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Density scaling of error field penetration in radio-frequency-dominant heating plasmas in the EAST tokamak

机译:东托卡马克射频优势加热等离子体中误差场渗透的密度缩放

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摘要

The density scaling of n = 1 error field penetration is investigated under radio-frequency (RF)-dominant heated L-mode discharges in the EAST tokamak. It is found that the density scaling of the threshold field strength for error field penetration in lower-hybrid current drive (LHCD) plasmas is about b_r ∝ n_e~(0.4), where b_r represents the error field amplitude. The results show a weaker density dependence compared to that observed in the previous ohmic heated discharges (Wang et al 2018 Nucl. Fusion 58 056024). For a better understanding of the density scaling, it is compared with field penetration theories, and it is found that it lies in the Waelbroeck regime. The observed scaling is consistent with that evaluated with the magnetohydrodynamic (MHD) theory on error field penetration, for which all the physical parameters are determined experimentally. Due to the density dependence of LHCD heating efficiency, the stronger negative correlation between density and temperature results in a weaker density scaling in these LHCD plasmas. Using realistic parameters under LHCD and ohmic heating as input, respectively, the numerical results based on a reduced MHD model reproduce well the scaling from the error field penetration theory and the observations. Besides, the density scaling in various tokamak operational regimes is also numerically investigated. This provides an excellent validation of MHD theory on error field penetration in the RF-dominant heated L-mode discharges.
机译:在东托卡马克的射频(RF) - 互联网温热的L模式放电下,研究了n = 1误差场穿透的密度缩放。发现阈值场强的阈值场强的密度缩放在较低混合电流驱动器(LHCD)等离子体中的误差场穿透是关于B_RαN_E〜(0.4),其中B_R表示误差场幅度。结果表明,与先前的欧姆加热放电中观察到的相比,较弱的密度依赖性(Wang等人2018 Nucl。融合58 056024)。为了更好地理解密度缩放,将其与场渗透理论进行比较,并且发现它位于Waelbroeck制度中。观察到的缩放与用磁性信息动力学(MHD)理论评估的误差场穿透评估一致,所有物理参数都是通过实验确定的。由于LHCD加热效率的密度依赖性,密度和温度之间的较强的负相关导致这些LHCD等离子体中的密度缩放较弱。使用LHCD和欧姆加热下的现实参数分别作为输入,基于减少的MHD模型的数值结果再现误差场穿透理论的缩放和观察。此外,在数值上还研究了各种TOKAMAK运营制度中的密度缩放。这提供了对RF主导加热L模式放电中的误差场渗透的MHD理论的优异验证。

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  • 来源
    《Nuclear fusion》 |2021年第5期|056010.1-056010.8|共8页
  • 作者单位

    Key Laboratory of Materials Modification by Beams Ministry of Education School of Physics Dalian University of Technology Dalian 116024 China Institute of Plasma Physics Chinese Academy of Sciences PO Box 1126 Hefei 230031 China;

    Institute of Plasma Physics Chinese Academy of Sciences PO Box 1126 Hefei 230031 China;

    Institute of Plasma Physics Chinese Academy of Sciences PO Box 1126 Hefei 230031 China;

    Key Laboratory of Materials Modification by Beams Ministry of Education School of Physics Dalian University of Technology Dalian 116024 China;

    Key Laboratory of Materials Modification by Beams Ministry of Education School of Physics Dalian University of Technology Dalian 116024 China;

    Institute of Plasma Physics Chinese Academy of Sciences PO Box 1126 Hefei 230031 China;

    Institute of Plasma Physics Chinese Academy of Sciences PO Box 1126 Hefei 230031 China;

    General Atomics PO Box 85608 San Diego CA 92186-5608 United States of America Oak Ridge Associated Universities Oak Ridge TN 37830 United States of America;

    Institute of Plasma Physics Chinese Academy of Sciences PO Box 1126 Hefei 230031 China;

    Institute of Plasma Physics Chinese Academy of Sciences PO Box 1126 Hefei 230031 China;

    Institute of Plasma Physics Chinese Academy of Sciences PO Box 1126 Hefei 230031 China;

    Institute of Plasma Physics Chinese Academy of Sciences PO Box 1126 Hefei 230031 China;

    Institute of Plasma Physics Chinese Academy of Sciences PO Box 1126 Hefei 230031 China;

    Institute of Plasma Physics Chinese Academy of Sciences PO Box 1126 Hefei 230031 China;

    Institute of Plasma Physics Chinese Academy of Sciences PO Box 1126 Hefei 230031 China;

    Institute of Plasma Physics Chinese Academy of Sciences PO Box 1126 Hefei 230031 China;

  • 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

    error field penetration; LHCD heating; density scaling;

    机译:误差场渗透;LHCD加热;密度缩放;

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