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Study of impurity transport in HL-2A ECRH L-mode plasmas with radially different ECRH power depositions.

Authors :
Z.y. Cui
K. Zhang
S. Morita
X.q. Ji
X.t. Ding
Y. Xu
P. Sun
J.m. Gao
C.f. Dong
D.l. Zheng
Y.g. Li
M. Jiang
D. Li
W.l. Zhong
Yi Liu
Y.b. Dong
S.d. Song
L.m. Yu
Z.b. Shi
B.z. Fu
Source :
Nuclear Fusion. May2018, Vol. 58 Issue 5, p1-1. 1p.
Publication Year :
2018

Abstract

In HL-2A, an inverse sawtooth oscillation is observed with a long-lasting m/n  =  1/1 mode during ECRH phase with power deposition inside sawtooth inversion radius (inner-deposited ECRH), while a normal sawtooth instead appears when the ECRH power is deposited outside sawtooth inversion radius (outer-deposited ECRH). Aluminum is then injected as a trace impurity with laser blow-off (LBO) method into the inner- and outer-deposited ECRH phases of HL-2A discharges to investigate the effect of ECRH on impurity transport. Temporal behavior of soft x-ray (SXR) array signals is analyzed with a 1D impurity transport code, and radial structures of impurity transport coefficients are obtained. The result shows that the radial transport of Al ions is strongly enhanced during the inner-deposited ECRH phase. In particular, an outward convection velocity is developed with positive values of 0  ⩽  V(ρ)  ⩽  3.8 m s−1 in ρ  ⩽  0.5, while the convection velocity is inward in ρ  ⩾  0.6. In the outer-deposited ECRH discharge, on the other hand, the convection velocity takes a big negative value in ρ  ⩽  0.4 and close to zero at ρ ~ 0.6. In ohmic discharges, an inward V(ρ) always appears in the whole plasma radii and gradually increases toward the plasma edge (−3.2 m s−1 at ρ  =  1). The simulation result also indicates that centrally-peaked Al ion density profiles presented in the outer-deposited ECRH discharge can be flattened by the inner-deposited ECRH. Modification of impurity transport is discussed in the presence of long-lasting m/n  =  1/1 MHD mode. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00295515
Volume :
58
Issue :
5
Database :
Academic Search Index
Journal :
Nuclear Fusion
Publication Type :
Academic Journal
Accession number :
129159644
Full Text :
https://doi.org/10.1088/1741-4326/aab166