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Models and scalings for the disruption forces in tokamaks

V.D. Pustovitov2022年被引用 6Nuclear FusionIF 3出版社

The study is devoted to theoretical analysis of some models for calculating the disruption forces in tokamaks and scalings for these forces which can be proposed for ITER. It is motivated by the necessity of reliable predictions for ITER. The task includes the evaluation of the existing models, resolution of the conflicts between them, elimination of contradictions by proper improvements, elaboration of recommendations for dedicated studies. Better qualities of the modelling and higher accuracy are the ultimate theoretical goals. In recent years, there was a steady progress in developing a physics basis for calculating the forces, which gave rise to new trends and ideas. It was discovered, in particular, that the wall resistivity, penetration of the magnetic perturbation through the wall, the poloidal current induced in the wall, the kink-mode coupling, plasma position in the vacuum vessel must be the elements essentially affecting the disruption forces. These and related predictions along with earlier less sophisticated concepts and results are analysed here.

日本語訳

本研究は、トカマクにおけるディスラプション力を計算するためのいくつかのモデルと、ITERのために提案され得るこれらの力に関するスケーリング則の理論的解析に充てられている。これは、ITERに対する信頼性の高い予測の必要性によって動機づけられている。課題には、既存モデルの評価、それらの間の矛盾の解決、適切な改良による矛盾の排除、専用研究のための推奨事項の策定が含まれる。モデリングのより良い品質とより高い精度が究極の理論的目標である。近年、力を計算するための物理的基盤の開発において着実な進歩があり、新たな傾向とアイデアを生み出した。特に、壁抵抗率、壁を通した磁気摂動の浸透、壁に誘起されるポロイダル電流、キンクモード結合、真空容器内のプラズマ位置が、ディスラプション力に本質的に影響する要素でなければならないことが発見された。これらの予測および関連する予測は、初期のより洗練されていない概念や結果とともに、ここで解析される。

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iter中精度(概要文一致)

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Plasma disruption
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