Bulletin of the American Physical Society
60th Annual Meeting of the APS Division of Plasma Physics
Volume 63, Number 11
Monday–Friday, November 5–9, 2018; Portland, Oregon
Session BP11: Poster Session I: HEDP; General Stellarator; Wendelstein 7-X; Heating, Current Drive, and Energetic Ions (9:30am-12:30pm)
Monday, November 5, 2018
OCC
Room: Exhibit Hall A1&A
Abstract ID: BAPS.2018.DPP.BP11.48
Abstract: BP11.00048 : Design and Implementation of a 200kW, 28GHz gyrotron system for the Compact Toroidal Hybrid Experiment*
Presenter:
Gregory J. Hartwell
(Auburn University)
Authors:
Gregory J. Hartwell
(Auburn University)
Stephen F. Knowlton
(Auburn University)
David A. Maurer
(Auburn University)
David A. Ennis
(Auburn University)
The Compact Toroidal Hybrid (CTH) is an l = 2,m = 5 torsatron/tokamak hybrid (R0 = 0.75 m, ap ∼0.2 m, and |B| ≤ 0.7 T). It can generate its highly configurable confining magnetic fields solely with external coils, but typically operates with up to 80 kA of ohmically-generated plasma current for heating. A 28 GHz, 200kW pulsed gyrotron system operating at 2nd harmonic for ECRH is being installed to supplement the existing 10kW klystron system operating at the fundamental frequency; the latter will be used to generate the target plasma. Ray-tracing calculations that guide the selection of launching position, antenna focal length, and beam-steering characteristics of the ECRH have been performed with the TRAVIS code[1]. The calculated absorption is up to 95.7% for vertically propagating rays; however, the absorption is more sensitive to magnetic field variations than for a side launch where the field gradient is tokamak-like. The design of the waveguide path and components for the top-launch scenario will be presented, as well as initial ECRH results.
[1]N.B. Marushchenko, Y. Turkin, H. Maassberg, Comp. Phys. Comm. 185 165 (2014)
*This work is supported by U.S. Department of Energy Grant No. DE-FG02-00ER54610
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.DPP.BP11.48
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