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Characterization of plasma current quench at JET

V Riccardo, P Barabaschi, M Sugihara2005年Plasma Physics and Controlled FusionIF 2.2出版社

Eddy currents generated during the fastest disruption current decays represent the most severe design condition for medium and small size in-vessel components of most tokamaks. Best-fit linear and instantaneous plasma current quench rates have been extracted for a set of recent JET disruptions. Contrary to expectations, the current quench rate spectrum of high and low thermal energy disruptions is not substantially different. For most of the disruptions with the highest instantaneous current quench rate an exponential fit of the early phase of the current decay provides a more accurate estimate of the maximum current decay velocity. However, this fit is only suitable to model the fastest events, for which the current quench is dominated by radiation losses rather than the plasma motion.

日本語訳

ほとんどのトカマクにおいて、最速の電流減衰中に発生する渦電流は、中小型の真空容器内機器にとって最も厳しい設計条件となる。最近の一連のJETディスラプションについて、最適適合による線形および瞬時電流クエンチ率が抽出された。予想に反して、高熱エネルギーおよび低熱エネルギーのディスラプションの電流クエンチ率スペクトルは、本質的に異なるものではない。最大の瞬時電流クエンチ率を示すほとんどのディスラプションについて、電流減衰の初期段階への指数関数フィッティングは、最大電流減衰速度のより正確な推定値を提供する。しかしながら、このフィッティングは、電流クエンチがプラズマの運動ではなく放射損失によって支配される最速の事象をモデル化する場合にのみ適している。

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