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Mean and Oscillating Plasma Flows and Turbulence Interactions across the L-H Confinement Transition

机译:L-H限制跃迁中的平均和振荡血浆流以及湍流​​相互作用

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A complex interaction between turbulence driven E X B zonal flow oscillations, i.e., geodesic acoustic modes (GAMs), the turbulence, and mean equilibrium flows is observed during the low to high (L-H) plasma confinement mode transition in the ASDEX Upgrade tokamak. Below the L-H threshold at low densities a limit-cycle oscillation forms with competition between the turbulence level and the GAM flow shearing. At higher densities the cycle is diminished, while in the H mode the cycle duration becomes too short to sustain the GAM, which is replaced by large amplitude broadband flow perturbations. Initially GAM amplitude increases as the H-mode transition is approached, but is then suppressed in the H mode by enhanced mean flow shear.
机译:在ASDEX升级版托卡马克中,从低到高(L-H)等离子体限制模式过渡期间,观察到湍流驱动的E X B区域流振荡之间的复杂相互作用,即测地声模(GAM),湍流和平均平衡流。在低密度下低于L-H阈值时,形成极限循环振荡,湍流水平与GAM流动剪切之间存在竞争。在较高密度下,周期会减少,而在H模式下,周期持续时间会变得太短而无法维持GAM,而GAM被大幅度的宽带流量扰动所取代。最初,GAM振幅随着接近H模式过渡而增加,但随后在H模式下通过增强的平均流量剪切而被抑制。

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