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Hydromechanical model for hydraulic fractures using XFEM

机译:使用XFEM的水力压裂液压力学模型

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In this study, a hydromechanical model for fluid flow in fractured porous media is presented. We assume viscous fluids and the coupling equations are derived from the mass and momentum balance equations for saturated porous media. The fluid flow through discrete cracks will be modelled by the extended finite element method and an implicit time integration scheme. We also present a consistent linearization of the underlying non-linear discrete equations. They are solved by the Newton-Raphson iteration procedure in combination with a line search. Furthermore, the model is extended to includes crack propagation. Finally, examples are presented to demonstrate the versatility and efficiency of this two-scale hydromechanical model. The results suggest that the presence of the fracture in a deforming, porous media has great impact on the fluid flow and deformation patterns.
机译:在这项研究中,提出了在破裂的多孔介质中流体流动的流体力学模型。我们假设粘性流体,并且耦合方程式是从饱和多孔介质的质量和动量平衡方程式导出的。通过离散裂纹的流体流动将通过扩展有限元方法和隐式时间积分方案进行建模。我们还提出了基础非线性离散方程的一致线性化。通过Newton-Raphson迭代过程结合线搜索来解决它们。此外,该模型已扩展为包括裂纹扩展。最后,通过实例说明了该两尺度水力模型的多功能性和有效性。结果表明,在变形的多孔介质中裂缝的存在对流体流动和变形模式有很大影响。

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