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Transport model of plasma heating at the second harmonic of the electron cyclotron frequency

Yu N Dnestrovskij, A V Danilov, A Yu Dnestrovskij, S E Lysenko, A V Melnikov, A R Nemets, M R Nurgaliev, G F Subbotin, N A Solovev, D Yu Sychugov2021年Plasma Physics and Controlled FusionIF 2.2出版社

The optical thickness of the plasma is often insufficient to fully absorb the microwaves during heating at the second harmonic of the electron cyclotron frequency. An analysis of the experiments to the T-10 tokamak allows us to find the criteria for the full absorption, and to construct a canonical profile transport model for the full and partial absorptions of microwaves. The conditions to the equivalence of discharges in different tokamaks, and in a pair of tokamaks with the optimized W7-X stellarator are formulated. For equivalent discharges, calculations to the T-15MD tokamak under construction with the obtained model coincide with measurements of electron and ion temperatures in the W7-X over a wide range of plasma densities. The validated model is used to analyze future shots of T-15MD.

日本語訳

プラズマの光学的厚さは、電子サイクロトロン周波数の第2高調波での加熱中にマイクロ波を完全に吸収するにはしばしば不十分である。T-10トカマクでの実験の解析により、完全吸収の基準を見出し、マイクロ波の完全吸収および部分吸収のためのカノニカルプロファイル輸送モデルを構築することが可能となる。異なるトカマク間での放電の等価性の条件、および最適化されたW7-Xステラレーターを有する一対のトカマクにおける条件が定式化される。等価な放電に対して、建設中のT-15MDトカマクへの計算は、得られたモデルを用いて、広範囲のプラズマ密度にわたるW7-Xでの電子温度およびイオン温度の測定結果と一致する。検証されたモデルは、T-15MDの将来の放電の解析に使用される。

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wendelstein-7x中精度(概要文一致)

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Plasma heating
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