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L-H TRANSITION AND EDGE TRANSPORT BARRIER FORMATION ON LHD

机译:LHD上的L-H过渡和边缘运输障碍形成

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摘要

The L-H transition was observed in a unique helical divertor configuration where the core plasma is surrounded by ergodic layer, exhibiting rapid increase in edge electron density with sudden depression of H_α emission. Just after the transition, edge transport barrier (ETB) is formed at the plasma edge in the magnetic hill region, developing a steep density gradient. ETB region extends in ergodic layer beyond the last closed flux surface defined by the vacuum field. The transition occurs in relatively high beta plasmas when neutral beam absorbed power (P_(abs)) exceeds one to three times the ITER H-mode power threshold. Improvement of energy confinement time is modest (<1.1) for the ISS95 international stellarator scaling, whereas the particle confinement is clearly improved. The ETB width tends to increase with the increase in the toroidal beta at the ETB shoulder. ETB formation leads to destabilization of edge magnetohydrodynamic (MHD) modes with m =rn2/3 or 1/2 (m and n being the poloidal and toroidal mode numbers) in ETB region of the inward-shifted configurations. Edge-localized modes (ELMs) are excited by these edge MHD modes through nonlinear evolution. Sometimes in outward-shifted plasmas, edge MHD modes are clearly suppressed in the H-phase and lead to an ELM-free H-mode. When large m = 1/1 resonant magnetic perturbations are applied to neutral beam injection-heated plasmas, the transition takes place at lower line-averaged electron density having the modest increase in electron temperature and small-amplitude ELMs.
机译:在独特的螺旋偏滤器结构中观察到了L-H跃迁,其中核心等离子体被遍历层包围,表现出边缘电子密度的快速增加,而H_α发射突然降低。过渡之后,在磁性丘陵区的等离子边缘处形成了边缘传输势垒(ETB),形成了陡峭的密度梯度。 ETB区域在遍历层中延伸超过真空场定义的最后一个封闭通量表面。当中性束吸收功率(P_(abs))超过ITER H模式功率阈值的一到三倍时,过渡会在相对较高的β等离子体中发生。对于ISS95国际恒星仪定标,能量约束时间的改善是适度的(<1.1),而粒子约束的改善明显。 ETB宽度倾向于随着ETB肩部环形β的增加而增加。 ETB的形成会导致向内移动的ETB区域中的m / n = rn2 / 3或1/2(m和n为极向和超环模数)的边缘磁流体动力学(MHD)模不稳定。这些边缘MHD模式通过非线性演化激发了边缘局部模式(ELM)。有时在向外移动的等离子体中,边缘MHD模式在H相中受到明显抑制,并导致无ELM的H模式。当将大的m / n = 1/1共振磁扰动应用于中性束注入加热的等离子体时,跃迁发生在电子温度适度增加且幅值较小的ELM的线平均电子密度较低的情况下。

著录项

  • 来源
    《Fusion Science and Technology》 |2010年第1期|P.61-69|共9页
  • 作者单位

    National Institute for Fusion Science, Toki, Japan;

    rnNagoya University, Department of Energy Engineering and Science, Nagoya, Japan;

    rnNational Institute for Fusion Science, Toki, Japan;

    rnNational Institute for Fusion Science, Toki, Japan;

    rnInstitute of Plasma Physics, Chinese Academy of Science, Hefei, China;

    rnNational Institute for Fusion Science, Toki, Japan;

    rnNational Institute for Fusion Science, Toki, Japan;

    rnNational Institute for Fusion Science, Toki, Japan;

    rnNational Institute for Fusion Science, Toki, Japan;

    rnJapan Atomic Energy Agency, Naka, Japan;

    rnMax-Planck Institut fuer Plasma Physik, Greifswald, Germany;

    rnNational Institute for Fusion Science, Toki, Japan;

    rnSouthwestern Institute of Physics, Chengdu, China;

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

    L-H transition; edge transport barrier; stellarator/helicals;

    机译:L-H过渡;边缘运输障碍恒星/螺旋;

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