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A stationary long-pulse ELM-absent H-mode regime in EAST

  • Y. Ye
  • , G. S. Xu
  • , B. N. Wan
  • , R. Chen
  • , N. Yan
  • , H. Y. Guo
  • , L. M. Shao
  • , Q. Q. Yang
  • , H. Q. Wang
  • , W. Zhang
  • , T. Y. Xia
  • , T. Zhang
  • , Y. Y. Li
  • , T. F. Wang
  • , Q. Zang
  • , Y. J. Hu
  • , G. J. Wu
  • , L. Zhang
  • , B. L. Hao
  • , L. Wang
  • Y. L. Li, X. Q. Wu, L. Chen, H. Lan, Y. F. Wang, J. C. Xu, G. H. Hu, S. Y. Ding, H. Zhang, N. Zhao, J. Li
  • CAS - Institute of Plasma Physics
  • University of Science and Technology of China
  • General Atomics

科研成果: 期刊稿件文章同行评审

38 引用 (Scopus)

摘要

A stationary edge-localized mode (ELM)-absent H-mode regime, with an electrostatic edge coherent mode (ECM) which resides in the pedestal region, has been achieved in the EAST tokamak recently. This regime allows the operation of a nearly fully noninductive long pulse (>15 s), exhibiting a relatively high pedestal and good global energy confinement with H98,y2 near 1.2, and excellent impurity control. Furthermore, this regime is mostly obtained with a 4.6 GHz lower hybrid current drive (LHCD) or counter-current neutral beam injection (NBI), plus electron cyclotron resonance heating, and an extensive lithium wall coating. This stationary ELM-absent H-mode regime transits to a stationary small ELM H-mode regime, and upon additional heating power from the 2.45 GHz LHCD, an ion cyclotron resonant frequency or co-current NBI is applied (under 4.6 GHz LHCD heating background). A slight change of the plasma configuration also makes the small ELMs reappear. The experimental observations suggest that a long-pulse ELM-absent regime can be induced by the ECM, which exhibits strong electrostatic fluctuations and may provide a channel for continuous particle (especially impurities) and heat exhaust across the pedestal. The ECM exists in the collisionality of ve = 2.5-4 and the pressure gradient |δP| = |dP/dp | = 100-200 (kPa), which is in good agreement with the previous simulation of GYRO. This ELM-absent H-mode regime with ECM may offer a suitable candidate for high-performance, steady-state H-mode operation in future fusion reactors.

源语言英语
期刊论文编号086041
期刊Nuclear Fusion
57
8
DOI
出版状态已出版 - 14 7月 2017

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