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Observation of inward turbulent particle transportin edge plasma region of CHS heliotron/torsatron

K Toi, K Ohkuni, M G Shats, R Akiyama, M Goto, M Isobe, G Matsunaga, K Matsuoka, T Minami, S Morita2002年Plasma Physics and Controlled FusionIF 2.2出版社

Reversal of turbulent particle flux near the plasma edge of CHS heliotron/ torsatron was observed on various discharge conditions, i.e. during tangential neutral beam injection, electron cyclotron heating at the far edge, and the sawtooth crash. For all cases, the reversal is realized at a narrow particular layer near the plasma edge, when plasma parameters go into low collisionality. The reversal is caused by the change in the cross phase between density (ne) and poloidal electric field (Eθ) fluctuations. The turbulent flux is always inward when the radial electric field shear (Er') exceeds a certain threshold of ~1×106 V m-2. In the sawtoothing plasmas, the arrival of a heat pulse due to the sawtooth crash enhances both ne and Eθ fluctuations but changes the cross phase to π in low-frequency range. As a result, a large inward flux is generated by the sawtooth crash. The particle flux reversal in these cases did not lead to obvious confinement improvement.

日本語訳

CHSヘリオトロン/トーサトロンのプラズマ端近傍における乱流粒子束の反転が、様々な放電条件下、すなわち接線中性粒子ビーム入射中、遠端電子サイクロトロン加熱中、および鋸歯状波クラッシュ中に観察された。すべてのケースにおいて、プラズマパラメータが低衝突頻度領域に入ると、反転はプラズマ端近傍の狭い特定の層で生じた。この反転は、密度(ne)とポロイダル電場(Eθ)の間のクロスフェーズの変化によって引き起こされる。乱流粒子束は、動径電場シア(Er')が約1×10⁶ V m⁻¹の閾値を超えると常に内向きとなる。鋸歯状波プラズマにおいて、鋸歯状波クラッシュによる熱パルスの到達は、neとEθの両方のゆらぎを増強するが、低周波数領域ではクロスフェーズをπに変化させる。その結果、鋸歯状波クラッシュによって大きな内向き粒子束が生成される。これらの場合の粒子束反転は、明らかな閉じ込め改善にはつながらなかった。

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Edge plasmaParticle transportHeliotronCompact Helical System
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