科技报告详细信息
Nonlinear and Non-ideal Effects on FRC Stability
Belova, E.V. ; Davidson, R.C. ; Ji, H. ; Yamada, M.
Princeton University. Plasma Physics Laboratory.
关键词: Stabilization Field-Reversed Configurations;    70 Plasma Physics And Fusion Technology;    Kinetics;    Simulation;    Spin;   
DOI  :  10.2172/809930
RP-ID  :  PPPL-3759
RP-ID  :  AC02-76CH03073
RP-ID  :  809930
美国|英语
来源: UNT Digital Library
PDF
【 摘 要 】

New computational results are presented which advance the understanding of the stability properties of the Field-Reversed Configuration (FRC). We present results of hybrid and two-fluid (Hall-MHD) simulations of prolate FRCs in strongly kinetic and small-gyroradius, MHD-like regimes. The n = 1 tilt instability mechanism and stabilizing factors are investigated in detail including nonlinear and resonant particle effects, particle losses along the open field lines, and Hall stabilization. It is shown that the Hall effect determines the mode rotation and change in the linear mode structure in the kinetic regime; however, the reduction in the growth rate is mostly due to the finite Larmor radius effects. Resonant particle effects are important in the large gyroradius regime regardless of the separatrix shape, and even in cases when a large fraction of the particle orbits are stochastic. Particle loss along the open field lines has a destabilizing effect on the tilt mode and contributes to the ion spin up in toroidal direction. The nonlinear evolution of unstable modes in both kinetic and small-gyroradius FRCs is shown to be considerably slower than that in MHD simulations. Our simulation results demonstrate that a combination of kinetic and nonlinear effects is a key for understanding the experimentally observed FRC stability properties.

【 预 览 】
附件列表
Files Size Format View
809930.pdf 4104KB PDF download
  文献评价指标  
  下载次数:19次 浏览次数:44次