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Helium injection plasmas in FTU

C. Mazzotta, G. Pucella, E. Giovannozzi, M. Marinucci, the FTU Team2022年被引用 1Nuclear FusionIF 3出版社

In order to extend observations on the increase of electron density peaking in neon doped plasmas, already reported in FTU Mazzotta et al (2015 Nucl. Fusion55 073027), some sessions have been performed by injecting helium gas on the L-mode plasmas during the last two experimental campaigns. This favorable scenario, which can fall within so called 'highly radiative' or 'plasma detachment' themes, is investigated in this paper. The description of the impact of the helium injection on plasma behavior, by varying plasma parameters and shape, is exposed, especially with respect to the density peaking and edge conditioning. It has been recorded that, not only the total amount of puffed helium, but also the injection rate intervenes in triggering a particle inflow. Finally, by using VUV spectroscopy measurements, a model to estimate concentrations of impurities is outlined here for the first time, in this way the helium amount is deduced.

日本語訳

ネオン添加プラズマにおける電子密度ピーキングの増大に関する観測を拡張するため、すでにFTUにおいて報告されているMazzottaら(2015 Nucl. Fusion 73 073027)の研究に基づき、過去2回の実験キャンペーン中にLモードプラズマへヘリウムガスを注入する実験が実施された。この好ましいシナリオは、いわゆる「高放射」または「プラズマ剥離」のテーマに該当し得るものであり、本論文で調査される。プラズマパラメータと形状を変化させることによるヘリウム注入がプラズマ挙動に及ぼす影響の記述が示され、特に密度ピーキングと周辺部調整に関して詳述される。パフされたヘリウムの総量だけでなく、注入速度も粒子流入の誘発に関与することが記録された。最後に、VUV分光測定を用いることにより、不純物濃度を推定するモデルが初めて概説され、この方法でヘリウム量が推定される。

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