论文标题
在2019 - 2020年喷气式氘活动期间的Alfvéneigenmode主动诊断的结果
Results from the Alfvén Eigenmode Active Diagnostic during the 2019-2020 JET deuterium campaign
论文作者
论文摘要
本文介绍了对2019 - 2020年氘活动期间Jet Tokamak中Alfvéneigenmode主动诊断(AEAD)操作期间观察到的模式激发的广泛分析的结果。在八个带有独立力量和相分的八个环形间隔天线中,有六个成功地在479个等离子体中积极令人兴奋的稳定MHD模式。总共检测到4768个磁共振,最多十四个快速磁探针。在这项工作中,我们介绍了共振频率$ f_0 $的计算,减湿率$γ<0 $和toroidal模式数字$ n $,跨越参数范围$ f_0 \ $ 30-250 kHz,$-γ\ $ 0-13 kHz和$ \ vert N \ vert N \ Vert N \ Vert N \ Vert N \ Vert \ leq 30 $ 30 $。通常,在谐振和计算出的环形Alfvén本征频率之间以及在AEAD应用的环形模式数与激发共振的估计的环形模式数之间可以看到良好的一致性。我们注意到数据库中的几个趋势:共振检测的概率随血浆电流和外部加热能力而降低;归一化阻尼率随边缘安全系数而增加,但随着外部加热而降低。这些结果提供了关键信息,以准备未来的实验运动,并更好地了解在即将到来的DT运动中α粒子在场的情况下,在alfvéneigenmodes的兴奋物理和阻尼的物理学,从而充满信心地向未来的Tokamaks充满信心。
This paper presents results of extensive analysis of mode excitation observed during the operation of the Alfvén Eigenmode Active Diagnostic (AEAD) in the JET tokamak during the 2019-2020 deuterium campaign. Six of eight toroidally spaced antennas, each with independent power and phasing, were successful in actively exciting stable MHD modes in 479 plasmas. In total, 4768 magnetic resonances were detected with up to fourteen fast magnetic probes. In this work, we present the calculations of resonant frequencies $f_0$, damping rates $γ< 0$, and toroidal mode numbers $n$, spanning the parameter range $f_0 \approx$ 30 - 250 kHz, $-γ\approx$ 0 - 13 kHz, and $\vert n \vert \leq 30$. In general, good agreement is seen between the resonant and the calculated toroidal Alfvén Eigenmode frequencies, and between the toroidal mode numbers applied by the AEAD and estimated of the excited resonances. We note several trends in the database: the probability of resonance detection decreases with plasma current and external heating power; the normalized damping rate increases with edge safety factor but decreases with external heating. These results provide key information to prepare future experimental campaigns and to better understand the physics of excitation and damping of Alfvén Eigenmodes in the presence of alpha particles during the upcoming DT campaign, thereby extrapolating with confidence to future tokamaks.