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Modelling toroidal rotation damping in ITER due to external 3D fields

机译:由于外部3D场而在ITER中建模环形旋转阻尼

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摘要

The linear and quasi-linear plasma response to the n = 3 and n = 4 (n is the toroidal mode number) resonant magnetic perturbation (RMP) fields, produced by the in-vessel edge localized mode control coils, is numerically studied for an ITER 15 MA H-mode baseline scenario. Both single fluid and fluid-kinetic hybrid models are used. The inclusion of drift kinetic effects does not strongly alter the plasma response compared to the fluid approximation for this ITER plasma. The full toroidal drift kinetic model is also used to compute the neoclassical toroidal viscous (NTV) torque, yielding results close to that of an analytic model based on geometric simplifications. The computed NTV torque from low-n RMP fields is generally smaller than the resonant electromagnetic torque for this ITER plasma. The linear response computations show a weak core kink response, contrary to a strong kink response often computed for plasmas from present day tokamak devices. Initial value quasi-linear simulations, including various torque models, show a localized damping of the plasma toroidal flow near the edge, as a result of the applied RMP fields. This localized rotation damping can be weak or strong depending on whether a weakly unstable edge localized peeling mode is present. No qualitative difference is found between the n = 3 and n = 4 RMP field configurations, in both the linear and non-linear response results.
机译:数值研究了n = 3和n = 4(n为环形模数)共振磁扰动(RMP)场的线性和准线性等离子体响应,该磁场由容器内边缘局部模式控制线圈产生。 ITER 15 MA H模式基线情景。单一流体和流体动力学混合模型都被使用。与该ITER等离子体的流体近似相比,包含漂移动力学效应并不会强烈改变等离子体响应。完整的环形漂移动力学模型也用于计算新古典环形粘性(NTV)扭矩,其结果接近于基于几何简化的解析模型。从低n RMP场计算出的NTV扭矩通常小于此ITER等离子体的共振电磁扭矩。线性响应计算显示出较弱的核心扭结响应,与通常针对当今托卡马克设备的血浆计算出的强烈的扭结响应相反。初始值准线性模拟(包括各种扭矩模型)显示了由于施加的RMP场而导致的边缘附近等离子体环流的局部阻尼。取决于是否存在弱不稳定的边缘局部剥离模式,该局部旋转阻尼可以是弱的或强的。在线性和非线性响应结果中,在n = 3和n = 4 RMP场配置之间没有发现质的差异。

著录项

  • 来源
    《Nuclear fusion》 |2015年第6期|063027.1-063027.14|共14页
  • 作者单位

    CCFE, Culham Science Centre, Abingdon, OX14 3DB, UK,Southwestern Institute of Physics, PO Box 432, Chengdu 610041, China,Department of Earth and Space Science, Chalmers University of Technology, SE-412 96 Gothenburg, Sweden;

    CCFE, Culham Science Centre, Abingdon, OX14 3DB, UK;

    CCFE, Culham Science Centre, Abingdon, OX14 3DB, UK;

    ITER Organization, Route de Vinon-sur-Verdon, CS 90 046, 13067 St Paul-lez-Durance Cedex, France;

    Southwestern Institute of Physics, PO Box 432, Chengdu 610041, China;

    ITER Organization, Route de Vinon-sur-Verdon, CS 90 046, 13067 St Paul-lez-Durance Cedex, France;

    CCFE, Culham Science Centre, Abingdon, OX14 3DB, UK;

    ITER Organization, Route de Vinon-sur-Verdon, CS 90 046, 13067 St Paul-lez-Durance Cedex, France;

    ITER Organization, Route de Vinon-sur-Verdon, CS 90 046, 13067 St Paul-lez-Durance Cedex, France;

    Department of Physics, University of York, Heslington, York, YO10 5DD, UK;

    Department of Physics, University of York, Heslington, York, YO10 5DD, UK;

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

    Princeton Plasma Physics Laboratory, Princeton University, PO Box 451, Princeton, NJ 08543-0451, USA;

  • 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

    momentum flux; RMP fields; single fluid models; MHD-kinetic hybrid models;

    机译:动量通量RMP字段;单流体模型;MHD-动力学混合模型;
  • 入库时间 2022-08-18 00:42:33

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