• High Power Laser and Particle Beams
  • Vol. 31, Issue 8, 86001 (2019)
Tong Wei1、2, Song Zhiquan1, Fu Peng1, Li Hua1, Zhang Xiuqing1, and Wang Shusheng1、2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.11884/hplpb201931.190050 Cite this Article
    Tong Wei, Song Zhiquan, Fu Peng, Li Hua, Zhang Xiuqing, Wang Shusheng. Influence analysis of discharge branch on the reliability of quench protection system in CFETR[J]. High Power Laser and Particle Beams, 2019, 31(8): 86001 Copy Citation Text show less

    Abstract

    China fusion engineering test reactor(CFETR) is a magnetic confinement fusion device designed, which used high current magnetic field in the superconducting coil to generate high intensity magnetic field, thus constraining the high-temperature plasma to conduct fusion experiments. Therefore, the reliability of quench protection system, especially DC protection switch, is very important for the protection of the superconducting coil. However, the reliability of the DC protection switch is affected by many factors, including the action time, the speed of arc extinguishing, the current drop rate of the switch and the voltage rise rate around zero-crossing point. In the literature on quench protection system design of Tokamak devices such as international thermonuclear experimental reactor (ITER), the influence of circuit stray parameters on switch reliability is rarely described, and the influence of discharge circuit to quench protection system is less. However, the larger stray parameters of discharge circuit will greatly reduce the operational reliability of the DC protection switch and even lead to failure and damage of the switch. In this paper, the influence of the parameters of the discharge branch on the reliability of the quench protection system in CFETR is analyzed. Firstly, the influence factors and the influence trend are analyzed by theoretical calculation, and the correctness of the theoretical analysis of the current and voltage of each branch is carried out in a set of simulations. The simulation results show that when the stray inductance of discharge branch is large, the turnoff parameters of each branch will be greatly impacted, which directly affects the reliability quench protection system in CFETR.
    Tong Wei, Song Zhiquan, Fu Peng, Li Hua, Zhang Xiuqing, Wang Shusheng. Influence analysis of discharge branch on the reliability of quench protection system in CFETR[J]. High Power Laser and Particle Beams, 2019, 31(8): 86001
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