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Modelling of tearing mode suppression experiments in TEXTOR based on the generalized Rutherford equation

B. Ayten, D. De Lazzari, M.R. de Baar, B.A. Hennen, E. Westerhof, the TEXTOR Team2011年被引用 2Nuclear FusionIF 3出版社

Modelling of the experiments on TEXTOR on tearing mode suppression by electron cyclotron resonance heating and current drive based on the generalized Rutherford equation (GRE) is presented. The comparison between the model and the experimental data provides a satisfactory agreement taking into account the experimental uncertainties. Both the model and the experimental observations confirm that in TEXTOR heating is the dominant suppression mechanism above that of current drive. As a conclusion, these experiments provide a positive benchmark for the stabilizing term in the GRE arising from the localized heating.

日本語訳

TEXTORにおける電子サイクロトロン共鳴加熱および電流駆動によるテアリングモード抑制に関する実験の、一般化ラザフォード方程式(GRE)に基づくモデリングを提示する。モデルと実験データの比較は、実験的不確かさを考慮すると満足のいく一致を示す。モデルと実験的観測の両方は、TEXTORにおいては加熱が電流駆動よりも支配的な抑制機構であることを確認している。結論として、これらの実験は、局所加熱に起因するGRE中の安定化項に対する肯定的なベンチマークを提供するものである。

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textor高精度(タイトル一致)

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Tearing modeTEXTOR
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