科技报告详细信息
ITER Core Imaging X-Ray Spectrometer Conceptual Design and Performance Assessment - Phase 2
Beiersdorfer, P ; Wen, J ; Dunn, J ; Morris, K
Lawrence Livermore National Laboratory
关键词: K Shell;    Tritium;    Specifications;    Ambient Temperature;    70 Plasma Physics And Fusion;   
DOI  :  10.2172/1018790
RP-ID  :  LLNL-SR-464953
RP-ID  :  W-7405-ENG-48
RP-ID  :  1018790
美国|英语
来源: UNT Digital Library
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【 摘 要 】

During Phase 2 of our study of the CIXS conceptual design we have tackled additional important issues that are unique to the ITER environment. These include the thermal control of the crystal and detector enclosures located in an environment with a 100-250 C ambient temperature, tritium containment, and the range of crystal and detector movement based on the need for spectral adjustments and the desire to make measurements of colder plasmas. In addressing these issues we have selected a ''Dewar''-type enclosure for the crystals and detectors. Applying realistic view factors for radiant heat and making allowance for conduction we have made engineering studies of this enclosure and showed that the cooling requirements can be solved and the temperature can be kept sufficiently constant without compromising the specification parameters of the CIXS. We have chosen a minimum 3 mm combined thickness of the six beryllium windows needed in a Dewar-type enclosure and showed that a single window of 0.5 mm thickness satisfies tritium containment requirements. For measuring the temperature in cooler ITER plasmas, we have chosen to use the K-shell lines of Fe24+. Iron is the preferred choice because its radiation can be analyzed with the identical CIXS settings used for analyzing the tungsten radiation, i.e., essentially no adjustments besides a simple crystal rotation need to be made. We have, however, included an xy{theta}-drive motor arrangement in our design for fine adjustments and full rotation of the crystal mounts.

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