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Long-term fuel retention and release in JET ITER-Like Wall at ITER-relevant baking temperatures

机译:在与ITER相关的烘烤温度下,在JET ITER样墙中的长期燃料保留和释放

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摘要

The fuel outgassing efficiency from plasma-facing components exposed in JET-ILW has been studied at ITER-relevant baking temperatures. Samples retrieved from the W divertor and Be main chamber were annealed at 350 and 240 degrees C, respectively. Annealing was performed with thermal desoprtion spectrometry (TDS) for 0, 5 and 15 h to study the deuterium removal effectiveness at the nominal baking temperatures. The remained fraction was determined by emptying the samples fully of deuterium by heating W and Be samples up to 1000 and 775 degrees C, respectively. Results showed the deposits in the divertor having an increasing effect to the remaining retention at temperatures above baking. Highest remaining fractions 54 and 87% were observed with deposit thicknesses of 10 and 40 mu m, respectively. Substantially high fractions were obtained in the main chamber samples from the deposit-free erosion zone of the limiter midplane, in which the dominant fuel retention mechanism is via implantation: 15 h annealing resulted in retained deuterium higher than 90%. TDS results from the divertor were simulated with TMAP7 calculations. The spectra were modelled with three deuterium activation energies resulting in good agreement with the experiments.
机译:在与ITER有关的烘烤温度下,已经研究了暴露在JET-ILW中的面向等离子体的组件的除气效率。从W分流器和Be主腔室中取出的样品分别在350和240摄氏度下退火。用热解吸光谱法(TDS)进行0、5和15小时退火,以研究在正常烘烤温度下的氘去除效果。通过分别将W和Be样品分别加热到1000和775摄氏度来完全排空氘样品来确定残留分数。结果表明,在高于烘烤的温度下,分流器中的沉积物对剩余保持力的影响增加。观察到最高残留部分54和87%,沉积物厚度分别为10和40μm。从限制器中平面的无沉积侵蚀区域的主腔室样品中获得了相当高的分数,其中主要的燃料保留机制是通过注入:15 ​​h退火导致保留的氘高于90%。用TMAP7计算模拟了来自偏滤器的TDS结果。使用三种氘活化能对光谱进行建模,从而与实验很好地吻合。

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