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

Confinement in W7-AS and the role of radial electric field and magnetic shear

R Brakel, M Anton, J Baldzuhn, R Burhenn, V Erckmann, S Fiedler, J Geiger, H J Hartfuß, O Heinrich, M Hirsch1997年Plasma Physics and Controlled FusionIF 2.2出版社

Improved neoclassical electron confinement in the centre of low-density ECRH plasmas has been observed in the presence of a strong positive radial electric field, which resembles the electron root solution of the neoclassical ambipolarity condition but is obviously driven by the loss of ECRH-generated suprathermal electrons. At higher densities and with NBI heating, a high confinement regime substantially above the ISS95-scaling and different from the H-mode is established with a strongly sheared negative radial electric field at the boundary. The application of plasma-current induced magnetic shear reveals that confinement in W7-AS is essentially determined by perturbations at high-order rational surfaces. For optimum confinement, these resonances have either to be avoided in the boundary region or magnetic shear must be sufficiently large. Independent of its sign, magnetic shear can reduce electron energy transport which is enhanced in the presence of such resonances to the neoclassical level.

日本語訳

低密度ECRHプラズマの中心部において、強い正の径方向電場の存在下で電子閉じ込めの改善が観測された。この電場は新古典両極性条件の電子根解に類似するが、ECRHによって生成された高速電子の損失によって明らかに駆動されている。高密度かつNBI加熱時には、境界部における強いシアを伴う負の径方向電場により、ISS95スケーリングを大幅に上回る高閉じ込め状態が確立され、これはHモードとは異なるものである。プラズマ電流による磁気シアの適用により、W7-ASにおける閉じ込めは高次の有理面における摂動によって本質的に決定されることが明らかになった。最適な閉じ込めのためには、これらの共鳴を境界領域で回避するか、磁気シアを十分に大きくする必要がある。その符号に依存せず、磁気シアはこのような共鳴によって増大した電子輸送を新古典レベルまで低減することができる。

wiki

Radial electric fieldMagnetic shearW7-AS
この論文にはまだAI要約がありません。

関連論文

High-confinement NBI discharges in the W7-AS stellarator

1998Plasma Physics and Controlled Fusion

Sheared flows and transition to improved confinement regime in the TJ-II stellarator

2009Plasma Physics and Controlled Fusion

Effect of magnetic braking of the plasma rotation on the H-mode radial electric field and energy confinement in the DIII-D tokamak

1993Nuclear Fusion

Electron transport barrier and high confinement in configurations with internal islands close to the plasma edge of W7-X

2024Nuclear Fusion

Electric field and transport in W7-AS

1999Plasma Physics and Controlled Fusion

Effects of toroidal rotation shear and magnetic shear on thermal and particle transport in plasmas with electron cyclotron heating on JT-60U

2015Nuclear Fusion

Cross-field confinement and power balance in an orbitron fusion device

2026Plasma Physics and Controlled Fusion

Characterization of an enhanced plasma performance phase induced by pellet injection in the stellarator TJ-II

2026Nuclear Fusion

The effect of the electric field on the confinement of electron plasmas on magnetic surfaces

2007Physics of Plasmas

Enhanced confinement regimes with strong electron heating in the presence of flat or inverted safety factor profiles

1999Plasma Physics and Controlled Fusion