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首页> 外文期刊>Nuclear fusion >Energetic particle transport and loss induced by helically-trapped energetic-ion-driven resistive interchange modes in the Large Helical Device
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Energetic particle transport and loss induced by helically-trapped energetic-ion-driven resistive interchange modes in the Large Helical Device

机译:大螺旋装置中螺旋捕获的能量离子驱动电阻交换模式的精力粒子传输和损失

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摘要

In this work, energetic-ion confinement and loss due to energetic-ion driven magnetohydrodynamic modes are studied using comprehensive neutron diagnostics and orbit-following numerical simulations for the Large Helical Device (LHD). The neutron flux monitor is employed in order to obtain global confinement of energetic ions and two installed vertical neutron cameras (VNCs) viewing different poloidal cross-sections are utilized in order to measure the radial profile of energetic ions. A strong helically-trapped energetic-ion-driven resistive interchange mode (EIC) excited in relatively low-density plasma terminated high-temperature state in LHD. Changes in the neutron emission profile due to the EIC excitation are clearly visualized by the VNCs. The reduction in the neutron signal for the helical ripple valley increases with EIC amplitude, which reaches approximately 50%. In addition to the EIC experiment, orbit-following simulations using the DELTA5D code with EIC fluctuations were performed to assess the energetic-ion transport and loss. Two-dimensional temporal evolution results show that the neutron emissivity at the helical ripple decreases significantly due to the EIC. The rapid reduction in neutron emissivity shows that the helically-trapped beam ions immediately escape from the plasma. The reduction in the VNC signals for the helical ripple valley and the total neutron emission rate increase with increasing EIC amplitude, as observed in the experiment. Calculated line-integrated neutron emission results show that the profile measured by VNC1 has one peak, whereas the profile measured by VNC2 has two peaks, as observed in the experiment. Although the neutron emission profile for VNC2 has a relatively wide peak compared with the experimental results, the significant decrease in neutron signal corresponding to the helical ripple valley was successfully reproduced.
机译:在这项工作中,研究了使用全面的中子诊断和轨道的大螺旋装置(LHD)的轨道数值模拟来研究由于能量离子驱动的磁力流体动力学模式而导致的能量离子限制和损失。采用中子磁通监测器以获得能量离子的全局限制,并且使用两个安装的垂直中子摄像机(VNC)观察不同的圆形横截面以测量能量离子的径向轮廓。在LHD中,在相对低密度等离子体中激发的强螺旋捕获的能量离子驱动电阻交换模式(EIC)在LHD中终止高温状态。由于EIC激发导致的中子发射曲线的变化清楚地通过VNC清楚地可视化。螺旋纹波谷的中子信号的减小随着EIC幅度的增加,该幅度达到大约50%。除了EIC实验之外,使用使用Delta5D代码的轨道模拟,进行了具有EIC波动的轨道,以评估能量离子运输和损失。二维时间演化结果表明,由于EIC,螺旋纹波处的中子发射率显着降低。中子发射率的快速降低表明,螺旋捕获的光束离子立即从等离子体逸出。如在实验中所观察到的,螺旋纹谷的VNC信号的减小和总中子发射率的增加随着EIC幅度的增加而增加。计算的线路集成中子发射结果表明,VNC1测量的轮廓具有一个峰,而通过VNC2测量的轮廓具有两个峰,如实验中所观察到。尽管VNC2的中子发射曲线与实验结果相比具有相对宽的峰,但成功地再现了与螺旋纹谷对应的中子信号的显着降低。

著录项

  • 来源
    《Nuclear fusion》 |2020年第11期|112011.1-112011.13|共13页
  • 作者单位

    National Institute for Fusion Science National Institutes of Natural Sciences Toki 509-5292 Japan The Graduate University for Advanced Studies SOKENDAI Toki 509-5292 Japan;

    National Institute for Fusion Science National Institutes of Natural Sciences Toki 509-5292 Japan The Graduate University for Advanced Studies SOKENDAI Toki 509-5292 Japan;

    Kyushu University Fukuoka 819-0395 Japan;

    Kyushu University Fukuoka 819-0395 Japan;

    Oak Ridge National Laboratory Oak Ridge Tennessee 37831 United States of America;

    National Institute for Fusion Science National Institutes of Natural Sciences Toki 509-5292 Japan;

    National Institute for Fusion Science National Institutes of Natural Sciences Toki 509-5292 Japan The Graduate University for Advanced Studies SOKENDAI Toki 509-5292 Japan;

    National Institute for Fusion Science National Institutes of Natural Sciences Toki 509-5292 Japan;

    National Institute for Fusion Science National Institutes of Natural Sciences Toki 509-5292 Japan;

    National Institute for Fusion Science National Institutes of Natural Sciences Toki 509-5292 Japan;

    National Institute for Fusion Science National Institutes of Natural Sciences Toki 509-5292 Japan The Graduate University for Advanced Studies SOKENDAI Toki 509-5292 Japan;

  • 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

    the Large Helical Device; energetic particle confinement; netron diagnostics; energetic particle mode;

    机译:大螺旋装置;精力充沛的粒子限制;斯多伦诊断;精力充沛的粒子模式;

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