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2D-lattice modelling of crack propagation induced by fluid injection in heterogeneous quasi-brittle materials

机译:异晶拟脆性材料流体注射诱导裂纹繁殖的2D-晶格建模

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Characterizing the path of a hydraulic fracture in a heterogeneous medium is one of the challenges of current research on hydraulic fracturing. We present here a 2D lattice hydro-mechanical model for this purpose. Natural joints are represented introducing elements with a plastic-damage behaviour. The action of fluid pressure on skeleton is represented using Biot's theory. The interactions of cracks on fluid flow are represented considering a Poisueille's flow between two parallel plates. The model is simplified by neglecting the effect of deformation in the equation governing fluid flow. Numerical coupling is achieved with a staggered coupling scheme. We consider first the propagation of fracture restricted to the homogeneous case. The numerical model is compared to analytical solutions. It is found that the model is consistent with LEFM in the pure mechanical case, and with analytical solutions from the literature in the case where the leak off is dominant. In very tight formations, deviations are observed, as expected, because of the assumption in the flow model. Finally, the influence of a natural joint of finite length crossed by the fracture is shown. Two cases are considered, the case of a joint perpendicular to the crack and the case of an inclined joint. In the first case, the crack passes through the joint, which is damaged due to the intrusion of the fluid. In the second case, the crack follows the joint and propagation starts again from the tip.
机译:在异构介质中表征液压骨折的路径是当前液压压裂研究的挑战之一。我们在此提供了一个2D格子水电模型为此目的。用塑料损坏行为表示自然关节引入元件。使用Biot理论表示骨架上的流体压力的作用。考虑到两个平行板之间的Poisueille的流动,表示裂缝对流体流动的相互作用。通过忽略控制流体流动方程中变形的效果来简化该模型。用交错耦合方案实现数值耦合。我们首先考虑骨折的传播,限制在均匀情况下。数值模型与分析解决方案进行比较。结果发现,该模型与纯机械壳体中的铅值符合液晶,并在泄漏所占主导地位的情况下,具有来自文献的分析解决方案。在非常紧密的地层中,由于流动模型中的假设,因此观察到偏差。最后,示出了断裂横划线交叉的自然关节的影响。考虑两种情况,垂直于裂缝的关节和倾斜接头的情况的情况。在第一种情况下,裂缝通过关节,由于流体的侵入,这被损坏。在第二种情况下,裂缝遵循关节,传播再次从尖端开始。

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