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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Physics basis and design of the ITER plasma-facing components
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Physics basis and design of the ITER plasma-facing components

机译:ITER等离子组件的物理基础和设计

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In ITER, as in any tokamak, the first wall and divertor plasma-facing components (PFC) must provide adequate protection of in-vessel structures, sufficient heat exhaust capability and be compatible with the requirements of plasma purity. These functions take on new significance in ITER, which will combine long pulse, high power operation with severe restrictions on permitted core impurity concentrations and which, in addition, will produce transient energy loads on a scale unattainable in today's devices. The current ITER PFC design has now reached a rather mature stage following the 2007 ITER Design Review. This paper presents the key elements of the design, reviews the physics drivers, essentially thermal load specifications, which have defined the concept and discusses a selection of material and design issues.
机译:在ITER中,如同在任何托卡马克中一样,第一壁和面向分流器的等离子组件(PFC)必须提供对船内结构的充分保护,足够的散热能力,并与等离子纯度要求兼容。这些功能在ITER中具有新的意义,它将长脉冲,高功率操作与对所允许的堆芯杂质浓度的严格限制相结合,此外,还将产生当今设备无法达到的规模的瞬态能量负载。在2007年ITER设计审查之后,当前的ITER PFC设计现已达到相当成熟的阶段。本文介绍了设计的关键要素,回顾了物理驱动程序,从本质上讲是热负载规范,这些规范定义了概念并讨论了材料和设计问题的选择。

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