论文标题

通过调整用于ELM控制的3-D磁场的环形相,优化ITER中的Beam-ion限制

Optimizing beam-ion confinement in ITER by adjusting the toroidal phase of the 3-D magnetic fields applied for ELM control

论文作者

Sanchis, L., Garcia-Munoz, M., Viezzer, E., Loarte, A., Li, L., Liu, Y. Q., Snicker, A., Chen, L., Zonca, F., Pinches, S. D., Zarzoso, D.

论文摘要

在使用完整的轨道Ascot模拟中研究了15 mA ITER DT等离子体中N = 3谐振磁扰动(RMP)的中性束注射(NBI)颗粒的限制。现实的NBI分布函数以及3D壁和平衡,包括对使用MARS-F计算的外部应用的3D场的血浆响应。观察到的总快速离子损失取决于所施加的n = 3 rmp的多型光谱以及相对于NBI出生分布的施加扰动的绝对环形相。 RMP扰动的绝对环形相不影响ELM控制功能,这使其成为约束优化的关键参数。已经研究了由应用3D场引起的粒子典型角动量($ΔP_DA)的变化,研究了被施加的3D场诱导的快速离子损失的基础物理机制。提出的模拟表明,如先前在ASDEX升级研究中观察到的,该传输位于边缘共振层(ERTL)中。同样,我们的结果表明,等离子体边缘的几个线性和非线性共振的重叠可能是观察到的快速离子损失的原因。此处介绍的结果可能有助于在将来的ITER放电中相对于NBI限制的RMP配置。

The confinement of Neutral Beam Injection (NBI) particles in the presence of n=3 Resonant Magnetic Perturbations (RMPs) in 15 MA ITER DT plasmas has been studied using full orbit ASCOT simulations. Realistic NBI distribution functions, and 3D wall and equilibria, including the plasma response to the externally applied 3D fields calculated with MARS-F, have been employed. The observed total fast-ion losses depend on the poloidal spectra of the applied n=3 RMP as well as on the absolute toroidal phase of the applied perturbation with respect to the NBI birth distribution. The absolute toroidal phase of the RMP perturbation does not affect the ELM control capabilities, which makes it a key parameter in the confinement optimization. The physics mechanisms underlying the observed fast-ion losses induced by the applied 3D fields have been studied in terms of the variation of the particle canonical angular momentum ($δP_ϕ$) induced by the applied 3D fields. The presented simulations indicate that the transport is located in an Edge Resonant Transport Layer (ERTL) as observed previously in ASDEX Upgrade studies. Similarly, our results indicate that an overlapping of several linear and nonlinear resonances at the edge of the plasma might be responsible for the observed fast-ion losses. The results presented here may help to optimize the RMP configuration with respect to the NBI confinement in future ITER discharges.

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