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Characterisation of highly radiating neon seeded plasmas in JET-ILW

机译:JET-ILW中高辐射氖晶等离子体的表征

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To study the impact of strong impurity radiation on the energy confinement and the discharge stability at JET-ILW, dedicated high-density, highly heated experiments with neon seeding have been performed. In these experiments an increase of radiation in the core and especially the pedestal region plus a characteristic strong X-point radiator inside the confined region have been observed. The increased radiation inside the separatrix had no impact on the energy confinement. Only at the highest neon puff rates and highest heating powers (29 MW) a weak H-mode without back- transitions to L-mode (M-mode) could be achieved, while at lower heating powers or seeding levels L-modes and oscillations between H-mode and L-mode could be observed. In H-mode, at highest neon seeding levels the targets are in complete detachment. A degradation of the pedestal density profile was observed when neon was seeded. A correlation between this density pedestal degradation, the appearance of an X-point radiator and the detachment of the targets was found in neon seeded H-mode pulses.In ASTRA-TGLF core transport simulations it could be shown that the increase of the electron temperature in the core with neon seeding is attributed to a partial stabilisation of ion temperature gradient modes.
机译:为了研究强杂质辐射对JET-ILW的能量限制和放电稳定性的影响,已经进行了专门的高密度,高热和氖注入实验。在这些实验中,已经观察到芯部(尤其是基座区域)中辐射的增加以及受限区域内部的特征性强X点辐射器。分离层内部增加的辐射对能量限制没有影响。只有在最高的霓虹灯抽气速率和最高的加热功率(29 MW)下,才能实现弱的H模式,而没有向后转换到L模式(M模式),而在较低的加热功率或播种水平下,L模式和振荡在H模式和L模式之间可以观察到。在H模式下,在最高霓虹灯播种水平下,目标完全脱离。当注入氖时,观察到基座密度分布的退化。这种密度基架退化,X点辐射体的出现和靶的脱离之间存在相关性,在氖晶H型脉冲中被发现。在ASTRA-TGLF核传输模拟中,可以证明电子温度的升高带有氖离子注入的核芯中的离子归因于离子温度梯度模式的部分稳定。

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