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Reactive transport modeling in heterogeneous porous media with dynamic mesh optimization

机译:具有动态网格优化的异构多孔介质中的反应性运输建模

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摘要

This paper presents a numerical simulator for solving compositional multiphase flow and reactive transport. The simulator was developed by effectively linking IC-FERST (Imperial College Finite Element Reservoir SimulaTor) with PHREEQCRM. IC-FERST is a next-generation three-dimensional reservoir simulator based on the double control volume finite element method and dynamic unstructured mesh optimization and is developed by the Imperial College London. PHREEQCRM is a state-of-the-art geochemical reaction package and is developed by the United States Geological Survey. We present a step-by-step framework on how the coupling is performed. The coupled code is called IC-FERST-REACT and is capable of simulating complex hydrogeological, biological, chemical, and mechanical processes occurring including processes occur during CO_2 geological sequestration, CO_2 enhanced oil recovery, and geothermal systems among others. In this paper, we present our preliminary work as well as examples related to CO_2 geological sequestration. We performed the model coupling through developing an efficient application programming interface (API). IC-FERST-REACT inherits high-order methods and unstructured meshes with dynamic mesh optimization from IC-FERST. This reduces the computational cost by placing the mesh resolution where and when necessary and it can better capture flow instabilities if they occur. This can have a strong impact on reactive transport simulations which usually suffer from computational cost. From PHREEQCRM the code inherits the ability to efficiently model geochemical reactions. Benchmark examples are used to show the capability of IC-FERST-REACT in solving multiphase flow and reactive transport.
机译:本文介绍了用于求解组成多相流动和反应性的数值模拟器。通过将IC-Ferst(Themile College UniTite Colluit Calloir Simulir Simulator与PhreeQcrm有效地联系起来,模拟器开发。 IC-FERSE是基于双控制量有限元方法和动态非结构化网格优化的下一代三维储层模拟器,由伦敦帝国学院开发。 Phreeqcrm是一种最先进的地球化学反应包,由美国地质调查制定。我们提出了一种关于如何执行耦合的逐步框架。耦合代码称为IC-FERST-反应,并且能够模拟在CO_2地质隔离期间发生的过程发生的复杂水文,生物,化学品和机械过程,CO_2增强的采油和地热系统。在本文中,我们展示了我们的初步工作以及与CO_2地质隔离相关的例子。我们通过开发有效的应用程序编程接口(API)来执行模型耦合。 IC-Ferst-React继承了高阶方法和非结构化网格,从IC-Furst的动态网格优化。这通过将网格分辨率放置在必要时,通过将网格分辨率放置来降低计算成本,并且如果发生这种情况,它可以更好地捕获流量不稳定性。这可能对通常遭受计算成本的反应性运输模拟产生强烈影响。来自Phreeqcrm的代码继承了有效模拟地球化学反应的能力。基准示例用于显示求解多相流动和反应运输的IC-FERST-反应的能力。

著录项

  • 来源
    《Computational Geosciences》 |2021年第1期|357-372|共16页
  • 作者单位

    Department of Geology University of Cincinnati Cincinnati OH USA;

    Department of Earth Science and Engineering Novel Reservoir Modelling and Simulation Group Imperial College London London UK;

    Bureau of Economic Geology Jackson School of Geosciences University of Texas Austin TX USA;

    Department of Chemical Engineering Massachusetts Institute of Technology Cambridge MA USA;

    Department of Earth Science and Engineering Novel Reservoir Modelling and Simulation Group Imperial College London London UK;

    Department of Earth Science and Engineering Novel Reservoir Modelling and Simulation Group Imperial College London London UK;

    Department of Earth Science and Engineering Novel Reservoir Modelling and Simulation Group Imperial College London London UK;

    Department of Geology University of Cincinnati Cincinnati OH USA Department of Environmental Engineering University of Cincinnati Cincinnati OH USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Modeling; Multiphase flow; Reactive transport; IC-FERST; PHREEQCRM; Dynamic mesh optimization;

    机译:造型;多相流动;反应运输;IC-FERST;Phreeqcrm;动态网格优化;
  • 入库时间 2022-08-18 22:54:05

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