论文标题
全球电磁不稳定性的多规模分析,
Multi-scale analysis of global electromagnetic instabilities in ITER Pre-Fusion-Power Operation plasmas
论文作者
论文摘要
对于ITER中融合前功率操作(PFPO)等离子体场景,使用粒子中的粒子代码ORB5进行全局电磁旋能模拟,并具有半场(2.65 t)和半电流(7.5 mA)。我们报告了排放的“多尺度”分析,考虑到三个比例长度的特征模式和INSTABILIS。尽管该场景名义上将具有1 MeV注入的颗粒的中性光束加热,但是在没有这种源的情况下,研究了Alfvéneigenmodes,并且在没有此类源的情况下进行了反向剪切(rsae),toroidal(tae)和椭圆形(eae)(eae)alfvéneigenmodes的弱降低效率低下的数字($ 10)。 35 $)。在较高的环形模式数字($ 40 \ leq n \ leq 70 $)下,已经观察到不稳定的alfvénic模式接近理性表面,并被标记为β诱导的alfvéneigenmodes(bae)/alfvénicinicinicion温度梯度(aitg)模式,因为他们的频率与他们的频率相关联,因为他们与他们的频率gap相关,因为他们的频率与他们的频率gap相关。 alfvénic连续体。在没有能量颗粒的情况下,这些模式是不稳定的,并且添加一种能量颗粒(以及各向同性1 MEV的分布减慢)对其生长速率的影响微不足道。在较高的环形模式数字($ 150 \ Lessapprox n <220 $)下,可以观察到低频微观不稳定性。
Global electromagnetic gyrokinetic simulations are performed with the Particle-in-Cell code ORB5 for an ITER Pre-Fusion-Power-Operation (PFPO) plasma scenario, with half-field (2.65 T) and half-current (7.5 MA). We report on a 'multi-scale' analysis of the discharge, considering eigenmodes and instabilies across three scale-lengths. Although the scenario will nominally have neutral beam heating with particles injected with 1 MeV, Alfvén eigenmodes are investigated in the absence of such source, and Reversed Shear (RSAE), Toroidal (TAE) and Elliptical (EAE) Alfvén eigenmodes are found with weak damping for moderately low toroidal mode numbers ($10 \leq n \leq 35$). At higher toroidal mode numbers ($40 \leq n \leq 70$), unstable Alfvénic modes have been observed close to rational surfaces and are labelled as Beta-induced Alfvén eigenmodes (BAE)/Alfvénic Ion Temperature Gradient (AITG) modes, since their frequency is associated with the BAE gap and they are driven by the bulk plasma on the Alfvénic continuum. These modes are unstable in the absence of energetic particles, and adding a species of energetic particles (with an isotropic 1 MeV slowing down distribution) has negligible impact on their growth rate. At higher toroidal mode numbers ($150 \lessapprox n < 220$), low frequency microscale instabilities are observed.