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Benchmarking of reactive transport codes for 2D simulations with mineral dissolution-precipitation reactions and feedback on transport parameters

机译:矿物溶解 - 降水反应2D模拟反应性转运码的基准和转运参数反馈

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摘要

Porosity changes due to mineral dissolution-precipitation reactions in porous media and the resulting impact on transport parameters influence the evolution of natural geological environments or engineered underground barrier systems. In the absence of long-term experimental studies, reactive transport codes are used to evaluate the long-term evolution of engineered barrier systems and waste disposal in the deep underground. Examples for such problems are the long-term fate of CO2 in saline aquifers and mineral transformations that cause porosity changes at clay-concrete interfaces. For porosity clogging under a diffusive transport regime and for simple reaction networks, the accuracy of numerical codes can be verified against analytical solutions. For clogging problems with more complex chemical interactions and transport processes, numerical benchmarks are more suitable to assess model performance, the influence of thermodynamic data, and sensitivity to the reacting mineral phases. Such studies increase confidence in numerical model descriptions of more complex, engineered barrier systems. We propose a reactive transport benchmark, considering the advective-diffusive transport of solutes; the effect of liquid-phase density on liquid flow and advective transport; kinetically controlled dissolution-precipitation reactions causing porosity, permeability, and diffusivity changes; and the formation of a solid solution. We present and analyze the results of five participating reactive transport codes (i.e., CORE2D, MIN3P-THCm, OpenGeoSys-GEM, PFLOTRAN, and TOUGHREACT). In all cases, good agreement of the results was obtained.
机译:由于多孔介质中的矿物质溶解 - 沉淀反应和产生对运输参数的影响影响的孔隙率变化影响了天然地质环境或工程地下屏障系统的演变。在没有长期实验研究的情况下,反应运输代码用于评估工程屏障系统的长期演进和在地下深处的废物处理。这些问题的实例是盐水含水层中CO 2的长期命运和矿物质转化,导致粘土混凝土界面的孔隙率变化。对于在漫射传输制度下堵塞和简单的反应网络下的孔隙率堵塞,可以针对分析解决方案验证数值代码的准确性。为了堵塞更复杂的化学相互作用和运输过程的问题,数值基准更适合于评估模型性能,热力学数据的影响以及对反应矿物相的敏感性。这些研究增加了对更复杂,工程障碍系统的数值模型描述的置信度。我们提出了反应运输基准,考虑到溶质的平均扩散运输;液相密度对液体流动和平流运输的影响;动力学控制的溶解 - 沉淀反应导致孔隙率,渗透性和扩散性变化;并形成固溶体。我们展示并分析了五个参与的反应运输代码的结果(即ROSE2D,MIN3P-THCM,Opengeosys-Gem,Pflotran和Tembreact)。在所有情况下,获得了良好的结果。

著录项

  • 来源
    《Computational Geosciences》 |2021年第4期|1337-1358|共22页
  • 作者单位

    Paul Scherrer Inst Lab Waste Management CH-5232 Villigen Switzerland|Forschungszentrum Julich IEK 6 Inst Nucl Waste Management & Reactor Safety D-52425 Julich Germany;

    Univ Bern Inst Geol Sci Rock Water Interact Baltzerstr 3 CH-3012 Bern Switzerland;

    Univ Bern Inst Geol Sci Rock Water Interact Baltzerstr 3 CH-3012 Bern Switzerland;

    Univ A Coruna Ctr Invest Cientif Avanzadas CICA ETS Ingn Caminos Canales & Puertos Campus Elvina La Coruna 15071 Spain;

    Univ A Coruna Ctr Invest Cientif Avanzadas CICA ETS Ingn Caminos Canales & Puertos Campus Elvina La Coruna 15071 Spain;

    Univ A Coruna Ctr Invest Cientif Avanzadas CICA ETS Ingn Caminos Canales & Puertos Campus Elvina La Coruna 15071 Spain;

    Univ British Columbia Dept Earth Ocean & Atmospher Sci 2020-2207 Main Mall Vancouver BC V6T IZ4 Canada;

    Univ British Columbia Dept Earth Ocean & Atmospher Sci 2020-2207 Main Mall Vancouver BC V6T IZ4 Canada;

    Univ British Columbia Dept Earth Ocean & Atmospher Sci 2020-2207 Main Mall Vancouver BC V6T IZ4 Canada;

    Univ Bern Inst Geol Sci Rock Water Interact Baltzerstr 3 CH-3012 Bern Switzerland;

    Paul Scherrer Inst Lab Waste Management CH-5232 Villigen Switzerland;

    Paul Scherrer Inst Lab Waste Management CH-5232 Villigen Switzerland;

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

    Benchmarking; Density-driven flow; Solid solution; Clogging; Barium sulfate; Strontium sulfate;

    机译:基准;密度驱动的流动;固溶;堵塞;硫酸钡;硫酸锶;

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