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Intrinsic rotation reversal, non-local transport, and turbulence transition in KSTAR L-mode plasmas

Authors :
Yuejiang Shi
S. W. Yoon
J. H. Jeong
W. C. Lee
J.A. Lee
Y. S. Bae
M. Joung
S. G. Lee
J. Leem
SeongMoo Yang
Jaehyun Lee
Won-Ha Ko
Minjun Choi
K. D. Lee
Patrick Diamond
J. M. Kwon
Jung-Woo Yoo
Katsumi Ida
D.H. Na
Sang-hee Hahn
Yong-Su Na
S. H. Ko
Source :
Nuclear Fusion. 57:066040
Publication Year :
2017
Publisher :
IOP Publishing, 2017.

Abstract

Experiments of electron cyclotron resonance heating (ECH) power scan in KSTAR tokamak clearly demonstrate that both the cutoff density for non-local heat transport (NLT) and the threshold density for intrinsic rotation reversal can be determined by the collisionality. We demonstrate that NLT can be affected by ECH, and the intrinsic rotation direction follows the changes of NLT. The cutoff density of NLT and threshold density for rotation reversal can be significantly increased by ECH. The poloidal flow of turbulence in core plasma is in the electron and the ion diamagnetic direction in ECH plasmas and high density OH plasma, respectively. The auto-power spectra of density fluctuation are almost the same in the outer region for both ECH and OH plasmas. On the other hand, the divergence in density fluctuation spectra at high frequency range between OH and ECH plasma is clearly observed in core region. The features of linear confinement and saturated confinement also appeared in ECH plasma, which is similar to the linear ohmic confinement (LOC) mode and saturate ohmic confinement (SOC) mode. All these observations in macroscopic parameters and micro fluctuations suggest a possible link between the macro phenomena and the structural changes in turbulence mode.

Details

ISSN :
17414326 and 00295515
Volume :
57
Database :
OpenAIRE
Journal :
Nuclear Fusion
Accession number :
edsair.doi...........78c7f01d9584957db43ec879b320aea2
Full Text :
https://doi.org/10.1088/1741-4326/aa6b23