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Finite orbit width effects on stochastic ripple diffusion

I.G. Eriksson, P. Helander1993年被引用 15Nuclear FusionIF 3出版社

An analytical and numerical investigation is undertaken to study the effects of non-standard orbit topology on the stochastic ripple diffusion of high energy ions in tokamaks. Finite orbit width effects are demonstrated to lead to large modifications of the threshold for the onset of stochastic motion. Trapped particles moving along trajectories with turning points on the inside of the torus are most severely affected. In particular, orbits close to the pinch orbit are very sensitive to magnetic field ripple, whereas orbits with bounce points close to the horizontal midplane are less easily perturbed than is suggested by small orbit width theory. Applying the results to recent ripple experiments on JET, it is found that the number of stochastically moving particles is only moderately affected by these effects. The reason for this is the large ripple amplitude and the steepness of the ripple gradient over most of the plasma cross-section

日本語訳

トカマクにおける高エネルギーイオンの確率的リップル拡散に対する非標準軌道トポロジーの影響を調べるため、解析的および数値的調査を行う。有限軌道幅効果が確率的運動の開始閾値の大きな修正をもたらすことが実証される。トーラス内側に転回点を持つ捕捉粒子の軌道が最も深刻な影響を受ける。特に、ピンチ軌道に近い軌道は磁場リップルに対して非常に敏感である一方、水平中間面近くにバウンス点を持つ軌道は、小軌道幅理論が示唆するよりも擾乱を受けにくい。これらの結果をJETにおける最近のリップル実験に適用すると、プラズマ断面の大部分におけるリップル振幅の大きさとリップル勾配の急峻さにより、確率的に移動する粒子の数はわずかな影響しか受けないことが見出される。

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