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Development of a Finite Element Computer Simulation Platform for a Cou-pled Reservoir and Geomechanics System

机译:开发用于耦合水库和地质力学系统的有限元计算机仿真平台

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The aim of this article is to describe the development of a finite element computer platform for the modeling,analysis,and simulation of a coupled reservoir and geomechanics system.The conditions that are assumed are the simplest possible,so that we assume homogeneity and isotropy in the material,an elastic behavior of the rock with small deformations,a quasi-static equilibrium,the absence of fractures and isothermal state.The study evolves sequentially in stages,from the flow of a single fluid in a porous medium,through the two-phase case,up to the three-phase black oil model.The starting point is based on a mathematical model that is an extension of Biot’s theory for flow in porous media,and which accounts for coupling the reservoir of fluid flow to the rock deformation and stress states.The mathematical model is reformulated in variational terms,in order to get a proper formulation that enables us to apply the weighted residuals methods of Galerkin with linear interpolation functions.The use of linear interpolant functions reduces the computational work but at the cost of having to face some inestabilities in the solutions.Once the model is discretized,we make use of appropriate software to built an unstructured meshing domain using tetrahedral elements.We carried out a computational model founded in the design of a program based in the C language,to perform the tasks of numerical calculations of the coefficients,assembling the stiffness element by element matrices,and for solving the resulting equations.It is intended to develop the computer program in a modular structure,so that the solution of the coupled geomechanics/reservoir system can be performed through an iterative procedure. The development of this code is still in its initial stage,but the approachs show promise.At the end two case studies are presented,which are compared with analytical solution for verification of the approach
机译:本文的目的是描述一个有限元计算机平台的建模,分析的发展,和一个耦合储层模拟并且被假定地质力学系统。条件是最简单的可能,从而使我们假设均匀性和在各向同性材料,具有小的变形,准静态平衡,缺少依次分阶段骨折和等温state.The研究演变的,从单一流体在多孔介质中的流动的岩石的弹性行为,通过双相位的情况下,最多三相黑油model.The出发点是基于数学模型,该模型Biot理论多孔介质中的流动的延伸,和占流体流的储层耦合到所述岩石变形和压力states.The数学模型,重新变分而言,为了得到合适的配方,使我们能够用直线插补功能应用辽金的加权残值法s.The采用线性插值功能,降低了计算工作,但不得不面对一些inestabilities模型离散的solutions.Once的成本,我们利用相应的软件使用四面体elements.We进行内置非结构化网格域出的计算模型建立在基于C语言的程序设计,以执行系数的数值计算的任务,通过组装元件矩阵的刚性元件,以及用于解决所得到的equations.It旨在开发计算机程序在一个模块化结构,从而使耦合地质力学/储存系统的解决方案可以通过迭代过程来执行。这段代码的发展还处于起步阶段,但技术途径显示promise.At结束两项案例研究提出,这是与该方法的验证分析解决方案相比

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