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首页> 外文期刊>Computers & geosciences >EOS7Rn-A new TOUGH2 module for simulating radon emanation and transport in the subsurface
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EOS7Rn-A new TOUGH2 module for simulating radon emanation and transport in the subsurface

机译:EOS7Rn-一种新的TOUGH2模块,用于模拟地下的ra释放和运输

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摘要

A new fluid property module, E0S7Rn, was developed for T0UGH2 to simulate the transport of radon gas (~(222)Rn) in saturated-unsaturated soils. It is an enhanced version of the E0S7R module for radionuclide transport, with a source term added in the transport equation to model radon generation by emanation from radioactive decay of the soil radium (~(226)Ra) content. We implemented variable physical properties (diffusion coefficient, emanation factor, adsorption coefficient, and Henry's law coefficient) of this gas component in two-phase (liquid-gas) porous media as a function of soil moisture and/or soil temperature. Numerical trials have been carried out to ensure that temporal and spatial numerical discretization of this nonlinear source term are effective and have properly been implemented in T0UGH2. We performed comparative studies between EOS7Rn and an exact analytical solution at steady-state isothermal unsaturated conditions for many numerical experiments of one-dimensional (1D) radon transport in homogeneous and layered soil columns typical of Uranium Mill Tailings (UMT) landfill soils. We found that the radon activity concentration profiles and flux densities calculated by E0S7Rn were in good agreement with the analytical solution for all the studied numerical experiments. Relative errors in radon mass balance and flux densities were determined to be negligible. For the second verification of E0S7Rn for transient nonisothermal radon transport problems, two simulation examples are presented to demonstrating the importance of the radon emanation and thermal effects on radon transport in a geothermal reservoir. Like most other sister modules, E0S7Rn can simulate nonisothermal multiphase flow and fully coupled three-dimensional transport in fractured porous media. It will help in predicting the radon exhalation from highly radium-contaminated soils and underground cavities to outdoor and indoor environments.
机译:为T0UGH2开发了一个新的流体特性模块E0S7Rn,以模拟ra气(〜(222)Rn)在饱和-不饱和土壤中的传输。它是用于放射性核素运输的E0S7R模块的增强版本,在运输方程式中添加了一个源项,以通过土壤镭(〜(226)Ra)的放射性衰变产生的model来模拟ra的生成。我们根据土壤湿度和/或土壤温度,在两相(液-气)多孔介质中实现了该气体组分的可变物理特性(扩散系数,散发系数,吸附系数和亨利定律)。已经进行了数值试验,以确保该非线性源项的时间和空间数值离散有效并已在T0UGH2中正确实现。我们在EOS7Rn和稳态等温不饱和条件下的精确解析溶液之间进行了比较研究,用于许多在铀厂尾矿(UMT)垃圾填埋场土壤中均质和分层土壤柱中进行一维(1D)transport气迁移的数值实验。我们发现,通过E0S7Rn计算的activity活度浓度分布和通量密度与所有研究的数值实验的解析解都非常吻合。 ra质量平衡和通量密度的相对误差被确定为可以忽略不计。为了针对瞬态非等温n运输问题进行E0S7Rn的第二次验证,提出了两个模拟示例,以证明the散发和热效应对地热储层中transport运输的重要性。像大多数其他姊妹模块一样,E0S7Rn可以模拟非等温多相流和裂缝多孔介质中的完全耦合三维传输。它将有助于预测从高度被镭污染的土壤和地下空腔到室外和室内环境的the气排放。

著录项

  • 来源
    《Computers & geosciences》 |2014年第4期|72-83|共12页
  • 作者单位

    Institut de Radioprotection et de Surete Nucleaire, IRSN, PRP-DGE/SEDRAN/BRN, 31 Avenue de la Division Leclerc, Fontenay-aux-Roses 92262, France;

    Institut de Radioprotection et de Surete Nucleaire, IRSN, PRP-DGE/SEDRAN/BRN, 31 Avenue de la Division Leclerc, Fontenay-aux-Roses 92262, France;

    Institut de Radioprotection et de Surete Nucleaire, IRSN, PRP-DGE/SEDRAN/BRN, 31 Avenue de la Division Leclerc, Fontenay-aux-Roses 92262, France;

    Institut de Radioprotection et de Surete Nucleaire, IRSN. PRP-ENV/STEM/LEI, 31 rue de I'Ecluse, Le Vesinet 78116, France;

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

    Diffusion; Adsorption; Henry's Law; Nonisothermal; Two-phase flow; Fractured;

    机译:扩散;吸附;亨利定律;非等温;两相流;破碎的;

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