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Low-$n$ global ideal MHD instabilities in CFETR baseline scenario

Plasma Physics 2020-08-26 v1

Abstract

This article reports an evaluation on the linear ideal magnetohydrodynamic (MHD) stability of the China Fusion Engineering Test Reactor (CFETR) baseline scenario for various first-wall locations. The initial-value code NIMROD and eigen-value code AEGIS are employed in this analysis. A good agreement is achieved between two codes in the growth rates of n=110n=1-10 ideal MHD modes for various locations of the perfect conducting first-wall. The higher-nn modes are dominated by ballooning modes and localized in the pedestal region, while the lower-nn modes have more prominent external kink components and broader mode profiles. The influences of plasma-vacuum profile and wall shape are also examined using NIMROD. In presence of resistive wall, the low-nn ideal MHD instabilities are further studied using AEGIS. For the designed first-wall location, the n=1n = 1 resistive wall mode (RWM) is found unstable, which could be fully stabilized by uniform toroidal rotation above 2.9\% core Alfv\'en speed.

Keywords

Cite

@article{arxiv.1911.11615,
  title  = {Low-$n$ global ideal MHD instabilities in CFETR baseline scenario},
  author = {Rui Han and Ping Zhu and Debabrata Banerjee and Shikui Cheng and Xingting Yan and Linjin Zheng},
  journal= {arXiv preprint arXiv:1911.11615},
  year   = {2020}
}

Comments

20 pages, 12 figures. arXiv admin note: text overlap with arXiv:1711.09043