中文

由湍流转换调制的边缘温度环振荡维持稳态改善约束等离子体

等离子体物理 2020-02-21 v1

摘要

近年来,在实验先进超导托卡马克(Experimental Advanced Superconducting Tokamak)上实现了可重复的稳态改善约束模式(I-mode),其特征是具有良好的约束而无粒子输运垒,这有利于解决未来聚变堆中由边缘局域模(ELM)引起的热流问题以及氦灰问题。首次发现了由湍流转换与边缘温度振荡之间的耦合所维持稳态I-mode的微观机制。我们识别出一种具有方位角对称结构(n=0n=0,m=0m=0)的径向局域化边缘温度环振荡(ETRO),其由离子温度梯度模(ITG)与捕获电子模(TEM)之间的交替湍流转换所引起。ITG-TEM转换由局域电子温度梯度控制,并与回旋动理学模拟一致。由ETRO、湍流与输运转换组成的自组织系统在维持I-mode约束中起关键作用。这些结果为未来获取、维持和控制稳态I-mode提供了新的物理基础。

关键词

引用

@article{arxiv.2002.08544,
  title  = {Edge Temperature Ring Oscillation Modulated by Turbulence Transition for Sustaining Stationary Improved Energy Confinement Plasmas},
  author = {A. D. Liu and X. L. Zou and M. K. Han and T. B. Wang and C. Zhou and M. Y. Wang and Y. M. Duan and G. Verdoolaege and J. Q. Dong and Z. X. Wang and X. Feng and J. L. Xie and G. Zhuang and W. X. Ding and S. B. Zhang and Y. Liu and H. Q. Liu and L. Wang and Y. Y. Li and Y. M. Wang and B. Lv and G. H. Hu and Q. Zhang and S. X. Wang and H. L. Zhao and C. M. Qu and Z. X. Liu and Z. Y. Liu and J. Zhang and J. X. Ji and X. M. Zhong and T. Lan and H. Li and W. Z. Mao and W. D. Liu and EAST Team},
  journal= {arXiv preprint arXiv:2002.08544},
  year   = {2020}
}

备注

11 pages, 6 figures