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First use of three-dimensional equilibrium, stability and transport calculations for interpretation of ELM triggering with magnetic perturbations in NSTX

机译:首次使用三维平衡,稳定性和输运计算来解释NSTX中电磁扰动引起的ELM触发

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摘要

The application of non-axisymmetric magnetic perturbations has been demonstrated to destabilize edge-localized modes (ELMs) in the National Spherical Torus Experiment. A model 3D equilibrium has been calculated for these experiments using the VMEC code, which assumes nested flux surfaces and therefore that resonant perturbations are shielded. First, a free-boundary equilibrium is calculated using the NSTX coil set, with pressure and current profiles matched to a standard 2D reconstruction, but with up-down symmetry enforced. A new equilibrium is then calculated with the n = 3 field applied at a level consistent with experiment. This equilibrium is then used as the basis of further calculations using codes developed for analysis of stellarator plasmas. The neoclassical transport due to the 3D fields is calculated to be small compared with the experimental transport rates. Initial stability analysis has been performed, and indicates a modest degradation in ballooning stability with 3D fields applied. A new 3D equilibrium is also calculated using the SIESTA code, which allows for the formation of islands and stochastic regions. A comparison of the field structure between the SIESTA calculation and the assumption of fully penetrated vacuum perturbation indicates smaller island sizes and very small stochastic transport in the SIESTA case.
机译:在国家球形圆环实验中,非轴对称磁扰动的应用已证明会使边缘定位模式(ELM)不稳定。已经使用VMEC代码为这些实验计算了模型3D平衡,该模型假设嵌套的通量表面,因此屏蔽了共振扰动。首先,使用NSTX线圈组计算自由边界平衡,压力和电流曲线与标准2D重建匹配,但强制上下对称。然后以与实验一致的水平应用n = 3场计算出新的平衡。然后,使用为分析恒星等离子体而开发的代码,将该平衡用作进一步计算的基础。与实验传输速率相比,由于3D场导致的新古典传输被计算为较小。进行了初步的稳定性分析,结果表明,在应用3D场的情况下,热膨胀稳定性会有所下降。还可以使用SIESTA代码计算新的3D平衡,从而可以形成孤岛和随机区域。 SIESTA计算与假设完全穿透的真空扰动之间的场结构比较表明,在SIESTA情况下,岛的大小较小,随机迁移量很小。

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  • 来源
    《Nuclear fusion》 |2012年第5期|p.054004.1-054004.10|共10页
  • 作者单位

    Oak Ridge National Laboratory, PO Box 2008, Oak Ridge, TN 37831, USA;

    Oak Ridge National Laboratory, PO Box 2008, Oak Ridge, TN 37831, USA;

    Departamento de Fisica, Universidad de Carlos de Madrid, Leganes 28021, Spain;

    Oak Ridge National Laboratory, PO Box 2008, Oak Ridge, TN 37831, USA;

    Oak Ridge National Laboratory, PO Box 2008, Oak Ridge, TN 37831, USA;

    Oak Ridge National Laboratory, PO Box 2008, Oak Ridge, TN 37831, USA;

    Oak Ridge National Laboratory, PO Box 2008, Oak Ridge, TN 37831, USA;

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

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

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

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

    Oak Ridge National Laboratory, PO Box 2008, Oak Ridge, TN 37831, USA;

    Columbia University, 116th Street and Broadway, New York, NY 10027, 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);
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  • 正文语种 eng
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