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Three-phase numerical model of water migration in partially frozen geological media: model formulation, validation, and applications

机译:部分冻结地质介质中水迁移的三相数值模型:模型的建立,验证和应用

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摘要

Water in the subsurface of the Earth's cold regions-and possibly the subsurface of Mars-resides in the liquid, vapor, and ice phases. However, relatively few simulations addressing full three-phase, non-isothermal water dynamics in below-freezing porous media have been undertaken. This paper presents a nonisothermal, three-phase approach to modeling water migration in partially frozen porous media. Conservation equations for water (as ice, liquid, and vapor) and a single gas species (in the gas phase and dissolved in water) are coupled to a heat transport equation and solved by a finite-volume method with fully implicit time stepping. Particular attention is given to the method of spatial differencing when the pore space is partially filled with ice. The numerical model is able to reproduce freezing-induced water redistribution observed in laboratory experiments. Simulations of Earth permafrost dynamics and of the formation and evolution of a planetary-scale cryosphere on Mars demonstrate the new capabilities.
机译:地球寒冷地区地下(可能还有火星地下)中的水以液相,蒸气和冰相形式存在。但是,已经进行了相对较少的模拟,以解决低于冰点的多孔介质中的完整三相非等温水动力学问题。本文提出了一种非等温,三相方法来模拟部分冻结的多孔介质中的水迁移。将水(如冰,液体和蒸气)和单个气体(处于气相并溶于水)的守恒方程与热传递方程耦合,并通过具有完全隐式时间步长的有限体积方法求解。当孔隙空间部分充满冰时,应特别注意空间差异的方法。该数值模型能够再现在实验室实验中观察到的冷冻诱导的水的重新分布。在火星上对地球多年冻土动力学以及行星尺度冰冻圈的形成和演化进行的模拟证明了这一新功能。

著录项

  • 来源
    《Computational Geosciences》 |2011年第1期|p.69-85|共17页
  • 作者

    Scott L.Painter;

  • 作者单位

    Geosciences and Engineering Division, Southwest Research Institute, San Antonio, TX, USA,Earth and Environmental Sciences Division, Los Alamos National Laboratory, Los Alamos, NM, USA;

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

    multiphase flow; freezing soils; mars; permafrost;

    机译:多相流冻结土壤;火星;多年冻土;

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