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The effect of a micro bubble dispersed gas phase on hydrogen isotope transport in liquid metals under nuclear irradiation

机译:核辐射下微气泡分散气相对液态金属中氢同位素迁移的影响

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摘要

The present work intend to be a first step towards the understanding and quantification of the hydrogen isotope complex phenomena in liquid metals for nuclear technology. Liquid metals under nuclear irradiation in, e.g., breeding blankets of a nuclear fusion reactor would generate tritium which is to be extracted and recirculated as fuel. At the same time that tritium is bred, helium is also generated and may precipitate in the form of nano bubbles. Other liquid metal systems of a nuclear reactor involve hydrogen isotope absorption processes, e.g., tritium extraction system. Hence, hydrogen isotope absorption into gas bubbles modelling and control may have a capital importance regarding design, operation and safety. Here general models for hydrogen isotopes transport in liquid metal and absorption into gas phase, that do not depend on the mass transfer limiting regime, are exposed and implemented in OpenFOAM® CFD tool for OD-3D simulations. Results for a OD case show the impact of a He dispersed phase of nano bubbles on hydrogen isotopes inventory at different temperatures as well as the inventory evolution during a He nucleation event. In addition, 1D and 2D axisymmetric cases are exposed showing the effect of a He dispersed gas phase on hydrogen isotope permeation through a lithium lead eutectic alloy and the effect of vortical structures on hydrogen isotope transport at a backward facing step. Exposed results give a valuable insight on current nuclear technology regarding the importance of controlling hydrogen isotope transport and its interactions with nucleation event through gas absorption processes.
机译:目前的工作是迈向了解和量化用于核技术的液态金属中氢同位素复杂现象的第一步。在例如核聚变反应堆的繁殖层中的核辐射下的液态金属将产生tri,该tri将被提取并作为燃料再循环。繁殖tri的同时,还会产生氦气,并且氦气会以纳米气泡的形式沉淀。核反应堆的其他液态金属系统涉及氢同位素吸收过程,例如tri提取系统。因此,在气泡的建模和控制中氢同位素的吸收对于设计,操作和安全性可能具有至关重要的意义。在此,不依赖于传质限制机制的液态金属中氢同位素迁移和气相吸收的通用模型已公开并在用于OD-3D模拟的OpenFOAM®CFD工具中实现。 OD情况的结果表明,纳米气泡的He分散相在不同温度下对氢同位素存量的影响,以及在He成核事件过程中存量的演变。另外,暴露了1D和2D轴对称情况,显示了He分散气相对通过锂铅共晶合金的氢同位素渗透的影响,以及涡旋结构对氢同位素在向后的步骤中的迁移的影响。暴露的结果对控制氢同位素传输及其通过气体吸收过程与成核事件的相互作用的重要性提供了对当前核技术的宝贵见解。

著录项

  • 来源
    《Fusion Engineering and Design》 |2013年第12期|3205-3214|共10页
  • 作者

    J. Fradera; S. Cuesta-Lopez;

  • 作者单位

    Advanced Materials, Nuclear Technology, Applied Nanotechnology, University of Burgos (UBU), Science and Technology Park, I+D+I Building, Room 63, Plaza Misael Bafluelos, s, 09001 Burgos, Spain;

    Advanced Materials, Nuclear Technology, Applied Nanotechnology, University of Burgos (UBU), Science and Technology Park, I+D+I Building, Room 63, Plaza Misael Bafluelos, s, 09001 Burgos, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hydrogen isotopes; Permeation; Two-phase flow; Nucleation; CFD;

    机译:氢同位素;渗透两相流;成核;差价合约;
  • 入库时间 2022-08-18 00:39:00

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