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Modelling hydraulic fractures in porous media using flow cohesive interface elements

机译:流动粘性界面元素在多孔介质中建模液压骨折

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This paper revisits the problem of computational modelling of a fluid-driven fracture propagating in a permeable porous medium using zero-thickness flow cohesive interface elements, Both cases of continuous and discontinuous pressure. field across the fractures are implemented in a unified formulation. The paper provides computational aspects of hydraulic fracture modelling such as mesh generation, execution time, convergence and numerical integration issues. We show that Newton-Cotes quadrature must be used for quadratic flow cohesive interface elements at least for the presented problems. Our simulations exhibit the so-called intermittent crack tip advancement as recently confirmed in the literature. This paper is addressed to researchers who would like to have a quick working implementation of the zero-thickness flow cohesive interface elements for simulating hydraulic fracturing processes with finite elements.
机译:本文通过零厚度流动粘合界面元件重新释放在可渗透的多孔介质中传播的流体驱动骨折的计算建模问题,这两种情况都是连续和不连续的压力。 骨折的场地在统一的制剂中实施。 本文提供了液压断裂建模的计算方面,如网格生成,执行时间,收敛和数值集成问题。 我们表明,牛顿 - 咖啡因正交必须用于二次流动凝聚界面元件,至少用于所呈现的问题。 我们的模拟展示了在文献中最近证实的所谓的间歇性裂缝提示进步。 本文针对希望快速工作地实现零厚度流动界面元件的研究人员,用于使用有限元模拟液压压裂过程。

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