Modulated Phase Lag Relations to Determine the Scaling Law of the Electron Thermal Conductivity in Tokamak
XU Yan, WANG Long, ZHENG Shaobai, QI Xiazhi
Institute of Physics, Academia Sinica, Beijing 100080
Modulated Phase Lag Relations to Determine the Scaling Law of the Electron Thermal Conductivity in Tokamak
XU Yan;WANG Long;ZHENG Shaobai;QI Xiazhi
Institute of Physics, Academia Sinica, Beijing 100080
关键词 :
52.50.-b ,
52.70.La
Abstract : We propose a method to determine the scaling law of the electron thermal conductivity x0 e Teλ e with modulating heat pulses. Relation between temperature phase lag and parameters (x0 e , λ) is established, from which the electron thermal conductivity in center region of CT-6B tokamak is determined.
Key words :
52.50.-b
52.70.La
出版日期: 1992-05-01
:
52.50.-b
(Plasma production and heating)
52.70.La
(X-ray and γ-ray measurements)
引用本文:
XU Yan;WANG Long;ZHENG Shaobai;QI Xiazhi. Modulated Phase Lag Relations to Determine the Scaling Law of the Electron Thermal Conductivity in Tokamak[J]. 中国物理快报, 1992, 9(5): 247-249.
XU Yan, WANG Long, ZHENG Shaobai, QI Xiazhi. Modulated Phase Lag Relations to Determine the Scaling Law of the Electron Thermal Conductivity in Tokamak. Chin. Phys. Lett., 1992, 9(5): 247-249.
链接本文:
https://cpl.iphy.ac.cn/CN/
或
https://cpl.iphy.ac.cn/CN/Y1992/V9/I5/247
[1]
JIANG Shao-En;SUN Ke-Xu; DING Yong-Kun;HUANG Tian-Xuan;CUI Yan-Li;CHEN Jiu-Sen. Radiation Temperature Scaling Law for Gold Hohlraum Heated with Lasers at 0.35mm Wavelength [J]. 中国物理快报, 2005, 22(9): 2328-2331.
[2]
XU Rong-Kun;LI Zheng-Hong;NING Jia-Min;GUO Cun;XU Ze-Ping;YANG Jian-Lun;LI Lin-Bo;XIA Guang-Xin;HUA Xin-Sheng;DING Ning;LIU Qiang;GU Yuan-Chao;E. V. Grabovsky;G. M. Oleynic;S. L. Nedoseev;V. V. Alexandrov;K. N.Mitrofanov;M. V. Zurin;G. S. Volkov;I. A. Porofeev;I. N. Frolov;V. P. Smirnov. X-Ray Radiation Characteristics of Nested-Wire Array Implosion in Sino-Russian Joint Z-pinch Experiments on Angara-5-1 [J]. 中国物理快报, 2005, 22(2): 413-415.
[3]
MENG Xian;PAN Wen-Xia;WU Cheng-Kang. Heat Transfer from a dc Laminar Plasma-Jet Flow to Different Solid Surfaces [J]. 中国物理快报, 2003, 20(5): 685-687.
[4]
TAO Ye-Zheng;LI Ye-Jun;TANG Xiu-Zhang;ZHANG Hai-Feng;SHAN Yu-Sheng;WANG Nai-Yan. Generation of Hot Electron at Higher Temperature from Solid
Plasma with a Moderate-Intensity Femtosecond Laser [J]. 中国物理快报, 2002, 19(7): 956-958.
[5]
YANG Jin-Wei;CAO Jian-Yong;ZENG Qing-Xi;ZHANG Wei;TANG Nian-Yi;DONG Jia-Fu;DENG Zhong-Chao;XIAO Zheng-Gui;YAO Liang-Hua. Avalanche Phenomenon of Runaway Electrons During Additional Fueling [J]. 中国物理快报, 2002, 19(2): 230-232.
[6]
SHI Yue-Jiang; WAN Bao-Nian. Energy Resolution Effects on Plasma Electron Temperature Measurements by Soft X-Ray Pulse-Height-Analysis [J]. 中国物理快报, 2001, 18(4): 562-563.
[7]
LIU Timon Cheng-Yi;GUO Hong;FU Xi-Quan;HU Wei;YU Song. Maxwell-Schrödinger Equation for X-Ray Laser Propagation and
Interferometry Measurement of Plasma Electron Density [J]. 中国物理快报, 2001, 18(11): 1490-1492.
[8]
CHEN Yanping. A POSSIBLE HEATING MECHANISM AT DOWN-SHIFTED CYCLOTRON FREQUENCY IN THE CT-6B TOKAMAK
[J]. 中国物理快报, 1990, 7(4): 177-180.