December 2013

Conference Paper

Operating the Upgraded NSTX HHFW Antenna Array in an Environment with Li-coated Surfaces

By:
Ryan, Philip M; Ellis, R.; Hosea, Joel; Kung, C. C.; LeBlanc, B; Pinsker, R.; Taylor, G.; Wilson, J. R.; NSTX Team,
Volume:
1406
Publication Date:
December 2013
Conference Name:
Joint Meeting of the 19 Topical Conference on Radio Frequency Power in Plasmas and the US Japan RF Physics Workshop (2011)
Conference Location:
Newport, Rhode Island, United States of America
Conference Sponsor:
PPPL
View DOI Listing:
https://doi.org/10.1063/1.3664938

Abstract

The single-feed, end-grounded straps of the NSTX 12-strap HHFW antenna array have been replaced with double-feed, center-grounded straps to reduce the voltages in the vicinity of the Faraday shield (FS) for a given strap current. The strap spacings to the FS and to the back plate were increased by 3 mm to decrease the electric fields for a given voltage. The electric fields near the FS have been roughly halved for the same strap currents, permitting a direct examination of the roles that internal fields play in determining antenna power limits in plasmas. Extensive RF/plasma conditioning of the antenna was required to remove enough of the evaporated Li deposits from prior wall conditioning to permit coupling in excess of 4 MW to L- and H-mode plasmas in 2009. Most arcs were associated with expulsion of Li from the FS/antenna frame surfaces. The center-grounded straps were less susceptible to arcing during ELMing Hmode plasmas. Reliable operation above 2 MW was difficult after the installation of the Liquid Lithium Divertor (LLD) in 2010. Li-compound “dust” was found in the antennas after this run and is believed to have contributed to the reduced power limit.