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Predicting plume spreading during CO_2 geo-sequestration: benchmarking a new hybrid finite element-finite volume compositional simulator with asynchronous time marching

机译:预测CO_2地理封存期间的羽流扩展:基准与异步时间游行的新型混合有限元有限体积组成模拟器

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摘要

In this paper, we present the results of benchmark simulations for plume spreading during CO_2 geo-sequestration conducted with the newly developed Australian CO_2 Geo-Sequestration Simulator (ACGSS). The simulator uses a hybrid finite element-finite volume (FEFVM) simulation framework, integrating an asynchronous local time stepping method for multiphase multi-component transport and a novel non-iterative flash calculation approach for the phase equilibrium. The benchmark investigates four standard CO_2 storage test cases that are widely used to assess the performance of simulation tools for carbon geo-sequestration: (A) radial flow from a CO_2 injection well; (B) CO_2 discharge along a fault zone; (C) CO_2 injection into a layered brine formation; and (D) leakage through an abandoned well. For these applications, ACGSS gives results similar to well-established compositional simulators. Minor discrepancies can be rationalised in terms of the alternative, spatially adaptive discretisation and the treatment of NaCl solubility. While these benchmarks cover issues related to compositional simulation, they do not address the accurate representation of geologically challenging features of CO_2 storage sites. An additional 3D application scenario of a complexly faulted storage site demonstrates the advantages of the FEFVM discretisation used in the ACGSS for resolving the geometric complexity of geologic storage sites. This example also highlights the significant computational benefits gained from the use of the asynchronous time marching scheme.
机译:在本文中,我们介绍了在用新开发的澳大利亚CO_2地理隔离模拟器(ACGSS)进行的CO_2地理封存期间PLUME扩散的基准模拟结果。模拟器使用混合有限元有限体积(FEFVM)仿真框架,集成了用于多相多分量传输的异步局部时间步进方法,以及用于相平衡的新型非迭代闪光计算方法。该基准调查了四种标准CO_2存储测试案例,广泛用于评估碳地理封存的仿真工具的性能:(a)来自CO_2喷射的径向流量; (b)沿着断层区域的CO_2放电; (c)将CO_2注射成层状盐水形成; (d)通过被遗弃的井泄漏。对于这些应用,ACGSS将结果类似于建立良好的组成模拟器。在替代性空间适应性离散和治疗NaCl溶解度方面,可以进行微小的差异。虽然这些基准涵盖了与组成模拟相关的问题,但它们不会解决CO_2存储网站的地质挑战性特征的准确表示。复杂故障存储站点的额外3D应用场景演示了用于解决地质存储站点的几何复杂性的ACGS中使用的FEFVM自分离散的优点。此示例还强调了使用异步时间行动方案的显着计算益处。

著录项

  • 来源
    《Computational Geosciences》 |2021年第1期|299-323|共25页
  • 作者单位

    Department of Infrastructure Engineering The University of Melbourne Parkville VIC Australia School of Earth and Environmental Sciences The University of Queensland St. Lucia QLD Australia;

    Department of Infrastructure Engineering The University of Melbourne Parkville VIC Australia;

    Department of Earth Sciences Swiss Federal Institute of Technology Zurich Zurich Switzerland;

    School of Earth and Environmental Sciences The University of Queensland St. Lucia QLD Australia;

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

    CO_2 geo-sequestration; Benchmark; Unstructured grid; Asynchronous time marching; ACGSS;

    机译:CO_2地理封存;基准;非结构化网格;异步时间游行;acgss.;
  • 入库时间 2022-08-18 22:54:04

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