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Trapped electron effects on ηi-mode and trapped electron mode in RFP plasmas

S.F. Liu, S.C. Guo, W. Kong, J.Q. Dong2014年被引用 6Nuclear FusionIF 3出版社

The drift instabilities in the toroidal reversed field pinch (RFP) plasmas are numerically studied with gyrokinetic integral eigenmode equations, by taking into account the trapped electrons (TEs) and full ion kinetic effects. Both the collisionless and collisional plasmas are investigated. Two topics are addressed: the TE effects on the ion temperature gradient driven mode, and the instability of the trapped electron mode (TEM). A comparison with a circular tokamak configuration has been made. Although the TEs generally play a similar role in RFPs as they do in tokamaks, their effects become significant in RFPs only when very steep density/temperature profiles exist. Indeed, the instability of the TEM in RFP plasmas requires a much steeper density/temperature gradient and has a much narrower kθρs spectrum than in tokamak plasmas.

日本語訳

トロイダル反転磁場ピンチ(RFP)プラズマにおけるドリフト不安定性を、捕捉電子(TEs)と完全なイオン運動論効果を考慮したジャイロ運動論的積分固有モード方程式を用いて数値的に研究した。無衝突および衝突プラズマの両方を調査した。2つのトピックを取り上げる: イオン温度勾配駆動モードに対するTE効果、および捕捉電子モード(TEM)の不安定性。円形トカマク配位との比較を行った。TEは一般にRFPにおいてトカマクと同様の役割を果たすが、その効果は非常に急峻な密度/温度分布が存在する場合にのみRFPにおいて顕著になる。実際、RFPプラズマにおけるTEMの不安定性は、トカマクプラズマよりもはるかに急峻な密度/温度勾配を必要とし、kθρsスペクトルもはるかに狭い。

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