Physics of CFETR

Physics of CFETR
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DOI:
10.1109/sofe.2013.6635311
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发表时间:
2013-06
期刊:
2013 IEEE 25th Symposium on Fusion Engineering (SOFE)
影响因子:
--
通讯作者:
B. Wan;S. Ding;J. Qian;Guoqiang Li;B. Xiao;Guosheng Xu
B. Wan;S. Ding;J. Qian;Guoqiang Li;B. Xiao;Guosheng Xu
中科院分区:
其他
文献类型:
--
作者:
B. Wan;S. Ding;J. Qian;Guoqiang Li;B. Xiao;Guosheng Xu

文献摘要

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设想以超导磁铁技术为基于Tokamak方法的CFETR可提供200兆瓦的融合功率,并以每年占空比为0.3〜0.5的目标运行。该报告基于零维系统研究,该报告使用当前物理的外推通过考虑工程限制,重点是定性确定设备的工程参数以及基于等离子体性能的不同假设的可能操作模式。
CFETR based on the tokamak approach with superconducting magnet technology is envisioned to provide 200 MW fusion power and operate with a goal of an annual duty factor of 0.3~0.5. This report based on a zero-dimensional system study using extrapolations of current physics by considering engineering constraints, is focused on qualitative determination of the engineering parameters of the device and possible operating modes based on different assumptions of plasma performance.