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Rotation and neoclassical ripple transport in ITER

机译:ITER中的旋转和新古典波纹传输

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摘要

Neoclassical transport in the presence of non-axisymmetric magnetic fields causes a toroidal torque known as neoclassical toroidal viscosity (NTV). The toroidal symmetry of ITER will be broken by the finite number of toroidal field coils and by test blanket modules (TBMs). The addition of ferritic inserts (FIs) will decrease the magnitude of the toroidal field ripple. 3D magnetic equilibria in the presence of toroidal field ripple and ferromagnetic structures are calculated for an ITER steady-state scenario using the variational moments equilibrium code (VMEC). Neoclassical transport quantities in the presence of these error fields are calculated using the stellarator Fokker-Planck iterative neoclassical conservative solver (SFINCS). These calculations fully account for E _r, flux surface shaping, multiple species, magnitude of ripple, and collisionality rather than applying approximate analytic NTV formulae. As NTV is a complicated nonlinear function of E _r, we study its behavior over a plausible range of E _r. We estimate the toroidal flow, and hence E _r, using a semi-analytic turbulent intrinsic rotation model and NUBEAM calculations of neutral beam torque. The NTV from the ripple dominates that from lower n perturbations of the TBMs. With the inclusion of FIs, the magnitude of NTV torque is reduced by about 75% near the edge. We present comparisons of several models of tangential magnetic drifts, finding appreciable differences only for superbanana-plateau transport at small E _r. We find the scaling of calculated NTV torque with ripple magnitude to indicate that ripple-trapping may be a significant mechanism for NTV in ITER. The computed NTV torque without ferritic components is comparable in magnitude to the NBI and intrinsic turbulent torques and will likely damp rotation, but the NTV torque is significantly reduced by the planned ferritic inserts.
机译:在存在非轴对称磁场的情况下,新古典运输会产生称为新古典环形粘度(NTV)的环形扭矩。有限数量的环形场线圈和测试毯模块(TBM)将破坏ITER的环形对称性。铁素体插入物(FIs)的添加将减小环形场纹波的幅度。使用变矩平衡码(VMEC),针对ITER稳态场景,计算了存在环形场纹波和铁磁结构时的3D磁平衡。使用恒星器Fokker-Planck迭代新古典保守求解器(SFINCS)计算存在这些误差字段时的新古典运输量。这些计算完全考虑了E_r,通量表面整形,多个种类,波纹幅度和碰撞性,而不是应用近似的解析NTV公式。由于NTV是E _r的复杂非线性函数,因此我们在E _r的合理范围内研究其行为。我们使用半解析湍流固有旋转模型和中性梁扭矩的NUBEAM计算来估算环流,从而估算E _r。来自纹波的NTV占主导地位的是TBM的较低n扰动。通过包含FI,NTV扭矩的大小在边缘附近降低了约75%。我们介绍了几种切向磁漂移模型的比较,发现仅在小E _r的超级香蕉高原运输中存在明显差异。我们发现计算出的NTV转矩随脉动幅度的变化比例表明,陷波可能是ITER中NTV的重要机制。计算出的不含铁素体成分的NTV扭矩的大小与NBI和固有湍流扭矩相当,并且可能会抑制旋转,但是通过计划的铁素体刀片,NTV扭矩会大大降低。

著录项

  • 来源
    《Nuclear fusion》 |2017年第11期|116044.1-116044.14|共14页
  • 作者单位

    Department of Physics, University of Maryland, College Park, MD, United States;

    Institute for Research in Electronics and Applied Physics, University of Maryland, College Park, MD, United States;

    Princeton Plasma Physics Laboratory, Princeton, NJ, United States;

    Oak Ridge National Laboratory, Oak Ridge, TN, United States;

    Max-Planck-Institut für Plasmaphysik, Greifswald, Germany;

    Department of Physics, University of Maryland, College Park, MD, United States,Institute for Research in Electronics and Applied Physics, University of Maryland, College Park, MD, United States;

  • 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

    3D equilibrium; neoclassical toroidal viscosity; tokamak;

    机译:3D平衡;新古典环形粘度托卡马克;
  • 入库时间 2022-08-18 00:41:37

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