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Deposition in the inner and outer corners of the JET divertor with carbon wall and metallic ITER-like wall

机译:在JET偏滤器的内外角处沉积,带有碳壁和金属ITER状壁

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摘要

Rotating collectors and quartz microbalances (QMBs) are used in JET to provide time-dependent measurements of erosion and deposition. Rotation of collector discs behind apertures allows recording of the long term evolution of deposition. QMBs measure mass change via the frequency deviations of vibrating quartz crystals. These diagnostics are used to investigate erosion/deposition during JET-C carbon operation and JET-ILW (ITER-like wall) beryllium/tungsten operation. A simple geometrical model utilising experimental data is used to model the time-dependent collector deposition profiles, demonstrating good qualitative agreement with experimental results. Overall, the JET-ILW collector deposition is reduced by an order of magnitude relative to JET-C, with beryllium replacing carbon as the dominant deposit. However, contrary to JET-C, in JET-ILW there is more deposition on the outer collector than the inner. This reversal of deposition asymmetry is investigated using an analysis of QMB data and is attributed to the different chemical properties of carbon and beryllium.
机译:JET中使用了旋转收集器和石英微量天平(QMB),以提供与时间有关的侵蚀和沉积测量。孔后面的收集盘旋转允许记录沉积的长期演变。 QMB通过振动的石英晶体的频率偏差来测量质量变化。这些诊断程序用于调查JET-C碳作业和JET-ILW(类似ITER的壁)铍/钨作业期间的腐蚀/沉积。利用实验数据的简单几何模型用于对时间相关的收集器沉积轮廓进行建模,证明与实验结果具有良好的定性一致性。总体而言,相对于JET-C,JET-ILW集电极的沉积减少了一个数量级,其中铍取代了碳作为主要沉积物。但是,与JET-C相反,在JET-ILW中,外集尘器上的沉积多于内集尘器。使用QMB数据分析研究了这种沉积不对称性的逆转,这归因于碳和铍的不同化学性质。

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