Title :
Upgrades and performance of the electron cyclotron heating system on DIII-D
Author :
Cengher, Mirela ; Lohr, John ; Gorelov, Y.A. ; Ellis, Ryan ; Kolemen, E. ; Ponce, Dan ; Prater, Ron ; Noraky, S. ; Moeller, C.P.
Author_Institution :
Gen. Atomics, San Diego, CA, USA
Abstract :
The Electron Cyclotron Heating (ECH) system on DIII-D consists of six 110 GHz gyrotrons with 6 MW installed power for pulses limited administratively to 5 s in length. The transmission coefficient is better than -1.1 dB for four of the transmission lines, close to the theoretical value. A new depressed collector gyrotron was recently installed and is injecting up to 720 kW of power into DIII-D during 2013 tokamak operations. Three of the four dual waveguide launchers, which can steer the rf beams ±20 degrees both poloidally and toroidally, were used for real-time neoclassical tearing mode control and suppression with increased poloidal scanning speed up to 60 deg/s and positioning accuracy of the beams of ±2 mm at the plasma center. The ECH capabilities on DIII-D are being steadily updated, leading to increased experimental flexibility and high reliability of the system. In the past year the ECH system reliability reached 87%, for 2352 successful individual gyrotron shots into DIII-D. Planning is under way for the addition of two new depressed collector gyrotrons, one at 110 GHz, 1.2 MW and another at 117.5 GHz, 1.5 MW generated power, both of which are being manufactured at Communications and Power Industries (CPI).
Keywords :
Tokamak devices; fusion reactor instrumentation; gyrotrons; plasma radiofrequency heating; plasma toroidal confinement; reliability; tearing instability; transmission lines; Communications and Power Industries; DIII-D; ECH system reliability; depressed collector gyrotron; dual waveguide launchers; electron cyclotron heating system; experimental flexibility; frequency 110 GHz; frequency 117.5 GHz; gyrotron shots; high reliability; plasma center; poloidal scanning speed; positioning accuracy; power 1.2 MW; power 1.5 MW; power 6 MW; real-time neoclassical tearing mode control; rf beams; tokamak operations; transmission coefficient; transmission lines; Gyrotrons; Mirrors; Optical waveguides; Power measurement; Power transmission lines; Radio frequency; Transmission line measurements; DIII-D; antenna; electron cyclotron current drive; electron cyclotron heating; gyrotron; rf transmission line;
Conference_Titel :
Fusion Engineering (SOFE), 2013 IEEE 25th Symposium on
Conference_Location :
San Francisco, CA
Print_ISBN :
978-1-4799-0169-2
DOI :
10.1109/SOFE.2013.6635387