科技报告详细信息
Steady State Turbulent Transport in Magnetic Fusion Plasmas
Lee, W. W. ; Ethier, S. ; Kolesnikov, R. ; Wang, W. X. ; Tang, W. M.
关键词: ACCELERATION;    ION TEMPERATURE;    SUPERCOMPUTERS;    TOKAMAK DEVICES;    TRANSPORT Computer Simulation;    Transport Phenomena;   
DOI  :  10.2172/960427
RP-ID  :  PPPL-4275
PID  :  OSTI ID: 960427
Others  :  TRN: US0903072
学科分类:原子、分子光学和等离子物理
美国|英语
来源: SciTech Connect
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【 摘 要 】
For more than a decade, the study of microturbulence, driven by ion temperature gradient (ITG) drift instabilities in tokamak devices, has been an active area of research in magnetic fusion science for both experimentalists and theorists alike. One of the important impetus for this avenue of research was the discovery of the radial streamers associated the ITG modes in the early nineties using a Particle-In-Cell (PIC) code. Since then, ITG simulations based on the codes with increasing realism have become possible with the dramatic increase in computing power. The notable examples were the demonstration of the importance of nonlinearly generated zonal flows in regulating ion thermal transport and the transition from Bohm to GyroBoham scaling with increased device size. In this paper, we will describe another interesting nonlinear physical process associated with the parallel acceleration of the ions, that is found to play an important role for the steady state turbulent transport. Its discovery is again through the use of the modern massively parallel supercomputers.
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