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Turbulence, flow and transport: hints from reversed field pinch

N Vianello,, V Antoni, E Spada, M Spolaore, G Serianni, R Cavazzana, H Bergsåker, M Cecconello, J R Drake2006年Plasma Physics and Controlled FusionIF 2.2出版社

The interplay between sheared E × B flows and turbulence has been experimentally investigated in the edge region of the Extrap-T2R reversed field pinch experiment. Electrostatic fluctuations are found to rule the momentum balance equation representing the main driving term for sheared flows which counterbalances anomalous viscous damping. The driving role of electrostatic fluctuations is proved by the spatial structure of the Reynolds stress and by the time behaviour of the mean energy production term which supports the existence of an energy exchange from the small scales of turbulence to the larger scales of the mean flow.

日本語訳

せん断されたE × Bフローと乱流の間の相互作用が、Extrap-T2R逆転磁場ピンチ実験の周辺領域において実験的に調査された。静電揺らぎが運動量バランス方程式を支配していることが見出され、これはせん断流の主要な駆動項を表しており、粘性減衰と釣り合っている。静電揺らぎの駆動的役割は、レイノルズ応力の空間構造と、平均エネルギー生成項の時間的挙動によって実証されており、これは小スケールの乱流から平均流の大スケールへのエネルギー交換の存在を支持している。

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Reversed field pinch
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