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Qualification, commissioning and in situ monitoring of high heat flux plasma facing components

机译:高热通量等离子体表面组件的鉴定,调试和现场监控

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摘要

Up-to-date development of actively cooled high heat flux (HHF) plasma facing components (PFC) prototypes only allows reduced margins with regards to the ITER thermal requirements. Additionally, perfect quality cannot be ensured along series manufacturing: the presence of flaws which impair the heat transfer capability of the component, in particular at the interface armour/heat sink appears to be statistically unavoidable.rnIn order to ensure a successful series production, a qualification methodology of actively cooled high heat flux plasma facing components is proposed. Secondly, advanced non-destructive techniques developed for HHF PFC commissioning are detailed with definition of acceptance criteria. Finally, innovative diagnostics for in situ monitoring during plasma operations or tokamak shutdowns are investigated in order to prevent immediate damage (safety monitoring); or evaluate component degradation (health monitoring). This work takes into account the relevance to Tore Supra, and is applied to W7X and ITER Divertor HHF PFC.
机译:主动冷却的高热通量(HHF)等离子组件(PFC)原型的最新开发仅允许减少ITER热要求方面的余量。此外,在批量生产过程中不能保证完美的质量:从统计学上讲,不可避免地存在缺陷,这些缺陷会损害组件的传热能力,特别是在界面铠装/散热器处。为确保成功的批量生产,提出了主动冷却的高热通量等离子体面对部件的鉴定方法。其次,详细介绍了用于HHF PFC调试的先进无损技术,并定义了接受标准。最后,研究了在等离子体操作或托卡马克停机期间进行现场监测的创新诊断方法,以防止立即损坏(安全监测);或评估组件退化(运行状况监视)。这项工作考虑了与Tore Supra的相关性,并应用于W7X和ITER Divertor HHF PFC。

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