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DEVELOPMENTS TOWARD FULLY METALLIC ACTIVELY COOLED PLASMA-FACING COMPONENTS FOR THE TUNGSTEN DIVERTOR IN ITER

机译:面向钨分流器的全金属主动冷却等离子组件的发展

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摘要

The evolution toward fully metallic plasma-facing components (PFCs) involves new major challenges in fusion research. For more than 20 years, CEA has focused its experimental studies on actively cooled carbon PFCs. Now, a new step has been taken with the integration of recent technology and physics knowledge for the foreseen implementation of a full-tungsten divertor in Tore Supra (the WEST project) in support of the ITER divertor strategy. To that purpose, various studies dealing with the W environment have been carried out during the past 2 years: analysis of thermal fatigue testing on the latest monoblock designed for ITER divertor targets, including repaired ones; component surface shaping that withstands local particle flux and the effect of leading edges; cumulated transient and steady-state heat loads and their link with the issue of W recrystallization; and acoustic monitoring of the component cooling regimes to prevent critical heat flux events.
机译:向全金属等离子部件(PFC)的演进涉及聚变研究中的新重大挑战。 20多年来,CEA一直将其研究重点放在主动冷却的碳PFC上。现在,已经采取了新的步骤,将最新的技术和物理知识相结合,可以预见在Tore Supra(WEST项目)中使用全钨分流器,以支持ITER分流器策略。为此目的,在过去两年中进行了有关W环境的各种研究:分析为ITER偏滤器靶(包括修复靶)设计的最新单体的热疲劳测试;承受局部颗粒通量和前缘影响的零件表面整形;累积的瞬态和稳态热负荷及其与W重结晶问题的联系;以及组件冷却状态的声学监控,以防止发生严重的热通量事件。

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