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An element-free Galerkin method using vertically integrated multiphase flow model for carbon sequestration

机译:使用垂直集成多相流模型进行碳固存的无元素Galerkin方法

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In this paper, the element-free Galerkin (EFG) method is applied to the study of vertically integrated two-phase flow of CO2 and brine in a deep saline aquifer. The methodology comprises of solving two simultaneous partial differential equations (PDEs) involving pressure and saturation terms, which are obtained by combining mass and momentum conservation equations. The obtained pressure and the average CO2 saturation resulting from the model will help to study the spatial and temporal distribution of the aquifer, bottom pressure buildup and the CO2 storage capacity of the aquifer respectively. The temporal analysis is solved using an IMplicit Pressure and Explicit Saturation (IMPES) solution strategy. A local refinement zone is introduced to capture the asymptotic pressure solution near the injection wells. Furthermore, the region surrounding the well is modelled as a non homogeneous interface using Functionally Graded Materials (FGMs) analogy. Various case studies such as the horizontal aquifer, the sloped aquifer, the non-homogenous aquifer and, the horizontal aquifer with multiple wells have been presented to show the efficiency of the proposed model. The performance of the proposed EFG method is compared with that of FEM and XFEM numerical solutions. It is observed that the EFG method can capture average CO2 saturation (height of CO2) more effectively than the FEM and as effectively as the XFEM at the injection well. Moreover, it is easier to use the EFG method to solve complex aquifer problems, having non homogeneity and multiple wells by considering a local nodal refinement around the well with ease. The simplicity of the proposed EFG method is demonstrated in this paper.
机译:本文采用无元素Galerkin(EFG)方法研究深层盐水中CO2和盐水的垂直积分两相流。该方法包括解决两个同时涉及压力和饱和项的偏微分方程(PDE),这是通过结合质量守恒方程和动量守恒方程获得的。该模型获得的压力和平均CO 2饱和度将有助于研究含水层的空间和时间分布,底部压力累积和含水层的CO 2储存能力。使用隐式压力和显式饱和(IMPES)解决方案策略可以解决时间分析问题。引入局部优化区以捕获注入井附近的渐近压力解。此外,使用功能梯度材料(FGM)类推,将井周围区域建模为非均匀界面。提出了各种案例研究,例如水平含水层,倾斜含水层,非均质含水层以及具有多口井的水平含水层,以证明所提出模型的有效性。将所提出的EFG方法的性能与FEM和XFEM数值解进行了比较。可以观察到,EFG方法可以比FEM更有效地捕获平均CO2饱和度(CO2的高度),并且与注入井处的XFEM一样有效。此外,更容易使用EFG方法解决复杂的含水层问题,具有非均质性和多口井,方法是轻松考虑井周围的局部节点细化。本文证明了所提出的EFG方法的简单性。

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