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Pedestal collapse by resonant magnetic perturbations

机译:通过共振磁性扰动的基座崩溃

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摘要

Pedestal collapse (i.e., the complete loss of the edge transport barrier (ETB)) in DⅢ-D H-mode plasmas occurs when resonant magnetic perturbations (RMPs) penetrate the steep gradient region at the plasma edge. Normally, RMP driven magnetic islands can occur at the top and bottom of the H-mode pedestal and these islands generate conditions consistent with edge-localized-mode (ELM) suppression and density pump-out, respectively, based on nonlinear two-fluid MHD simulations. In contrast, MHD simulations show that the steep pressure gradient region between the top and bottom of the DⅢ-D pedestal is generally immune to resonant field penetration due to large local E × B and diamagnetic flows. By this fortuitous circumstance, the edge-transport-barrier and H-mode confinement can be maintained while achieving ELM suppression. However, pedestal collapse can occur in DⅢ-D when the screening flows are inadequate to prevent field penetration in the steep gradient region of the pedestal. Non-linear two-fluid MHD simulations support the role of resonant field penetration in pedestal collapse for DⅢ-D H-mode plasmas with weak edge E × B and diamagnetic screening flows. ITER will likely have weaker edge screening flows than present experiments due to its much larger size, making it more susceptible to resonant field penetration in the steep gradient region of the pedestal. Analysis of model ITER equilibria demonstrates that resonant field penetration in the steep pressure gradient region is possible for RMP levels of the order required for ELM suppression. The effect of such penetration on the ITER pedestal will depend sensitively on the resulting degree of island overlap.
机译:基座折叠(即,当谐振磁扰动(RMP)穿过等离子体边缘处的陡峭梯度区域时,发生DⅢ-D H模式等离子体中的边缘传输屏障(ETB)的完全损失)。通常,RMP驱动的磁岛可以在H模式基座的顶部和底部发生,并且这些岛屿分别基于非线性两种流体MHD产生与边缘定位模式(ELM)抑制和密度泵出的条件一致模拟。相反,MHD模拟表明,由于大型局部E×B和抗磁流,DⅢ-D基座的顶部和底部之间的陡峭压力梯度区域通常免受谐振场渗透。通过这种偶然环境,可以在实现ELM抑制的同时保持边缘运输屏障和H模式限制。然而,当筛选流量不充分时,在DⅢ-D中可能发生基座塌陷以防止基座的陡​​峭梯度区域中的场渗透。非线性两流体MHD模拟支持谐振场穿透在具有弱边缘E×B的DⅢ-D H模式等离子体中的基座坍塌的作用和钻石筛分流。由于其尺寸更大,迭代可能比现在实验更弱的边缘筛选流量,使得在基座的陡峭梯度区域中更容易受到谐振场穿透。模型迭代架的分析证明陡峭的压力梯度区域中的谐振场穿透是ELM抑制所需的顺序的RMP水平。这种渗透对浸泡基座的影响将敏感地取决于所得岛重叠的最大程度。

著录项

  • 来源
    《Nuclear fusion》 |2021年第4期|044001.1-044001.9|共9页
  • 作者单位

    Princeton Plasma Physics Laboratory Princeton NJ 08543-0451 United States of America;

    Princeton Plasma Physics Laboratory Princeton NJ 08543-0451 United States of America;

    Princeton Plasma Physics Laboratory Princeton NJ 08543-0451 United States of America;

    General Atomics PO Box 85608 San Diego CA 92186-5608 United States of America;

    General Atomics PO Box 85608 San Diego CA 92186-5608 United States of America;

    Princeton Plasma Physics Laboratory Princeton NJ 08543-0451 United States of America;

    Lawrence Livermore National Laboratory 7000 East Ave Livermore CA 94550 United States of America;

    University of California San Diego CA 92093-0417 United States of America;

    Princeton Plasma Physics Laboratory Princeton NJ 08543-0451 United States of America;

    General Atomics PO Box 85608 San Diego CA 92186-5608 United States of America;

    Princeton Plasma Physics Laboratory Princeton NJ 08543-0451 United States of America;

    Max-Plank-Institut fuer Plasmaphysik 85748 Garching 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

    resonant magnetic perturbations; edge transport barrier; ELM suppression;

    机译:共振磁性扰动;边缘运输屏障;榆树镇压;

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