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Assessment of particle and heat loads to the upper open divertor in ASDEX Upgrade in favourable and unfavourable toroidal magnetic field directions

机译:评估ASDEX升级中向上和偏向偏开偏滤器的颗粒和热负荷,在有利和不利的环形磁场方向上

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Pairs of ASDEX Upgrade L-mode discharges with the toroidal magnetic field,BT, in the forward and reverse directions have been used to study the impact of neoclassical drifts on the divertor plasma conditions and detachment. The evolution of the peak heat flux and the total power loads onto both the outer and the inner targets depends significantly on the toroidal field direction: increasing the core plasma density affects mainly the heat loads in theBT??0 (favourable). Ion saturation current measurements show similar trends to those of the IR heat flux data. These discrepancies are not only caused by drifts but also by different levels of radiated power in the core, thus the power across the separatrix, Psep. Tomographic reconstructions show that Psepis not constant within the entire dataset. Finally, atIp=0.8MA,a significant reduction of the peak heat flux is observed at both targets for both field directions. On the other hand, atIp=0.6MA,a reduction of the peak heat flux is only observed forBT?
机译:对正向和反向带有环形磁场BT的ASDEX升级L型放电对已用于研究新古典漂移对偏滤器等离子体条件和脱离的影响。在外部和内部目标上的峰值热通量和总功率负载的演变在很大程度上取决于环形场方向:核心等离子体密度的增加主要影响BT?<?0(不利)方向的热负载,而对于BT≥> 0(有利),增加等离子体电流对热负荷有较大的影响。离子饱和电流测量显示出与IR热通量数据相似的趋势。这些差异不仅是由漂移引起的,而且还由纤芯中辐射功率的不同水平引起的,因此,是由分离线Psep产生的功率。断层扫描重建表明,Psepis在整个数据集中不是恒定的。最后,在Ip = 0.8MA处,在两个场向的两个目标处都观察到峰值热通量的显着降低。另一方面,在Ip = 0.6MA的情况下,仅在外侧靶的BT≤<0时观察到峰值热通量减少。另外,仅在BTp <α0且Ip = 0.8MA的外部靶上才观察到颗粒脱离。

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