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A Review of Numerical Modelling Techniques for Reactive Transport in Subsurface Reservoirs and Application in Mimetic Finite Difference Discretization Schemes

机译:地下储层反应运输数值建模技术综述及其模拟有限差分分散方案的应用

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Reactive transport is an area of growing interest to the petroleum industry due to the need to develop efficient simulators for oil production in mature and fractured fields.The subsurface flow processes are highly dependent on the chemical reaction between fluid and rocks,and between fluids themselves.This means that fluid flow in a reservoir should be characterized by mass change and chemical reactions,and thus researchers are trying to account for both phenomena through their corresponding governing equations.In this work,we discuss the early efforts to couple mass transfer and chemical reaction equations through presenting key studies in the field of modelling reactive transport and suggest a new discretization scheme for geochemical reactions.Our main objective is to improve on the formulation and simulation of reactive transport problems and explain how to implement Mimetic Finite-Difference (MFD) discretization scheme in reservoir simulators.The paper outlines the steps to discretize the governing equations of reactive transport,and construct and solve the resultant Jacobian system.The purpose of this work is to provide a clear presentation of the main mathematical and theoretical concepts of reactive transport,and how they can be applied in reservoir simulation framework.Such framework can be utilized in the future to develop a state-of-art reservoir simulator that employs Mimetic Finite Difference schemes in unstructured grids and full tensor permeability structures to solve for fluid flow in porous media,while accounting for the geochemical reactions at the subsurface.
机译:由于需要在成熟和裂缝领域开发出高效的模拟器,因此对石油行业的影响是对石油工业产生兴趣的影响。地下流程高度依赖于流体和岩石之间的化学反应,以及流体本身之间的化学反应。这意味着储层中的流体流量应以质量变化和化学反应为特征,因此研究人员试图通过其相应的管理方程来考虑这两种现象。在这项工作中,我们讨论了耦合传统转移和化学反应的早期努力通过在模型反应运输领域提出关键研究的方程,并提出了一种新的地球化学反应的离散化方案。您的主要目标是改善反应运输问题的配方和模拟,解释如何实现模拟有限差(MFD)离散化(MFD)离散化水库模拟器中的计划。论文概述了差异的步骤ETIZE反应运输的控制方程,以及构建和解决合成的雅比尼亚体系。这项工作的目的是提供了明确的反应运输的主要数学和理论概念,以及它们如何应用于水库模拟框架的主要数学和理论概念。将来可以利用这种框架来开发一种最先进的储层模拟器,该模拟器采用非结构化网格中的模拟有限差分方案和全张渗透结构,以解决多孔介质中的流体流动,同时对地下的地球化学反应核对地球化学反应。

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