托卡马克
等离子体
融合
聚变能
钨
溅射
材料科学
纳米技术
核工程
物理
核物理学
工程类
薄膜
语言学
哲学
冶金
作者
K. Nordlund,C. Björkas,T. Ahlgren,A. Lasa,Andrea E. Sand
标识
DOI:10.1088/0022-3727/47/22/224018
摘要
The interaction of fusion reactor plasma with the material of the first wall involves a complex multitude of interlinked physical and chemical effects. Hence, modern theoretical treatment of it relies to a large extent on multiscale modelling, i.e. using different kinds of simulation approaches suitable for different length and time scales in connection with each other. In this review article, we overview briefly the physics and chemistry of plasma–wall interactions in tokamak-like fusion reactors, and present some of the most commonly used material simulation approaches relevant for the topic. We also give summaries of recent multiscale modelling studies of the effects of fusion plasma on the modification of the materials of the first wall, especially on swift chemical sputtering, mixed material formation and hydrogen isotope retention in tungsten.
科研通智能强力驱动
Strongly Powered by AbleSci AI