DocumentCode :
67017
Title :
42-GHz/500-kW Electron Cyclotron Resonance Heating System on Tokamak SST-1
Author :
Shukla, Braj Kishore ; Patel, Paresh J. ; Patel, Jatin ; Babu, Rajan ; Patel, Harshida ; Dhorajia, Pragnesh ; Singh, Prashant ; Sumod, Cheeramveetil B. ; Thakkar, Dipal P. ; Gupta, Laxmi Narayan ; Barua, Ujjwal K. ; Jha, R. ; Bora, Dhiraj ; Shmelev, Mikha
Author_Institution :
Inst. for Plasma Res., Gandhinagar, India
Volume :
43
Issue :
1
fYear :
2015
fDate :
Jan. 2015
Firstpage :
485
Lastpage :
489
Abstract :
The 42-GHz electron cyclotron resonance heating (ECRH) system on SST-1 is used to carry out ECRH-assisted preionization, breakdown, start-up, and heating experiments at 0.75-T (second harmonic) and 1.5-T (fundamental harmonic) operation. The gyrotron delivers 500-kW power at 42-GHz frequency at -50-kV beam voltage, 20-A beam current, and 19-kV anode voltage. The gyrotron has been commissioned successfully on dummy load for full parameters (500 kW/500 ms). The transmission line consists of matching optic unit, circular corrugated waveguide, miter bend with bidirectional coupler, waveguide switches, polarizer, bellows, dc breaks, and an uptaper. Approximately 20-m-long transmission line is used to launch the power from gyrotron to tokamak, and the burn pattern at the exit of line near the tokamak ensures a good Gaussian beam. A composite launcher [consisting of four mirrors (two profiled and two plane), two gate valves, and two vacuum barrier windows] is used to connect two ECRH systems (42 and 82.6 GHz). The 82.6-GHz/200-kW ECRH system is also planned for SST-1 to carry out experiments at 3-T magnetic field. The 42-GHz ECRH system has been commissioned with tokamak SST-1, ECRH power has been launched in tokamak, and successful ECRH-assisted breakdown is achieved at second harmonic.
Keywords :
Tokamak devices; gyrotrons; plasma radiofrequency heating; plasma toroidal confinement; ECRH-assisted breakdown; ECRH-assisted preionization; ECRH-assisted start-up; Gaussian beam; anode voltage; beam current; beam voltage; bellows; bidirectional coupler; burn pattern; circular corrugated waveguide; composite launcher; current 20 A; dc breaks; electron cyclotron resonance heating system; frequency 42 GHz; frequency 82.6 GHz; gate valves; gyrotron; magnetic flux density 0.75 T; magnetic flux density 1.5 T; magnetic flux density 3 T; matching optic unit; mirrors; miter bend; power 200 kW; power 500 kW; second harmonic operation; tokamak SST-1; transmission line; uptaper; vacuum barrier windows; voltage -50 kV; voltage 19 kV; waveguide polarizer; waveguide switches; Electric breakdown; Gyrotrons; Mirrors; Power transmission lines; Tokamaks; Transmission line measurements; Electron cyclotron resonance heating (ECRH); gyrotron; launcher; plasma start-up; steady state superconducting tokamak (SST); transmission line; transmission line.;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2014.2369517
Filename :
6971230
Link To Document :
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