H-mode operation in helium plasma with tungsten divertor and low input torque in EAST

To support the ITER early non-nuclear operational phase, recent helium experiments have been investigated intensively in the superconducting tokamak EAST equipped with ITER-like Tungsten divertor, under the condition of low injected torque. This paper demonstrates experimental observations from thes...

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Veröffentlicht in:Nuclear fusion 2020-09, Vol.60 (9), p.92001
Hauptverfasser: Zhang, B., Gong, X., Qian, J., Ding, R., Huang, J., Sun, Y.W., Gu, X., Li, Y.Y., Gao, W., Yu, Y.W., Li, M.H., Sun, Z., Zhong, G.Q., Duan, Y.M., Mao, S.T., Wang, L., Ding, F., Zang, Q., Lyu, B., Liu, H.Q., Wang, Y.M., Ma, Q., Wang, Y.F., Zhu, X., Wang, S.X., Huang, Y.H., Liu, J.W., Chen, Y.J., Yang, Z.D.
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Sprache:eng
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Zusammenfassung:To support the ITER early non-nuclear operational phase, recent helium experiments have been investigated intensively in the superconducting tokamak EAST equipped with ITER-like Tungsten divertor, under the condition of low injected torque. This paper demonstrates experimental observations from these experiments. In particular, we report the impact of helium concentration on the L-H transition power threshold, energy confinement, and the ELM behavior. Dependences of L-H threshold on electron density, plasma current and magnetic field are also discussed.
ISSN:0029-5515
1741-4326
DOI:10.1088/1741-4326/ab9be6