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The Study of Heat Pulse Propagation on HT—7 Tokamak
引用本文:许祎,胡立群,万宝年,石跃江.The Study of Heat Pulse Propagation on HT—7 Tokamak[J].等离子体科学和技术,2003,5(2):1695-1702.
作者姓名:许祎  胡立群  万宝年  石跃江
作者单位:[1]InstituteofPlasmaPhysics,ChineseAcademyofSciences,Hefei230031 [2]InstituteofPlasmaPhysics,ChineseAcademyofSciences,Hefei230031,China
基金项目:The project supported by Meg-Science Engineering Item of the Chinese Academy of Sciences
摘    要:The propagation of heat pulses originating from sawtooth activity has been studied on the HT-7 tokamak.Two theoretical models are used for determining electron heat diffusivity from the experimental data measured by a diagnostic system of soft x-ray diode-array.The results show that one model caaled dipole model is more suitable for HT-7 tokamak.In order to improve the signal-to-noise(S/N) ratio of the original signals,over a few tens of sawteeth are averaged to generatc nicc wavcforms.The apace-time evolution is found to be diffusive in character,which is consistent with the theoretical model.The electron heat diffusivity determined from heat pulse propagation is larger than determined from background plasma power balance.The variation of Xe in different discharge phases has been also discussed.

关 键 词:HT-7  托卡马克  等离子体  双极子  加热

The Study of Heat Pulse Propagation on HT-7 Tokamak
XU Yil HU Li-qun WAN Bao-nianSHI Yue-jiangInstitute of Plasma Physics,Chinese Academy of Sciences,Hefei ,China.The Study of Heat Pulse Propagation on HT-7 Tokamak[J].Plasma Science & Technology,2003,5(2):1695-1702.
Authors:XU Yil HU Li-qun WAN Bao-nianSHI Yue-jiangInstitute of Plasma Physics  Chinese Academy of Sciences  Hefei  China
Affiliation:XU Yil HU Li-qun WAN Bao-nianSHI Yue-jiangInstitute of Plasma Physics,Chinese Academy of Sciences,Hefei 230031,China
Abstract:The propagation of heat pulses originating from sawtooth activity has been studied on the HT-7 tokamak. Two theoretical models are used for determining electron heat diffusivity from the experimental data measured by a diagnostic system of soft x-ray diode-array. The results show that one model called 'dipole model' is more suitable for HT-7 tokamak. In order to improve the signal-to-noise (S/N) ratio of the original signals, over a few tens of sawteeth are averaged to generate nice waveforms. The space-time evolution is found to be diffusive in character, which is consistent with the theoretical model. The electron heat diffusivity determined from heat pulse propagation is larger than that determined from background plasma power balance. The variation of Xe in different discharge phases has been also discussed.
Keywords:tokamak  electron heat diffusivity  monopole  dipole
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