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首页> 外文期刊>Nuclear fusion >Effect of the relative shift between the electron density and temperature pedestal position on the pedestal stability in JET-ILW and comparison with JET-C
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Effect of the relative shift between the electron density and temperature pedestal position on the pedestal stability in JET-ILW and comparison with JET-C

机译:电子密度和温度基座位置之间的相对位移对JET-ILW基座稳定性的影响以及与JET-C的比较

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摘要

The electron temperature and density pedestals tend to vary in their relative radial positions, as observed in DIII-D (Beurskens et al 2011 Phys. Plasmas 18 056120) and ASDEX Upgrade (Dunne et al 2017 Plasma Phys. Control. Fusion 59 14017). This so-called relative shift has an impact on the pedestal magnetohydrodynamic (MHD) stability and hence on the pedestal height (Osborne et al 2015 Nucl. Fusion 55 063018). The present work studies the effect of the relative shift on pedestal stability of JET ITER-like wall (JET-ILW) baseline low triangularity (6) unseeded plasmas, and similar JET-C discharges. As shown in this paper, the increase of the pedestal relative shift is correlated with the reduction of the normalized pressure gradient, therefore playing a strong role in pedestal stability. Furthermore, JET-ILW tends to have a larger relative shift compared to JET carbon wall (JET-C), suggesting a possible role of the plasma facing materials in affecting the density profile location. Experimental results are then compared with stability analysis performed in terms of the peeling-ballooning model and with pedestal predictive model EUROPED (Saarelma et al 2017 Plasma Phys. Control. Fusion). Stability analysis is consistent with the experimental findings, showing an improvement of the pedestal stability, when the relative shift is reduced. This has been ascribed mainly to the increase of the edge bootstrap current, and to minor effects related to the increase of the pedestal pressure gradient and narrowing of the pedestal pressure width. Pedestal predictive model EUROPED shows a qualitative agreement with experiment, especially for low values of the relative shift.
机译:如在DIII-D(Beurskens等人2011 Phys.Plasmas 18 056120)和ASDEX Upgrade(Dunne等人2017 Plasma Phys.Control.Fusion 59 14017)中所观察到的,电子温度和密度基座的相对径向位置往往会发生变化。这种所谓的相对偏移会影响基座磁流体动力学(MHD)的稳定性,进而影响基座的高度(Osborne et al 2015 Nucl。Fusion 55 063018)。本工作研究了相对位移对JET ITER样壁(JET-ILW)基线低三角形(6)无种子血浆和类似JET-C放电的基座稳定性的影响。如本文所示,基座相对位移的增加与归一化压力梯度的减小相关,因此在基座稳定性中起着重要作用。此外,与JET碳壁(JET-C)相比,JET-ILW倾向​​于具有较大的相对位移,这表明等离子表面材料可能会影响密度分布位置。然后将实验结果与根据去皮气球模型进行的稳定性分析以及与基座预测模型EUROPED进行比较(Saarelma等人2017 Plasma Phys.Control.Fusion)。稳定性分析与实验结果一致,表明当相对位移减小时,基座稳定性得到改善。这主要归因于边缘自举电流的增加,以及与基座压力梯度的增加和基座压力宽度的变窄有关的较小影响。基座预测模型EUROPED显示出与实验的定性一致性,尤其是相对位移值较低时。

著录项

  • 来源
    《Nuclear fusion》 |2018年第5期|056010.1-056010.12|共12页
  • 作者单位

    Division of Fusion Plasma Physics, KTH Royal Institute of Technology, Stockholm, Sweden;

    Division of Fusion Plasma Physics, KTH Royal Institute of Technology, Stockholm, Sweden;

    CCFE, Culham Science Centre, Abingdon, OX14 3DB, United Kingdom of Great Britain and Northern Ireland;

    ITER Organization, Route de Vinon sur Verdon, 13067 St Paul Lez Durance, France;

    Instituto de Plasmas e Fusao Nuclear, 1ST, Lisboa, Portugal;

    CCFE, Culham Science Centre, Abingdon, OX14 3DB, United Kingdom of Great Britain and Northern Ireland;

    CCFE, Culham Science Centre, Abingdon, OX14 3DB, United Kingdom of Great Britain and Northern Ireland;

    CCFE, Culham Science Centre, Abingdon, OX14 3DB, United Kingdom of Great Britain and Northern Ireland;

    Max-Planck Institute for Plasma Physics, Garching, Germany;

    CCFE, Culham Science Centre, Abingdon, OX14 3DB, United Kingdom of Great Britain and Northern Ireland;

    Department of Physics, Centre for Advanced Instrumentation, Durham DH1 3LE, United Kingdom of Great Britain and Northern Ireland;

    Laboratorio Nacional de Fusion CIEMAT, Madrid, Spain;

    Instituto de Plasmas e Fusao Nuclear, 1ST, Lisboa, Portugal;

    Institute of Plasma Physics AS CR, Prague, Czech Republic,Faculty of Mathematics and Physics, Charles University in Prague, Prague, Czech Republic;

    ENEA, CR. Frascati, Via E. Fermi 45, Rome, Italy;

    CCFE, Culham Science Centre, Abingdon, OX14 3DB, United Kingdom of Great Britain and Northern Ireland;

    CCFE, Culham Science Centre, Abingdon, OX14 3DB, United Kingdom of Great Britain and Northern Ireland;

    EUROfusion Consortium, JET, Culham Science Centre, Abingdon, OX14 3DB, United Kingdom of Great Britain and Northern Ireland;

  • 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

    JET; pedestal; pedestal position; pedestal stability; EUROPED; Thomson scattering;

    机译:喷射;基座基座位置基座稳定性欧洲汤姆森散射;

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