首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Critical plasma-wall interaction issues for plasma-facing materials and components in near-term fusion devices
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Critical plasma-wall interaction issues for plasma-facing materials and components in near-term fusion devices

机译:近期聚变设备中面向等离子体的材料和组件的关键等离子体-壁相互作用问题

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The increase in pulse duration and cumulative run-time, together with the increase of the plasma energy content, will represent the largest changes in operation conditions in future fusion devices such as the International Thermonuclear Experimental Reactor (ITER) compared to today's experimental facilities. These will give rise to important plasma-physics effects and plasma-material interactions (PMIs) which are only partially observed and accessible in present-day experiments and will open new design, operation and safety issues. For the first time in fusion research, erosion and its consequences over many pulses (e.g., co-deposition and dust) may determine the operational schedule of a fusion device, This paper identifies the most critical issues arising from PMIs which represent key elements in the selection of materials, the design, and the optimisation of plasma-facing components (PFCs) for the first-wall and divertor. Significant advances in the knowledge base have been made recently, as part of the R&D supporting the engineering design activities (EDA) of ITER, and some of the most relevant data are reviewed here together with areas where further R&D work is urgently needed. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 31]
机译:与当今的实验设施相比,脉冲持续时间和累积运行时间的增加,以及等离子体能量含量的增加,将代表未来聚变设备(例如国际热核实验堆(ITER))的运行条件发生最大变化。这些将引起重要的等离子物理效应和等离子材料相互作用(PMI),这些效应在当今的实验中仅能部分观察到并且可以访问,并且将打开新的设计,操作和安全性问题。在聚变研究中,腐蚀及其在许多脉冲下的后果(例如,共沉积和粉尘)可能会首次确定聚变设备的运行时间表。本文确定了由PMI引起的最关键的问题,这些问题代表了聚变设备中的关键要素。第一壁和分流器的材料选择,设计以及面向等离子体的组件(PFC)的优化。作为支持ITER工程设计活动(EDA)的R&D的一部分,最近在知识库方面取得了重大进展,这里对一些最相关的数据以及迫切需要进行进一步R&D工作的领域进行了审查。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:31]

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