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

Effect of magnetic field ripple on energetic ions in Alcator A

J.J. Schuss1980年被引用 4Nuclear FusionIF 3出版社

The effect of toroidal magnetic field ripple on energetic ion confinement in Alcator A is theoretically investigated. A heuristic Monte Carlo particle simulation shows that for sufficiently large v∥/v the ion loss rate due to ripple trapping is independent of the toroidal fraction of the torus contained in the magnetic well. The resulting power loss is estimated to be large enough to limit the efficiency of RF heating on Alcator A.

日本語訳

トロイダル磁場リップルがAlcator Aにおける高エネルギーイオン閉じ込めに及ぼす影響を理論的に調査する。ヒューリスティックなモンテカルロ粒子シミュレーションにより、v∥/vが十分に大きい場合、リップルによるイオン損失率は磁気井戸に含まれるトーラスの割合に依存しないことが示される。結果として生じる電力損失は、Alcator AにおけるRF加熱の効率を制限するのに十分な大きさであると推定される。

wiki

Energetic ionAlcatorField ripple
この論文にはまだAI要約がありません。

関連論文

Depletion of ripple-trapped particles in the Alcator tokamaks

1980Nuclear Fusion

Measurements of periodic ripple transport in the ISX-B tokamak

1985Nuclear Fusion

Fast ion ripple losses during neutral injection in TFR

1988Nuclear Fusion

Investigation on ripple loss reduction by ferritic steel plate insertion in JFT-2M: comparison between experimental and computational data

2002Nuclear Fusion

Enhanced penetration of neutral-beam-injected ions by vertically asymmetric toroidal-field ripple

1976Nuclear Fusion

Effects of complex magnetic ripple on fast ions in JFT-2M ferritic insert experiments

2003Nuclear Fusion

Numerical analysis of the effect of fast-ion losses on plasma rotation in a tokamak with toroidal field ripple

2008Nuclear Fusion

Geometry of drift surfaces near the magnetic separatix in a tokamak with poloidal divertor

1993Plasma Physics and Controlled Fusion

The roles of plasma rotation and toroidal field ripple on the H-mode pedestal structure in JT-60U

2006Plasma Physics and Controlled Fusion

Effect of an additional ferromagnetic material on the toroidal magnetic field ripple in the ITER

2013Fusion Engineering and Design