Zobrazeno 1 - 8
of 8
pro vyhledávání: '"Chuanjia Zhang"'
Publikováno v:
IEEE Transactions on Applied Superconductivity. 31:1-5
Superfluid helium has been used for cooling superconducting magnets in nuclear fusion and high energy physics. This paper presents a simplified final stage process of 1.8 K superfluid helium cryogenic system and its key component sub-atmospheric heat
Publikováno v:
Fusion Engineering and Design. 180:113165
Publikováno v:
Fusion Engineering and Design. 179:113132
Autor:
Qiyong Zhang, Zhifan Liu, Xiaofei Lu, Zhigang Zhu, Xiaogang Liu, Pengcheng Yang, Chuanjia Zhang, Fan Wu, Zhiwei Zhou
Publikováno v:
Fusion Engineering and Design. 177:113064
Publikováno v:
2020 IEEE International Conference on Applied Superconductivity and Electromagnetic Devices (ASEMD).
The widespread application of superconducting magnets has greatly promoted the technical development of cryogenic engineering technology. For the engineering requirements of 100 kW @ 4.5 K ultra-large helium cryogenic system and 1.8K superfluid heliu
Autor:
Nan Shi, D. Zhao, Shifeng Mao, Yixuan Zhou, Guoliang Xu, Chong-Yu Xu, Vincent Chan, Minyou Ye, Chuanjia Zhang
Publikováno v:
Fusion Engineering and Design. 136:931-935
For the future fusion reactor, where no intrinsic radiative impurity, like carbon, is allowed to exist, impurity seeding is an indispensable way to exhaust the power across the separatrix. Meanwhile, the impurity concentration has to be limited in or
Autor:
Yiwen Zong, Pengcheng Yang, Chuanjia Zhang, Zhigang Zhu, Shixiong Chen, Qiyong Zhang, Damao Yao
Publikováno v:
Fusion Engineering and Design. 173:112798
In a large-scale helium cryogenic system, a tank is used to store liquid helium. To predict the cooling behaviour and thermal performance of the tank during liquid helium filling, a simple and efficient computational fluid dynamics methodology was us
Autor:
Xuebing Peng, Shifeng Mao, Minyou Ye, Zhe Xing, Zhengping Luo, Bin Chen, Haosheng Wu, Chuanjia Zhang
Publikováno v:
Fusion Engineering and Design. :1119-1122
China Fusion Engineering Test Reactor (CFETR) is now in conceptual design phase. CFETR is proposed as a good complement to ITER for demonstrating of fusion energy. Divertor is a crucial component which faces the plasmas and handles huge heat power fo