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Runaway electrons generated during spontaneous disruptions in the EAST tokamak

R.J. Zhou, L.Q. Hu, Y. Zhang, G.Q. Zhong, S.Y. Lin, The EAST Team2017年被引用 16Nuclear FusionIF 3出版社

The runaway electrons produced during spontaneous disruptions were studied when lower hybrid wave heating was used in the EAST tokamak. Up to of the pre-disruptive plasma current can be transferred to runaway current in the disruptions when seed fast electrons exist in the plasma. The evolutions of the radial profile of the electric field and the runaway electron density are obtained with the aid of an one-dimensional self-consistent simulation model. The results clearly show the competition between the radial diffusion of the induced electric field and growth of the runaway current. They also indicate that the dominant runaway generation mechanism was of Dreicer type, and half of the decreasing magnetic energy was converted into runaway electron kinetic energy during the disruptions.

日本語訳

自然ディスラプション中に生成される逃走電子について、EASTトカマクにおいて低混成波加熱を用いた場合に研究を行った。プラズマ中に種となる高速電子が存在する場合、ディスラプションにおいて、ディスラプション前のプラズマ電流の最大〔数値〕%が逃走電流に移行し得ることが示された。一次元自己無撞着シミュレーションモデルを用いることにより、電場の動径プロファイルと逃走電子密度の時間発展が得られた。その結果は、誘起電場の動径方向拡散と逃走電流の成長との間の競合を明確に示している。また、それらの結果は、支配的な逃走電子生成機構がドライサー型であり、減少する磁気エネルギーの半分がディスラプション中に逃走電子の運動エネルギーへと変換されたことを示している。

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