论文标题

等离子体 - 安滕纳与射流Alfven本本征活性诊断的实验研究

Experimental studies of plasma-antenna coupling with the JET Alfven Eigenmode Active Diagnostic

论文作者

Tinguely, R. A., Puglia, P. G., Fil, N., Dowson, S., Porkolab, M., Dvornova, A., Fasoli, A., Fitzgerald, M., Guillemot, V., Huysmans, G. T. A., Maslov, M., Sharapov, S., Testa, D., Contributors, JET

论文摘要

本文介绍了等离子体 - 安滕纳(PA)耦合的专门研究与JET中的Alfven Eigenmode主动诊断(AEAD)。稳定的AE及其共振频率F,阻尼率$γ$ <0,以及环形模式数字N用于各种PA分离和限制器与X点磁性配置。观察到两个稳定的AE在极限等离子体中在不同的低频和高频率下引起共鸣。 F和N的值不会随PA分离而变化。但是,$ \vertγ\ vert $随着Low-F的PA分离而增加,而不是高-F,但这可能是由于边缘条件略有不同。在整个从限制器到X点配置的过渡过程中,仍检测到高-F AE,尽管其阻尼速率会增加。另一方面,低F模式变得无法识别。线性电阻MHD代码施法器用于模拟类似AEAD的外部天线的频率扫描。对于限速脉冲,确定高-F模式为n = 0 GAE,而低-F模式可能是N = 2 TAE。在从限制器到X点配置的过渡过程中,蓖麻表示n = 1和2 EAS在边缘间隙中被激发。这些结果延长了先前在JET和ALCATOR C-MOD中的实验研究。验证Dvornova等人2020 Phys进行的计算工作。等离子体27 012507;并为在即将到来的Jet Energetic粒子实验中优化PA耦合提供指导,为此,AEAD将旨在确定Alpha颗粒在DT运动过程中对AE驱动的贡献。

This paper presents a dedicated study of plasma-antenna (PA) coupling with the Alfven Eigenmode Active Diagnostic (AEAD) in JET. Stable AEs and their resonant frequencies f, damping rates $γ$ < 0, and toroidal mode numbers n are measured for various PA separations and limiter versus X-point magnetic configurations. Two stable AEs are observed to be resonantly excited at distinct low and high frequencies in limiter plasmas. The values of f and n do not vary with PA separation. However, $\vertγ\vert$ increases with PA separation for the low-f, but not high-f, mode, yet this may be due to slightly different edge conditions. The high-f AE is detected throughout the transition from limiter to X-point configuration, though its damping rate increases; the low-f mode, on the other hand, becomes unidentifiable. The linear resistive MHD code CASTOR is used to simulate the frequency scan of an AEAD-like external antenna. For the limiter pulses, the high-f mode is determined to be an n = 0 GAE, while the low-f mode is likely an n = 2 TAE. During the transition from limiter to X-point configuration, CASTOR indicates that n = 1 and 2 EAEs are excited in the edge gap. These results extend previous experimental studies in JET and Alcator C-Mod; validate the computational work performed by Dvornova et al 2020 Phys. Plasmas 27 012507; and provide guidance for the optimization of PA coupling in upcoming JET energetic particle experiments, for which the AEAD will aim to identify the contribution of alpha particles to AE drive during the DT campaign.

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