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Divertor heat load in ASDEX Upgrade L-mode in presence of external magnetic perturbation

机译:在存在外部磁性扰动的ASDEX升级L-模式下的转型器热负荷

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Power exhaust is one of the major challenges for a future fusion device. Applying a nonaxisymmetric external magnetic perturbation is one technique that is studied in order to mitigate or suppress large edge localized modes which accompany the high confinement regime in tokamaks. The external magnetic perturbation induces breaking in the axisymmetry of a tokamak and leads to a 2D heat flux pattern on the divertor target. The 2D heat flux pattern at the outer divertor target is studied on ASDEX Upgrade in stationary L- mode discharges. The amplitude of the 2D characteristic of the heat flux depends on the alignment between the field lines at the edge and the vacuum response of the applied magnetic perturbation spectrum. The 2D characteristic reduces with increasing density. The increasing divertor broadening, S, with increasing density is proposed as the main actuator. This is supported by a generic model using field line tracing and the vacuum field approach that is in quantitative agreement with the measured heat flux. The perturbed heat flux, averaged over a full toroidal rotation of the magnetic perturbation, is identical to the non- perturbed heat flux without magnetic perturbation. The transport qualifiers, power fall- off length lambda(q) and divertor broadening, S, are the same within the uncertainty compared to the unperturbed reference. No additional cross field transport is observed.
机译:功率排气是未来融合设备的主要挑战之一。施加非激发器外部磁扰动是研究的一种技术,以便减轻或抑制大边缘局部化模式,该模式伴随着托卡马克的高限制性制度。外部磁扰动在TOKAMAK的轴上进行断裂,并导致转座靶上的2D热通量图案。在固定L模式放电中研究了外部偏移靶标处的2D热通量图案。热通量的2D特性的幅度取决于边缘处的场线与施加的磁性扰动光谱的真空响应之间的对准。 2D特性随着密度的增加而减少。提出了增加密度的越来越多的偏移,是主要的执行器。这是通过使用场线跟踪的通用模型以及与测量的热通量的定量协议中的真空场方法来支持。在磁性扰动的完全环形旋转上平均扰动的热通量与没有磁性扰动的非扰动热通量相同。与未受干扰的参考相比,运输限定员,功率跌落长度Lambda(Q)和转乘体扩大,S在不确定性内相同。没有观察到额外的横场运输。

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