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Simulation of Alfven eigenmodes destabilized by energetic electrons in tokamak plasmas

机译:由精力充沛的电子在托卡马克等离子体中稳定的Alfven eigenmodes模拟

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摘要

Alfven eigenmodes (AEs) driven by energetic electrons were investigated via hybrid simulations of an MHD fluid interacting with energetic electrons. The investigation focused on AEs with the toroidal number n = 4. Both energetic electrons with centrally peaked beta profile and off-axis peaked profile are considered. For the centrally peaked energetic electron beta profile case, a toroidal Alfven eigenmode (TAE) propagating in the electron diamagnetic drift direction is found. The mode is mainly driven by deeply trapped energetic electrons. It is also found that a few passing energetic electrons spatially localized around rational surfaces can resonate with the mode. For the off-axis peaked energetic electron beta profile case, an AE propagating in the ion diamagnetic drift direction is found when a q-profile with weak magnetic shear is adopted. The destabilized mode is an elliptical-Alfven-eigenmode-type (EAE-type) mode which has a spatial profile peaking at the rational surface and a frequency close to the second Alfven frequency gap. It is found that passing energetic electrons and barely trapped energetic electrons are responsible for this EAE-type mode destabilization. The saturation levels are compared for a TAE with the same linear growth rate among energetic electron driven mode and energetic ion driven mode with isotropic and anisotropic velocity space distributions. The saturation level of TAE driven by trapped energetic electrons is comparable to that driven by energetic electrons with isotropic velocity space distribution where the contribution of trapped particles is dominant. It is found that the trapped energetic ion driven TAE has a larger saturation level than the passing energetic ion driven TAE, which indicates the difference in particle trapping by the TAE between trapped and passing energetic ions.
机译:通过与能量电子相互作用的MHD流体的混合模拟来研究由能量电子驱动的Alfven特征模(AES)。考虑了具有环形数N = 4的AES的研究。考虑了具有中央峰值β曲线和偏离轴峰值轮廓的两种能量电子。对于中心峰值的能量电子β型材,发现在电子抗磁漂移方向上传播的环形Alfven特征模(TAE)。该模式主要由深层捕获的能量电子驱动。还发现,少数通过在合理表面周围定位的少量通过能量电子可以与模式产生共振。对于轴外峰值能量电子β型外壳,当采用弱磁性剪切的Q型材时,发现在离子抗磁漂移方向上传播的AE。不稳定的模式是椭圆形 ​​- alfven-eigenmode(eae型)模式,其在合理表面处具有峰值的空间轮廓和靠近第二ALFven频率差距的频率。发现传递精力充沛的电子和勉强被困的能量电子负责这种EAE型模式稳定化。将饱和水平与具有各向数和各向异性速度空间分布的能量电子驱动模式和能量离子驱动模式中具有相同的线性生长速率的TAE。被捕获的能量电子驱动的TAE的饱和水平与由能量电子驱动的具有具有各向同性速度空间分布的能量电子驱动,其中捕获粒子的贡献是显性的。发现捕获的能量离子驱动的TAE具有比通过的饱和离子驱动的Tae更大的饱和水平,这表明捕获和通过能量离子之间的颗粒捕获的差异。

著录项

  • 来源
    《Nuclear fusion》 |2020年第11期|112012.1-112012.11|共11页
  • 作者单位

    Key Laboratory of Materials Modification by Laser Ion and Electron Beams (Ministry of Education) School of Physics Dalian University of Technology Dalian 116024 China;

    National Institute for Fusion Science National Institutes of Natural Sciences Toki 509-5292 Japan;

    National Institute for Fusion Science National Institutes of Natural Sciences Toki 509-5292 Japan;

    Key Laboratory of Materials Modification by Laser Ion and Electron Beams (Ministry of Education) School of Physics Dalian University of Technology Dalian 116024 China;

  • 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

    energetic electron; energetic ion; Alfven eigenmode; wave-particle interaction; resonance condition;

    机译:精力充沛的电子;精力充沛的离子;alfven eigenmode;波粒子相互作用;共振条件;

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