ITER诊断挑战

M. Walsh, P. Andrew, R. Barnsley, L. Bertalot, R. Boivin, D. Bora, R. Bouhamou, S. Ciattaglia, A. Costley, G. Counsell, M. Direz, J. Drevon, A. Encheva, T. Fang, M. von Hellermann, D. Johnson, J. Kim, Y. Kusama, H. G. Lee, B. Levesy, A. Martin, P. Maquet, K. Okayama, R. Reichle, K. Patel, C. S. Pitcher, A. Prakash, S. Simrock, N. Taylor, V. Udintsev, Y. Utin, P. Vasu, G. Vayakis, E. Veshchev, B. Schunke, C. Walker, C. Watts, A. Zvonkov
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引用次数: 22

摘要

ITER将探索目前托卡马克没有的等离子体参数包络。这将需要遵循此信封的一组诊断。为了以可靠和稳健的方式实施这些诊断,需要在许多领域发展当前的技术,使其适用于ITER:它们需要在ITER环境中可操作,并满足物理和工程要求。在某些情况下,将需要利用新技术。虽然在这方面已经进行了许多工作,但要使这一制度得到执行,还需要做大量的工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ITER diagnostic challenges
ITER will explore a plasma parameter envelope currently not available in tokamaks. This will require a set of diagnostics that can follow this envelope. To implement these diagnostics in a reliable and robust way requires development of current techniques in many areas to make them applicable to ITER: they need to be operable in the ITER environment and satisfy the physics and engineering requirements. In some cases, the exploitation of new techniques will be required. While much work has been carried out in this area, significant further work remains to bring the system to implementation.
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