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Numerical simulation of elasto-plastic hydraulic fracture propagation in deep reservoir coupled with temperature field

机译:深层储层耦合温度场的弹塑性液压断裂繁殖的数值模拟

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摘要

With the increasing demand of oil and gas resource, the development of deep reservoir has become an inevitable trend. To investigate the coupled effects of rock elasto-plastic deformation, fluid flow and heat transfer in the process of hydraulic fracturing of deep reservoir, the mathematical model of elasto-plastic hydraulic fracture propagation is established based on cohesive zone model (CZM) and embedded discrete fracture model (EDFM). The constitutive equation incorporating thermal stress is derived by using Drucker-Prager yield condition and the associated flow law. Fluid flow in the fracture is modeled with lubrication theory. The thermal non-equilibrium theory is employed to describe the heat exchange between rock matrix and fluid in the fracture based on EDFM. The CZM is used as fracture propagation criterion. The rock deformation equation is solved by finite element method. The temperature field and fluid flow in the fracture are discretized by finite volume method. Due to the non-linearity of flow equation, the iterative method is used to solve the coupled problem of stress, pressure and temperature fields. A Triangular-PEBI (Perpendicular Bisector) dual mesh system is presented for numerical implementation. The numerical model is validated against with analytical solution and other methods in the literature. The results show the significance of accounting for elasto-plastic deformation and heat transfer when simulating hydraulic fracture propagation in deep reservoir.
机译:随着石油和天然气资源需求的越来越大,深层水库的发展已成为必然趋势。为了探讨岩石弹塑性变形,流体流动和热传递的耦合效果,在深层储层的水力压裂过程中,基于凝聚区模型(CZM)和嵌入式离散建立了弹塑性液压断裂传播的数学模型裂缝模型(EDFM)。通过使用DRUCKER-PRAGER产量和相关的流法来源的包含热应力的本构型方程。骨折中的流体流动用润滑理论进行建模。采用热非平衡理论来描述基于EDFM的裂缝中岩石基质和流体之间的热交换。 CZM用作裂缝传播标准。通过有限元法解决了岩石变形方程。通过有限体积法离散地区裂缝中的温度场和流体流动。由于流动方程的非线性,迭代方法用于解决应力,压力和温度场的耦合问题。提供了一个三角形PEBI(垂直分子)双网格系统,用于数值实现。数值模型与文献中的分析解决方案和其他方法进行验证。结果表明,在深水库中模拟液压断裂繁殖时弹塑性变形和传热的意义。

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