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Dynamics of reversed shear Alfven eigenmode and energetic particles during current ramp-up

机译:电流斜坡期间逆转剪切Alfven特征模型和能量粒子的动态

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摘要

Hybrid MHD-gyrokinetic code simulations are used to investigate the dynamics of frequency sweeping reversed shear Alfven eigenmode (RSAE) strongly driven by energetic particles (EPs) during plasma current ramp-up in a conventional tokamak configuration. A series of weakly reversed shear equilibria representing time slices of long timescale MHD equilibrium evolution is considered, where the self-consistent RSAE-EP resonant interactions on the short timescale are analyzed in detail. Both linear and non-linear RSAE dynamics are shown to be subject to the non-perturbative effect of EPs by maximizing wave-EP power transfer. In the linear stage, EPs induce evident mode structure and frequency shifts; meanwhile, RSAE saturates by radial decoupling with resonant EPs due to weak magnetic shear, and gives rise to global EP convective transport and fast frequency chirping in the non-adiabatic regime. The spatiotemporal scales of phase space wave-EP interactions are characterized by the perpendicular wavelength and wave-particle trapping time. The simulations provide insights into general as well as specific features of the RSAE spectra and EP transport in experimental observations, and illustrate the fundamental physics of wave-EP resonant interaction with the interplay of the magnetic geometry, plasma non-uniformity and non-perturbative EPs. Possible application for understanding the non-adiabatic frequency chirping as convective and relaxation branches is also discussed.
机译:Hybrid MHD-Gyrokinetic代码仿真用于研究在传统的TOKAMAK配置中的等离子体电流升压期间由能量粒子(EPS)在常规TOKAMAK配置中强烈地由能量颗粒(EPS)强烈驱动的频率扫描的动力学。考虑了一系列弱逆转的剪切平衡,代表了长时间的长时间MHD平衡进化的时间片,其中详细分析了短时间的自我一致的RSAE-EP共振相互作用。线性和非线性RSAE动力学都被显示为通过最大化波-POW电源转移来受EPS的非扰动效果。在线性阶段,EPS诱导明显的模式结构和频移;同时,由于磁力剪切弱,RSAE通过径向去耦,通过阳性剪切引起的共振eps,并导致非绝热制度的全球EP对流传输和快速啁啾。相位空间波 - EP相互作用的时空缩度的特征在于垂直波长和波粒捕获时间。该模拟提供了一般的洞察力以及在实验观察中的RSAE光谱和EP运输的具体特征,并说明了与磁性几何,等离子体非均匀性和非扰动EPS的相互作用的波-EP共振相互作用的基本物理。还讨论了理解非绝热频率啁啾作为对流和放松分支的可能应用。

著录项

  • 来源
    《Nuclear fusion》 |2020年第12期|126032.1-126032.19|共19页
  • 作者单位

    Key Laboratory of Optoelectronic Devices and Systems of Ministry of Education and Guangdong Province College of Physics and Optoelectronic Engineering Shenzhen University Shenzhen 518060 China Advanced Energy Research Center Shenzhen University Shenzhen 518060 China Institute for Fusion Theory and Simulation and Department of Physics Zhejiang University Hangzhou 310027 China;

    Institute for Fusion Theory and Simulation and Department of Physics Zhejiang University Hangzhou 310027 China;

    Institute for Fusion Theory and Simulation and Department of Physics Zhejiang University Hangzhou 310027 China ENEA Fusion and Nuclear Safety Department C. R. Frascati Via E. Fermi 45 00044 Frascati (Roma) Italy;

    ENEA Fusion and Nuclear Safety Department C. R. Frascati Via E. Fermi 45 00044 Frascati (Roma) Italy;

    ENEA Fusion and Nuclear Safety Department C. R. Frascati Via E. Fermi 45 00044 Frascati (Roma) Italy;

  • 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 particles; reversed shear Alfven eigenmode; multi-timescale dynamics; hybrid simulation;

    机译:精力充沛的粒子;逆转剪切alfven eigenmode;多时间段态动态;混合模拟;

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