题的解决方案。通过以恒定速率注入不可压缩的牛顿流体来驱动裂缝扩展。裂缝的开度和流体压力通过一个弹性奇异积分方程相关联,并使用润滑理论对裂缝内的流体流动进行建模。压裂液向周围介质的泄漏或渗透被视为一维扩散过程。该问题的解决方案限于介质的韧性以及流体前沿和裂缝尖端之间的滞后都为零的情况。这些特殊条件对应于极限情况,在这种情况下,与粘性耗散(零韧性)相比,在压裂介质中耗散的能量速率可忽略不计,并且垂直于裂缝的远场应力较大(零滞后)。使用显式时间前进算法以数字方式解决了该问题。还包括对近端渐近行为的描述,这对于算法的成功收敛至关重要。我们获得了对应于小时间和大时间的半解析渐近解,并将其与数值解进行比较,以描述传播方式的极限。

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