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A hybrid finite element model for non-isothermal two-phase flow in deformable porous media

机译:可变形多孔介质中非等温两相流流动的混合有限元模型

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This paper presents a numerical method to model the coupled thermo-hydro-mechanical (THM) processes in porous media saturated with two immiscible fluids. The basic equations of the system have been derived based on the averaging theory, considering skeleton deformation, two-phase fluid flow, and heat transport. As applying the standard Galerkin finite element method (GFEM) to solve this system of partial differential equations may lead to oscillatory results for saturation and temperature profiles, a hybrid numerical solution is proposed. In this frame, the GFEM is combined with a control volume based finite element (CVFE) approach, and a streamline upwind control volume finite element (SUCVFE) scheme, respectively for the mechanical, hydraulic and thermal part of the system. The CVFEM has been adopted to provide a smooth saturation profile by ensuring local mass conservation, while the streamline upwind scheme has been applied to remove the spurious temperature oscillation by adding stabilizing terms to the thermal part of the system. The CVFE and SUCVFE formulations have been derived using a similar approach as the standard FE practice in the context of weighted residual technique, but using different weighting functions. This will significantly facilitate the implementation of the proposed model in existing FE codes. Accuracy and efficiency of the proposed method have been justified using several numerical examples and comparing the results with available analytical or numerical solutions.
机译:本文介绍了用两个不混溶的流体饱和的多孔介质中耦合的热水机械(THM)工艺的数值方法。基于平均理论,考虑骨架变形,两相流体流动和热传输,该系统的基本方程已经得到推导。由于应用标准的Galerkin有限元方法(GFEM)来解决该系统的部分微分方程可能导致饱和度和温度轮廓的振荡结果,提出了一种混合数值解决方案。在该框架中,GFEM与基于控制体积的有限元(CVFE)的方法组合,以及用于系统的机械,液压和热部分的流线冲压控制体积有限元(SUCVFE)方案。已经采用CVFEM通过确保局部质量保护来提供平滑的饱和度曲线,而通过向系统的热部分添加稳定术语来施加流线线UPWIND方案以除去杂散温度振荡。通过在加权残留技术的上下文中,使用与标准FE实践类似的方法来导出CVFE和SUCVFE配方,但使用不同的加权函数。这将大大促进现有Fe代码中提出的模型的实施。所提出的方法的准确性和效率已经使用若干数值示例进行了良好,并将结果与​​可用的分析或数值解决方案进行比较。

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