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Analysis of plasma equilibrium based on orbit-driven current density profile in steady-state plasma on QUEST

Authors :
Yoshihiko Nagashima
Yanzheng Jiang
Md. Mahbub Alam
Y. Kawamata
S. Kawasaki
Kenichi Kurihara
Hiroshi Idei
Makoto Hasegawa
Katsumasa Nakamura
K. Araki
H. Nakashima
A. Higashijima
Osamu Mitarai
M. Sueoka
Akihide Fujisawa
Hideki Zushi
Kazutoshi Tokunaga
Atsushi Fukuyama
Kazuaki Hanada
Manabu Takechi
Takahiro Nagata
Source :
Fusion Engineering and Design. :1528-1533
Publication Year :
2016
Publisher :
Elsevier BV, 2016.

Abstract

In the present RF-driven (ECCD) steady-state plasma on QUEST (Bt = 0.25 T, R = 0.68 m, a = 0.40 m), plasma current seems to flow in the open magnetic surface outside of the closed magnetic surface in the low-field region according to plasma current fitting (PCF) method. We consider that the current in the open magnetic surface is due to orbit-driven current by high-energy particles in RF-driven plasma. So based on the analysis of current density profile based on the orbit-driven current, plasma equilibrium is to be calculated. We calculated high energy particles guiding center orbits as a contour plot of conserved variable in Hamiltonian formulation and considered particles initial position with different levels of energy and pitch angles that satisfy resonance condition. Then the profile of orbit-driven current is estimated by multiplying the particle density on the resonance surface and the velocity on the orbits. This analysis shows negative current near the magnetic axis and hollow current profile is expected even if pressure driven current is considered. Considering the hollow current profile shifted toward the low-field region, the equilibrium is fitted by J-EFIT coded by MATLAB.

Details

ISSN :
09203796
Database :
OpenAIRE
Journal :
Fusion Engineering and Design
Accession number :
edsair.doi...........8ac36cfe96f7fae96c635dcbfd46020e
Full Text :
https://doi.org/10.1016/j.fusengdes.2015.11.035