4.5 Article

Overview of EAST experiments on the development of high-performance steady-state scenario

期刊

NUCLEAR FUSION
卷 57, 期 10, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/1741-4326/aa7861

关键词

steady-state operation; long-pulse discharge; scenario development; EAST tokamak

资金

  1. National Magnetic Confinement Fusion Science Program of China [2013GB106000, 2014GB106000, 2015GB101000, 2015GB102000, 2015GB103000]
  2. National Natural Science Foundation of China [11261140328, 11422546]

向作者/读者索取更多资源

The EAST research program aims to demonstrate steady-state long-pulse advanced high-performance H-mode operations with ITER-like poloidal configuration and RF-dominated heating schemes. Since the 2014 IAEA FEC, EAST has been upgraded with all ITER-relevant auxiliary heating and current drive systems, enabling the investigation of plasma profile control by the coupling/integration of various auxiliary heating combinations. Fully non-inductive steady-state H-mode plasma (H-98,H-y2 > 1.1) was extended over 60 s for the first time with sole RF heating plus good power coupling and impurity and particle control. By means of the 4.6 GHz and 2.45 GHz LHCD systems, H-mode can be obtained and maintained at relatively high density, even up to n(e) similar to 4.5 x 10(19) m(-3), where a current drive effect is still observed. Significant progress has been achieved on EAST, including: (i) demonstration of a steady-state scenario (fully non-inductive with V-loop similar to 0.0 V at high beta(P) similar to 1.8 and high-performance in upper single-null (epsilon similar to 1.6) configuration with the tungsten divertor; (ii) discovery of a stationary H-mode regime with no/small ELM using 4.6 GHz LHCD, and; (iii) achievement of ELM suppression in slowly rotating H-mode plasma with n = 1 and 2 RMP compatible with long-pulse operations. The new advances in scenario development provide an integrated solution in achieving long-pulse steady-state operations on EAST.

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