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An assessment for the erosion rate of DEMO first wall

机译:DEMO第一壁腐蚀速率的评估

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摘要

In a fusion reactor a significant fraction of plasma particles lost from the confined volume will reach the vessel wall. The recombination of these charged species, electrons and ions of hydrogen isotopes, is a source of neutral molecules and atoms, recycling back into the plasma. Here they participate, in particular, in charge-exchange (c-x) collisions with the plasma ions and, as a result, atoms of high energies with chaotically oriented velocities are generated. A significant fraction of these hot neutrals will hit the wall, leading, as well as the outflowing fuel and impurity ions, to its erosion, limiting the reactor operation time. The rate of the wall erosion in DEMO is assessed by applying a one-dimensional model which takes into account the transport of charged and neutral species across the flux surfaces in the main part of the scrape-off layer, beyond the X-point vicinity and divertor, and by considering the shift of the centers of flux surfaces, their elongation and triangularity. Atoms generated by c-x of recycling neutrals are modeled kinetically to define firmly their energy spectrum, being of particular importance for the erosion assessment. It is demonstrated the erosion rate of the DEMO wall armor of tungsten will have a pronounced ballooning character with a significant maximum of 0.3 mm per full power year at the low field side, decreasing with an increase in the anomalous perpendicular transport in the 'far' SOL or the plasma density at the separatrix.
机译:在聚变反应堆中,从受限体积损失的大部分血浆颗粒将到达血管壁。这些带电物质,氢同位素的电子和离子的重组是中性分子和原子的来源,并循环回到等离子体中。在此,它们特别参与与等离子体离子的电荷交换(c-x)碰撞,结果生成了具有混沌取向速度的高能原子。这些热中性物的很大一部分将撞击壁,导致流出的燃料和杂质离子腐蚀,从而限制了反应堆的运行时间。通过应用一维模型来评估DEMO中的壁腐蚀速率,该模型考虑了带电和中性物质跨刮层主要部分的通量表面在X点附近和偏导器,并考虑通量表面中心的偏移,其伸长率和三角形性。对循环中性粒子的c-x生成的原子进行动力学建模,以牢固地定义其能谱,这对于腐蚀评估尤为重要。证明了DEMO钨壁装甲的腐蚀速率将具有明显的膨胀特性,在低场侧每满功率年的最大最大值为0.3 mm,随着“远”方向异常垂直传输的增加而降低。 SOL或分离层的血浆密度。

著录项

  • 来源
    《Nuclear fusion》 |2018年第1期|016016.1-016016.9|共9页
  • 作者

    M.Z. Tokar;

  • 作者单位

    Forschungszentrum Juelich GmbH, Institut fur Energie-und Klimaforschung-Plasmaphysik, 52425 Juelich, Germany;

  • 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

    first wall; recycling; erosion;

    机译:第一壁回收;侵蚀;

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