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Nonlinear transfer in heated L-modes approaching the L–H transition threshold in Alcator C-Mod

I. Cziegler, G.R. Tynan, P.H. Diamond, A.E. Hubbard, J.W. Hughes, J. Irby, J.L. Terry2015年被引用 21Nuclear FusionIF 3出版社

Nonlinear transfer processes between large-scale edge flows and the ambient broadband fluctuations have been shown to play a significant role in the dynamics of edge turbulence, including spreading power from coherent modes and suppressing turbulence at the formation of edge transport barriers. In order to predict thresholds of confinement regimes, both the transition dynamics and the parametric dependence of the nonlinear energy transfer must be studied. Since the expected flow damping terms depend on ion collision rates and local safety factors, recent experiments aimed also to explore the nonlinear drive at various values of the plasma current, density and amount of auxiliary heating. Nonlinear interactions between zonal flows and turbulence in L-mode are estimated using bispectral as well as time-resolved methods based on gas-puff-imaging in Alcator C-Mod [1].

日本語訳

大規模なエッジ乱流と周辺帯状流の間の非線形過程は、エッジ乱流のダイナミクスにおいて重要な役割を果たすことが示されており、コヒーレントモードからのエネルギーの広がりや、エッジ輸送障壁形成時の乱流の抑制を含む。閉じ込め遷移の閾値を予測するためには、遷移ダイナミクスと非線形エネルギー伝達のパラメトリック依存性の両方を研究する必要がある。予想されるフロー減衰はイオン衝突周波数と安全係数に依存するため、最近の実験では、プラズマ電流、密度、および補助加熱出力を変化させながら、非線形駆動を調査している。Lモード乱流と帯状流の間の非線形相互作用は、Alcator C-Mod [1] におけるガスパフイメージングに基づく時間分解およびバイスペクトル手法を用いて定量化される。

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alcator-c-mod高精度(タイトル一致)

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AlcatorC-ModL-H transition
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