论文标题

JET M模式和ASDEX升级I-相现象的身份

Identity of the JET M-mode and the ASDEX Upgrade I-phase phenomena

论文作者

Réfy, D. I., Solano, E. R., Vianello, N., Zoletnik, S., Dunai, D., Tál, B., Brix, M., Gomes, R., Birkenmeier, G., Wolfrum, E., Laggner, F., Griener, M., Asztalos, Ö., Delabie, E.

论文摘要

在欧洲圆环(JET)和Asdex升级(AUG)TOKAMAKS上,已经观察到接近L-H过渡的H-Mode血浆状态,接近L-H过渡,均具有清晰的密度和温度基座。 JET的制度称为M模式,而在AUG为中间阶段或I期。该贡献旨在根据密度和温度基座特性,磁振荡和对称性对这些现象进行比较分析。锂束发射光谱(LI-BES)和射流和8月的反射计测量表明,M模式和I相调节等离子体边缘密度。磁力的高频振荡和基座处的密度也与M模式和I期有关,其功率与LFO频率调节。功率调制同时发生在可以检测到的每个mirnov线圈信号中。磁信号的突发和基座区域的密度之后,密度曲线的变平,以及刮擦层中的径向向外传播密度脉冲(SOL)。在AUG时对氦线比率(HE-BES)信号的分析表明,电子温度与密度相相调节,因此I期会调节压力分布梯度。该分析提供了比较不同位置的LI-BES和HE-BES密度曲线的机会,这表明密度调制的环形和多型对称性。提出的结果表明,8月相关和JET M模式的制度表现出相似的特征,这得出的结论是,该制度可能是相同的。

An H-mode plasma state free of edge-localized mode (ELM), close to the L-H transition with clear density and temperature pedestal has been observed both at the Joint European Torus (JET) and at the ASDEX Upgrade (AUG) tokamaks usually identified by a low frequency (LFO, 1-2 kHz), m=1, n=0 oscillation of the magnetics and the modulation of pedestal profiles. The regime at JET is referred to as M-mode while at AUG as intermediate phase or I-phase. This contribution aims at a comparative analysis of these phenomena in terms of the density and temperature pedestal properties, the magnetic oscillations and symmetries. Lithium beam emission spectroscopy (Li-BES) and reflectometer measurements at JET and AUG show that the M-mode and the I-phase modulates the plasma edge density. A high frequency oscillation of the magnetics and the density at the pedestal is also associated with both the M-mode and the I-phase, and its power is modulated with the LFO frequency. The power modulation happens simultaneously in every Mirnov coil signal where it can be detected. The bursts of the magnetic signals and the density at the pedestal region are followed by the flattening of the density profile, and by a radially outward propagating density pulse in the scrape-off layer (SOL). The analysis of the helium line ratio spectroscopy (He-BES) signals at AUG revealed that the electron temperature is modulated in phase with the density, thus the I-phase modulates the pressure profile gradient. This analysis gave opportunity to compare Li-BES and He-BES density profiles at different locations suggesting a toroidal and poloidal symmetry of the density modulation. The presented results indicate that the regimes, the AUG I-phase and the JET M-mode, exhibit similar characteristics, which leads to the conclusion that the regimes are likely the same.

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