FusionPapers
図版検索トレンドwiki日本の研究
© 2026 FUSIONPAPERS
About法務情報
トップに戻る

3-D MHD simulations of pellet injection and disruptions in tokamak plasmas

H.R. Strauss, W. Park, E. Belova, G.Y. Fu, L.E. Sugiyama1999年被引用 5Nuclear FusionIF 3出版社

Non-linear MHD simulation results of pellet injection show that MHD forces can accelerate large pellets injected on the high field side of a tokamak to the plasma centre. Magnetic reconnection can produce a reverse shear q profile. Ballooning instability caused by pellets is also reduced by high field side injection. Studies are also reported of the current quench phase of disruptions, which can cause 3-D halo currents and runaway electrons.

日本語訳

非線形MHDシミュレーションの結果は、トカマクの高磁場側に注入された大きなペレットをプラズマ中心部まで加速できることを示している。磁気リコネクションは逆シアのqプロファイルを生成し得る。ペレットによって引き起こされるバルーニング不安定性も、高磁場側注入によって低減される。また、ディスラプションの電流クエンチ相に関する研究も報告されており、この相は3次元のハロー電流と逃走電子を引き起こし得る。

wiki

MagnetohydrodynamicsPlasma disruptionPellet injection
この論文にはまだAI要約がありません。

関連論文

Particle fueling experiments with a series of pellets in LHD

2018Plasma Physics and Controlled Fusion

Current profile modification in JT-60 pellet injection experiments

1989Nuclear Fusion

Large potential change induced by pellet injection in JIPP T-IIU tokamak plasmas

1996Nuclear Fusion

Injection of multiple shattered pellets for disruption mitigation in DIII-D

2019Nuclear Fusion

Simulation of shell pellet injection strategies for ITER-scale tokamaks

2023Plasma Physics and Controlled Fusion

Current generation in tokamaks by phased injection of pellets

1984Nuclear Fusion

Design and implementation of a high speed guiding system for inboard pellet refuelling

2001Fusion Engineering and Design

Non-linear magnetohydrodynamic simulations of plasma instabilities from pellet injection in Large Helical Device plasma

2019Plasma Physics and Controlled Fusion

Refuelling performance improvement by high speed pellet launch from the magnetic high field side

2001Nuclear Fusion

Ablation of solid pellets induced by supra-thermal ions in the far scrape-off layer of DIII-D plasmas

2019Nuclear Fusion