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Gyrokinetic turbulence simulations of high-beta tokamak and helical plasmas with full-kinetic and hybrid models

机译:使用全运动模型和混合模型对高β托卡马克和螺旋等离子体的运动动力学湍流进行仿真

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摘要

Turbulent transport in high-beta toroidal plasmas is investigated by means of an electromagnetic gyrokinetic model and a newly developed electromagnetic hybrid model consisting of the gyrokinetic equation for ions and drift-Landau-fluid equations for electrons. Full gyrokinetic simulation results for Cyclone base case tokamak and for Large Helical Device (LHD) plasmas are quickly and accurately reproduced by the hybrid simulation. In the kinetic ballooning mode (KBM)-driven turbulence the ion heat and particle fluxes are mainly caused by electrostatic perturbation, and the contribution of magnetic perturbation is small and negative. The electron heat flux is caused by both electrostatic and magnetic perturbations. The numerical solutions satisfy the entropy balance equation, and the entropy is transferred from ions to electrons through electrostatic and magnetic perturbations. An analysis based on the entropy balance equation shows that the zonal structure is produced by magnetic nonlinearity corresponding to the Maxwell stress in the fluid limit but is weakened by the electrostatic one related to the Reynolds stress. A linear analysis on the standard configuration of LHD plasmas shows the suppression of the ion temperature gradient mode by finite-beta effects and the destabilization of KBM at high beta.
机译:通过电磁陀螺动力学模型和新开发的电磁混合模型研究了高β环形等离子体中的湍流传输,该模型由离子的陀螺动力学方程和电子的漂移-朗道流体方程组成。混合模拟可以快速,准确地再现旋风基础案例托卡马克和大型螺旋装置(LHD)等离子体的完整陀螺动力学仿真结果。在动态膨胀模式(KBM)驱动的湍流中,离子热和粒子通量主要由静电扰动引起,而磁扰动的贡献较小且为负。电子热通量是由静电和磁扰动引起的。数值解满足熵平衡方程,并且熵通过静电和磁扰动从离子转移到电子。基于熵平衡方程的分析表明,带状结构是由与流体极限中的麦克斯韦应力相对应的磁性非线性产生的,但由于与雷诺应力有关的静电而减弱了。对LHD等离子体标准配置的线性分析表明,有限β效应可抑制离子温度梯度模式,而高β则可抑制KBM的稳定性。

著录项

  • 来源
    《Nuclear fusion》 |2013年第5期|7.1-7.13|共13页
  • 作者单位

    National Institute for Fusion Science, Toki 509-5292, Japan;

    Japan Atomic Energy Agency, Rokkasho 039-3212, Japan;

    National Institute for Fusion Science, Toki 509-5292, Japan;

    National Institute for Fusion Science, Toki 509-5292, Japan;

    National Institute for Fusion Science, Toki 509-5292, Japan;

  • 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
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