科技报告详细信息
Electron Energy Confinement for HHFW Heating and Current Drive Phasing on NSTX
Hosea, J.C. ; Bernabei, S. ; Biewer, T. ; LeBlanc, B. ; Phillips, C.K. ; Wilson, J.R. ; Stutman, D. ; Ryan, P. ; Swain, D.W.
Princeton University. Plasma Physics Laboratory.
关键词: Spherical Torus;    Heating;    Heating, Icrf;    Excitation;    70 Plasma Physics And Fusion Technology;   
DOI  :  10.2172/839537
RP-ID  :  PPPL-4070
RP-ID  :  AC02-76CH03073
RP-ID  :  839537
美国|英语
来源: UNT Digital Library
PDF
【 摘 要 】

Thomson scattering laser pulses are synchronized relative to modulated HHFW power to permit evaluation of the electron energy confinement time during and following HHFW pulses for both heating and current drive antenna phasing. Profile changes resulting from instabilities require that the total electron stored energy, evaluated by integrating the midplane electron pressure P(sub)e(R) over the magnetic surfaces prescribed by EFIT analysis, be used to derive the electron energy confinement time. Core confinement is reduced during a sawtooth instability but, although the electron energy is distributed outward by the sawtooth, the bulk electron energy confinement time is essentially unaffected. The radial deposition of energy into the electrons is noticeably more peaked for current drive phasing (longer wavelength excitation) relative to that for heating phasing (shorter wavelength excitation) as is expected theoretically. However, the power delivered to the core plasma is reduced consider ably for the current drive phasing, indicating that surface/peripheral damping processes play a more important role for this case.

【 预 览 】
附件列表
Files Size Format View
839537.pdf 2843KB PDF download
  文献评价指标  
  下载次数:21次 浏览次数:16次