Cite this article:
Xiong Hao, Liu Ming-Hai, Chen Ming, Rao Bo, Chen Jie, Chen Zhao-Quan, Xiao Jin-Shui, Hu Xi-Wei. Radial magnetic field in magnetic confinement deviceJ. Chin. Phys. B, 2015, 24(9): 095202.
| Xiong Hao, Liu Ming-Hai, Chen Ming, Rao Bo, Chen Jie, Chen Zhao-Quan, Xiao Jin-Shui, Hu Xi-Wei. Radial magnetic field in magnetic confinement deviceJ. Chin. Phys. B, 2015, 24(9): 095202. |
Radial magnetic field in magnetic confinement device
-
Abstract
The intrinsic radial magnetic field (Br) in a tokamak is explored by the solution of the Grad-Shafranov equation in axisymmetric configurations through an expansion of the four terms of the magnetic surfaces. It can be inferred from the simulation results that at the core of the device, the tokamak should possess a three-dimensional magnetic field configuration, which could be reduced to a two-dimensional one when the radial position is greater than 0.6a. The radial magnetic field and the amzimuthal magnetic field have the same order of magnitude at the core of the device. These results can offer a reference for the analysis of the plasma instability, the property of the core plasma, and the magnetic field measurement. -
DownLoad: