低温聚变

P. Dauguet, G. Gistau-Baguer, M. Bonneton, J. Boissin, E. Fauve, Jean Bernhardt, J. Beauvisage, F. Andrieu
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引用次数: 1

摘要

氢聚变发电是满足人类日益增长的能源需求和未来化石燃料替代品的研究技术之一。这项技术已经被研究了30多年,例如,以前建造的实验反应堆Tore Supra、DIII-D和JET。随着ITER的建设开始,下一步将完成“聚变发电”。在这些项目中,需要广泛使用低温系统。液化空气公司作为低温合作伙伴参与了过去和现在建造的大多数聚变反应堆。在本文中,我们将回顾我们交付给Tore Supra, JET, IPR和KSTAR的低温系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CRYOGENICS FOR FUSION
Fusion of Hydrogen to produce energy is one of the technologies under study to meet the mankind raising need in energy and as a substitute to fossil fuels for the future. This technology is under investigation for more than 30 years already, with, for example, the former construction of the experimental reactors Tore Supra, DIII-D and JET. With the construction of ITER to start, the next step to “fusion for energy” will be done. In these projects, an extensive use of cryogenic systems is requested. Air Liquide has been involved as cryogenic partner in most of former and presently constructed fusion reactors. In the present paper, a review of the cryogenic systems we delivered to Tore Supra, JET, IPR and KSTAR will be presented.
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