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Runaway electron mitigation by 3D fields in the ASDEX-Upgrade experiment

机译:Asdex升级实验中的3D字段失控电子缓解

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Disruption-generated runaway electron (RE) beams represent a severe threat for tokamak plasma-facing components in high current devices like ITER, thus motivating the search of mitigation techniques. The application of 3D fields might aid this purpose and recently was investigated also in the ASDEX Upgrade experiment by using the internal active saddle coils (termed B-coils). Resonant magnetic perturbations (RMPs) with dominant toroidal mode number n = 1 have been applied by the B-coils, in a RE specific scenario, before and during disruptions, which are deliberately created via massive gas injection. The application of RMPs affects the electron temperature profile and seemingly changes the dynamics of the disruption; this results in a significantly reduced current and lifetime of the generated RE beam. A similar effect is observed also in the hard-x-ray (HXR) spectrum, associated to RE emission, characterized by a partial decrease of the energy content below 1 MeV when RMPs are applied. The strength of the observed effects strongly depends on the upper-to-lower B-coil phasing, i.e. on the poloidal spectrum of the applied RMPs, which has been reconstructed including the plasma response by the code MARS-F. A crude vacuum approximation fails in the interpretation of the experimental findings: despite the relatively low beta (< 0.5%) of these discharges, a modest amplification (factor of 2) of the edge kink response occurs, which has to be considered to explain the observed suppression effects.
机译:破坏产生的失控电子(RE)梁代表了像迭代的高电流器件中的面向托卡马克等离子体组件的严重威胁,从而激励了缓解技术的搜索。 3D字段的应用可能有助于此目的,最近还通过使用内部主动鞍线圈(称为B-CONCS)来研究ASDEX升级实验。具有主导环形模式N = 1的共振磁扰动(RMP)已经通过B线圈,在中断之前和中断的RE特定场景中施加,这是通过大规模气体喷射故意产生的。 RMP的应用影响了电子温度曲线,看似改变了破坏的动态;这导致产生的RE波束的电流和寿命显着降低。还观察到与RE发射相关的硬X射线(HXR)光谱中观察到类似的效果,其特征在于施加RMP时能量含量低于1 MEV的部分降低。观察到的效果的强度强烈取决于上下B线圈相位,即在施加的RMP的针状体光谱上,已经重建了代码MARS-F的等离子体响应。在实验结果的解释中,粗糙真空近似失败:尽管β(<0.5%)的这些放电相对较低,但发生了边缘扭结响应的适度扩增(因子2),这必须被认为是解释观察到的抑制作用。

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