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Critical heat flux analysis and R&D for the design of the ITER divertor

机译:ITER分流器设计的关键热通量分析和研发

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The vertical target and dump target of the ITER divertor have to be designed for high heat fluxes (up to 20 MW/m~2 overapprox=10 s). Accommodation of such high heat fluxes gives rise to several issues, including the critical heat flux (CHF) margin which is a key requirement influencing the choice of cooling channel geometry and coolant conditions. An R&D programme was evolved to address the overall CHF issue and 15to help focus the design. It involved participation of the four ITER home teams and has been very successful in substantially expanding the CHF data base for one-sided heating and in providing more accurate experimental measurements of pressure drop (and derived correlations) for these geometries. This paper describes the major R&D results and the design analysis performed in converging on a choice of reference configuration and parameters which resulted in a CHF margin of approx=1.4 or more for all divertor components.
机译:ITER分流器的垂直目标和排放目标必须设计为具有较高的热通量(最高20 MW / m〜2,大约= 10 s)。如此高的热通量的调节引起了若干问题,包括临界热通量(CHF)裕度,这是影响冷却通道几何形状和冷却剂条件选择的关键要求。研发计划旨在解决整个瑞士法郎问题,并制定了15个计划以帮助集中设计。它涉及四个ITER主队的参与,并且在极大地扩展单侧加热的CHF数据库以及提供针对这些几何形状的压降(及相关系数)的更精确实验测量方面非常成功。本文介绍了主要的R&D结果以及在选择参考配置和参数时进行的设计分析,这些参考配置和参数导致所有分流器组件的CHF余量约为1.4或更高。

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