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Grassy-ELM regime with edge resonant magnetic perturbations in fully noninductive plasmas in the DIII-D tokamak

机译:DIII-D托卡马克中完全非感应等离子体中具有边缘共振磁扰动的Grass-ELM机制

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摘要

Resonant magnetic perturbations (n = 3 RMPs) are used to suppress large amplitude ELMs and mitigate naturally occurring 'grassy'-ELMs in DIII-D plasmas relevant to the ITER steady-state mission. Fully non-inductive discharges in the ITER shape and pedestal collisionality (v_e~* ≈ 0.05-0.15) are routinely achieved in DIII-D with RMP suppression of the Type-I ELMs. The residual grassy-ELMs deliver a low peak heat flux to the divertor as low as 1.2× the inter-ELM heat flux in plasmas with sustained high H-factor (H_(98y2) ≈ 1.2). The operating window for the RMP grassy-ELM regime is q_(95) = 5.3-7.1 and external torque in the range 9-0.7 Nm in the co-Ip direction, which is in the range required for a steady-state tokamak reactor. The RMP grassy-ELM regime is associated with a two-step pedestal, with strong flattening of the density around the zero crossing in the E × B shear. The edge magnetic response of the plasma to the n = 3 RMP is found to be ≈2-3× larger than for comparable ITER baseline plasmas (β_N ≈ 1.8, q_(95) ≈ 3.1). The amplification of the RMP is consistent with the weak magnetic perturbation level (δB/B ≈ 1 × 10~(-4)) required for effective Type-I ELM suppression. Cyclic variations in the pedestal pressure, width, and toroidal rotation are observed in these plasmas, correlated with cyclic variations in the strength and frequency of the grassy-ELMs. Extended MHD analysis and magnetic measurements indicate that these pedestal pulsations are driven by cyclic variations in the resonant field strength at the top of the pedestal. These pedestal pulsations reveal that the grassy-ELMs is correlated with the proximity of the pedestal to the low-n peeling-ballooning mode stability boundary. The use of low amplitude magnetic fields to access grassy-ELM conditions free of Type-I ELMs in high beta poloidal plasmas (β_P ≈ 1.5-2.0) opens the possibility for the further optimization of the steady-state tokamak by use of edge resonant magnetic perturbations.
机译:共振磁扰动(n = 3 RMP)用于抑制大振幅ELM,并减轻与ITER稳态任务相关的DIII-D等离子体中的天然“草” -ELM。在DIII-D中,通过对I型ELM的RMP抑制,通常可以实现ITER形状和基座碰撞(v_e〜*≈0.05-0.15)的完全非感应放电。残留的草状ELM会向偏滤器提供低的峰值热通量,其低至1.2倍血浆中的ELM间热通量,并且具有持续较高的H因子(H_(98y2)≈1.2)。 RMP草地ELM方案的工作窗口为q_(95)= 5.3-7.1,并且在co-Ip方向上的外部扭矩在9-0.7 Nm的范围内,这在稳态托卡马克反应堆所需的范围内。 RMP草皮ELM机制与两步式基座相关联,在E×B剪切机中,零交叉点附近的密度具有很强的平坦度。发现等离子体对n = 3 RMP的边缘磁响应比可比的ITER基线等离子体(β_N≈1.8,q_(95)≈3.1)大≈2-3倍。 RMP的放大与有效抑制I型ELM所需的弱磁扰动水平(δB/ B≈1×10〜(-4))一致。在这些等离子体中观察到了基座压力,宽度和环形旋转的周期性变化,这与草状ELM的强度和频率的周期性变化相关。扩展的MHD分析和磁测量表明,这些基座脉动是由基座顶部共振场强度的周期性变化驱动的。这些基座脉动表明,草状ELM与基座与低n剥离-膨胀模式稳定边界的接近程度相关。在高β倍体等离子体(β_P≈1.5-2.0)中使用低振幅磁场进入不含I型ELM的草质ELM条件为通过边缘共振磁进一步稳定稳态托卡马克提供了可能性扰动。

著录项

  • 来源
    《Nuclear fusion》 |2018年第10期|106010.1-106010.31|共31页
  • 作者单位

    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;

    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;

    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;

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

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

    Ludwig Maximilians Universitaet, Muenchen, Germany;

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

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

    University of California San Diego, 9500 Gilman Dr., La Jolla, CA 92093, United States of America;

    University of California San Diego, 9500 Gilman Dr., La Jolla, CA 92093, 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;

    Columbia University, 2960 Broadway, New York, NY 10027-6900, United States of America;

    Oak Ridge Associated Universities, Oak Ridge, TN, United States of America;

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

  • 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

    RMP; ELM; pedestal;

    机译:RMP;榆树;基座;
  • 入库时间 2022-08-18 04:06:31

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