Progress of China's TBM tritium technology

Progress of China's TBM tritium technology
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DOI:
10.1016/j.fusengdes.2012.02.122
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发表时间:
2012-08
影响因子:
1.7
通讯作者:
D. Luo;J. Song;Huang Guoqiang;C. Chen;Huang Zhiyong;Xiaojun Deng;C. Qin;X. Qian;Guikai Zhang
D. Luo;J. Song;Huang Guoqiang;C. Chen;Huang Zhiyong;Xiaojun Deng;C. Qin;X. Qian;Guikai Zhang
中科院分区:
工程技术3区
文献类型:
--
作者:
D. Luo;J. Song;Huang Guoqiang;C. Chen;Huang Zhiyong;Xiaojun Deng;C. Qin;X. Qian;Guikai Zhang

文献摘要

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相似文献

TES、CPS和TMS是TBM运行的重要辅助系统,因为大部分的试验数据都是通过这些系统获得的。本文介绍了这些系统的研究与开发进展。与TES的原始设计相比,氢同位素分离子系统被集成到TES中以精确测量氚以及更少的氚污染氢释放到环境中。根据计算结果设计了一个测试的TES组件。实验结果表明,该设计是可行的。
The TES, CPS and TMS are very important ancillary systems for operation of the TBM because most of the TBM experiment data will be got by operation of these systems. This paper introduces the progress of the R&D on these systems. A hydrogen isotope separation subsystem is integrated into the TES for accurate measurement of tritium as well as less tritium contamination hydrogen release into the environment compare with the original design of the TES. A tested assembly of a TES based on the results has been designed based on the results. Experiment results on the components show that the present design is feasible.