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首页> 外文期刊>Nuclear fusion >Improvement of neutral beam injection heating efficiency with magnetic field well structures in a tokamak with a low magnetic field
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Improvement of neutral beam injection heating efficiency with magnetic field well structures in a tokamak with a low magnetic field

机译:利用低磁场托卡马克中的磁场阱结构提高中性束注入加热效率

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摘要

Magnetic well structures are introduced as an effective means to reduce the prompt loss of fast ions, the so-called first orbit loss from neutral beam injection (NBI), which is beneficial to tokamaks with a low magnetic field strength such as small spherical torus devices. It is found by single-particle analysis that this additional field structure can modify the gradient of the magnetic field to reduce the shift of the guiding center trajectory of the fast ion. This result is verified by a numerical calculation of following the fast ion's trajectory. We apply this concept to the Versatile Experiment Spherical Torus, where NBI is under design for the purpose of achieving high-performance plasma, to evaluate the effect of the magnetic well structure on NBI efficiency. A 1D NBI analysis code and the NUBEAM code are employed for detailed NBI calculations. The simulation results show that the orbit loss can be reduced by 70%-80%, thereby improving the beam efficiency twofold compared with the reference case without the well structure. The well-shaped magnetic field structure in the low-field side can significantly decrease orbit loss by broadening the non-orbit loss region and widening the range of the velocity direction, thus improving the heating efficiency. It is found that this magnetic well can also improve orbit loss during the slowing down process.
机译:引入磁阱结构作为减少快速离子迅速损失的有效方法,即所谓的中性束注入(NBI)造成的第一轨道损失,这对磁场强度低的托卡马克机种(例如小型球形圆环装置)有利。通过单粒子分析发现,这种附加的场结构可以修改磁场的梯度,以减少快速离子的引导中心轨迹的偏移。通过遵循快速离子轨迹的数值计算可以验证该结果。我们将此概念应用于“多功能实验球形圆环”(正在设计NBI以实现高性能等离子体的目的)中,以评估磁阱结构对NBI效率的影响。一维NBI分析代码和NUBEAM代码用于进行详细的NBI计算。仿真结果表明,与没有井结构的参考情况相比,轨道损失可以减少70%-80%,从而使光束效率提高了两倍。低场侧的形状良好的磁场结构可以通过扩大非轨道损失区域并扩大速度方向的范围来显着减少轨道损失,从而提高加热效率。发现该磁阱还可以改善减速过程中的轨道损失。

著录项

  • 来源
    《Nuclear fusion》 |2016年第10期|106006.1-106006.11|共11页
  • 作者单位

    Department of Nuclear Engineering, Seoul National University, Seoul, Korea;

    Department of Nuclear Engineering, Seoul National University, Seoul, Korea;

    Department of Nuclear Engineering, Seoul National University, Seoul, Korea;

    Department of Nuclear Engineering, Seoul National University, Seoul, Korea;

    National Fusion Research Institute, Daejeon, Korea;

    Department of Nuclear Engineering, Seoul National University, Seoul, Korea;

    Department of Nuclear Engineering, Seoul National University, Seoul, Korea;

    Department of Nuclear Engineering, Seoul National University, Seoul, Korea;

  • 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

    neutral beam injection; heating efficiency; magnetic well; orbit loss; NUBEAM; low B field; small tokamak;

    机译:中性束注入;加热效率磁阱轨道损失;NUBEAM;低B场;小托卡马克;

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