Thermal and statistical analysis of the high-Z tungsten-based UFOs observed during the first deuterium high fluence campaign of the WEST tokamak

IF 2.3 2区 物理与天体物理 Q1 NUCLEAR SCIENCE & TECHNOLOGY Nuclear Materials and Energy Pub Date : 2024-09-21 DOI:10.1016/j.nme.2024.101745
J. Gaspar , Y. Anquetin , Y. Corre , X. Courtois , M. Diez , A. Ekedahl , N. Fedorczak , A. Gallo , J-L. Gardarein , J. Gerardin , J. Gunn , A. Grosjean , K. Krieger , T. Loarer , P. Manas , C. Martin , P. Maget , R. Mitteau , P. Moreau , F. Rigollet , E. Tsitrone
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Abstract

This paper summarizes the observations on the Unidentified Flying Object (UFO) observed during the first high fluence campaign performed in WEST. The campaign was characterized by high erosion and deposition rates, generating dusts and deposits prone to flaking during plasma operation. A total of 686 UFOs have been detected for 384 discharges executed, in which 133 UFOs lead to a disruption. These UFOs appear mostly during the low hybrid heating ramp-up early in the discharges. The mechanisms leading to a disruption is described as well as the delay available to react after the UFO entering in the plasma. The UFOs originate mostly from the high field side corresponding to the thick deposit area. These UFOs can be debris from a preceding disruption (≈27 %) or come from progressive loss of adherence of the thick deposits (≈55 %) under plasma cycling or more likely by disruption on this area. Finally, the thermal resistance of the poorly attached deposits has been calculated in the range from 2.10−4 °C m2/W to 1.10−3 °C m2/W coherent with previous observations in the high field side of the JET divertor.
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对 WEST 托卡马克首次氘高通量活动期间观测到的高 Z 值钨基 UFO 进行热分析和统计分析
本文总结了在美国西部研究所进行的首次高通量活动中对不明飞行物(UFO)的观察结果。这次活动的特点是侵蚀和沉积率高,产生的粉尘和沉积物在等离子体运行期间容易剥落。在执行的 384 次放电中,共检测到 686 个 UFO,其中 133 个 UFO 导致放电中断。这些 UFO 主要出现在放电早期的低混合加热升温过程中。本文描述了导致中断的机制,以及 UFO 进入等离子体后可做出反应的延迟时间。不明飞行物主要来自高磁场侧,与厚沉积物区域相对应。这些不明飞行物可能是之前破坏产生的碎片(≈27%),也可能是厚沉积物在等离子体循环作用下逐渐失去附着力(≈55%),更有可能是这一区域的破坏产生的。最后,计算出附着力差的沉积物的热阻在 2.10-4 °C m2/W 到 1.10-3 °C m2/W 之间,这与之前在 JET 分流器高场侧的观测结果一致。
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来源期刊
Nuclear Materials and Energy
Nuclear Materials and Energy Materials Science-Materials Science (miscellaneous)
CiteScore
3.70
自引率
15.40%
发文量
175
审稿时长
20 weeks
期刊介绍: The open-access journal Nuclear Materials and Energy is devoted to the growing field of research for material application in the production of nuclear energy. Nuclear Materials and Energy publishes original research articles of up to 6 pages in length.
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