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New Edge Localized Modes at Marginal Input Power with Dominant RF-heating and Lithium-wall Conditioning in EAST

机译:边缘输入功率的新边缘局部模式,在EasT中具有主导的RF加热和锂壁调节

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摘要

The EAST tokamak has achieved, for the rst time, the ELMy H-mode at a connement improvement factor HITER89P 1:7, with dominant RF heating and active wall conditioning by lithium evaporation and real-time injection of Li powder. During the H-mode phase, a new small-ELM regime has been observed with the power threshold of the L-H transition close to the prediction by the international tokamak scaling. The small-ELM regime is manifested as sinusoidal-like oscillations on edge plasma measurements with frequencies ranging from several hundred Hz to 3 kHz, which exhibits an initial growth phase and can last over 1 s. In contrast to the usual type-III ELMy regime, both plasma density and stored energy increase almost linearly with time during the small-ELM phase. Heat fluxes at the divertor target plates during the small ELMs are much smaller than those for the type-III ELMs by one order of magnitude. Magnetic measurements show small-amplitude oscillations during the small ELMs with the poloidal mode number m 1, and the toroidal mode number n 0. Detailed measurements from the reciprocating probes near the separatrix reveal that the oscillations on the floating potential and ion saturation current of small ELMs are much smaller than those of type-III ELMs. Further study of the floating potential inside the separatrix shows modulation interactions and strong three-wave coupling between the small ELMs and highfrequency-broadband (80 500 kHz) turbulences that emerge after the L-H transition or in the inter-ELM phase. The fluctuations of the floating potential at different toroidal, poloidal and radial locations are strongly correlated with each other, with nearly no phase differences poloidally and toroidally, but with finite phase difference radially, thus providing strong evidence for the presence of zonal flows. New observations have also been made on the type-III ELMs. Measurements from Mach probes have demonstrated a decreasing co-current rotation during type-III ELMs. These suggest that the type-III ELMs may transport substantial particles, energy and momentum out of the plasma. Each type-III ELMy crash enhances the radial electric fieldEr and turbulence driven Reynolds stress. Furthermore, the lament-like structure of type-III ELMs has clearly been identified as multiple peaks on the ion saturation and floating potential measurements.
机译:EAST托卡马克首次以连接改善系数HITER89P 1:7实现ELMy H模式,主要的RF加热和通过锂蒸发和实时注入Li粉末进行主动墙调节。在H模式阶段,已经观察到一种新的小型ELM机制,其L-H跃迁的功率阈值接近国际托卡马克定标的预测。小ELM机制在边缘等离子体测量中表现为类似正弦曲线的振荡,频率范围从几百Hz到3 kHz,表现出一个初始的生长阶段,可以持续1 s以上。与通常的III型ELMy方案相反,在小ELM阶段,等离子体密度和存储的能量几乎随时间线性增加。在小型ELM中,散流器目标板上的热通量比III型ELM小得多。磁测量结果表明,在小的ELM中,极点模式数为m 1且环形模式数为n 0时,小振幅振荡。分离线附近往复式探针的详细测量结果表明,小电位浮子和离子饱和电流的振荡很小ELM比III型ELM小得多。对分离线内部的浮置电位的进一步研究表明,小型ELM与L-H过渡后或ELM间相出现的高频宽带湍流之间存在调制相互作用和强三波耦合。在不同的环形,极向和径向位置上的漂浮势的波动彼此密切相关,在极向和环形上几乎没有相位差,但是在径向上具有有限的相位差,因此为区域流的存在提供了有力的证据。对III型ELM也有了新的观察。 Mach探针的测量结果表明,III型ELM期间并流旋转减少。这些表明,III型ELM可以将大量的颗粒,能量和动量从等离子体中传输出去。每次III型ELMy碰撞都会增强径向电场Er和湍流驱动的雷诺应力。此外,在离子饱和度和浮动电势测量中,III型ELM的类似哀叹状结构已被明确识别为多个峰。

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