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Progress in reducing ICRF-specific impurity release in ASDEX upgrade and JET

Authors :
Bobkov, V.
Andersson Sundén, Erik
Binda, Federico
Cecconello, Marco
Conroy, Sean
Dzysiuk, N.
Ericsson, Göran
Eriksson, Jacob
Hellesen, Carl
Hjalmarsson, Anders
Possnert, Göran
Sjöstrand, Henrik
Skiba, Mateusz
Weiszflog, Matthias
Zychor, I.
Bobkov, V.
Andersson Sundén, Erik
Binda, Federico
Cecconello, Marco
Conroy, Sean
Dzysiuk, N.
Ericsson, Göran
Eriksson, Jacob
Hellesen, Carl
Hjalmarsson, Anders
Possnert, Göran
Sjöstrand, Henrik
Skiba, Mateusz
Weiszflog, Matthias
Zychor, I.
Publication Year :
2017

Abstract

Use of new 3-strap ICRF antennas with all-tungsten (W) limiters in ASDEX Upgrade results in a reduction of the W sources at the antenna limiters and of the W content in the confined plasma by at least a factor of 2 compared to the W-limiter 2-strap antennas used in the past. The reduction is observed with a broad range of plasma shapes. In multiple locations of antenna frame, the limiter W source has a minimum when RF image currents are decreased by cancellation of the RF current contributions of the central and the outer straps. In JET with ITER-like wall, ITER-like antenna produces about 20% less of main chamber radiation and of W content compared to the old A2 antennas. However the effect of the A2 antennas on W content is scattered depending on which antennas are powered. Experiments in JET with trace nitrogen (N-2) injection show that a presence of active ICRF antenna close to the midplane injection valve has little effect on the core N content, both in dipole and in -90 degrees phasing. This indicates that the effect of ICRF on impurity transport across the scape-off-layer is small in JET compared to the dominant effect on impurity sources leading to increased impurity levels during ICRF operation. (C) 2016 The Authors. Published by Elsevier Ltd.<br />For complete list of authors see http://dx.doi.org/10.1016/j.nme.2016.10.026

Details

Database :
OAIster
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1235237507
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1016.j.nme.2016.10.026