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Design of a multistage 250 kJ capacitor bank for ohmic transformer of tokamak ‘‘ADITYA’’

 

作者: K. Sathyanarayana,   Y. C. Saxena,   P. I. John,   H. D. Pujara,   K. K. Jain,  

 

期刊: Review of Scientific Instruments  (AIP Available online 1993)
卷期: Volume 64, issue 5  

页码: 1263-1267

 

ISSN:0034-6748

 

年代: 1993

 

DOI:10.1063/1.1144076

 

出版商: AIP

 

数据来源: AIP

 

摘要:

Tokamaks require toroidal loop voltage for breakdown of the neutral gas, current rise, and the flat top phase. The temporal profile of the loop voltage established by the change of flux linked by the ohmic transformer has to be a noncosine waveform. In this paper a multistage capacitor bank is described which was used to energize the ohmic transformer in tokamak ADITYA with a major radius of 0.75 m, minor radius of 0.25 m, and a toroidal field of 1.5 T at the plasma center. A combination of capacitors charged to different voltages are switched in at appropriate times, to realize an experimental demand for initial high loop voltage followed by a lower sustaining loop voltage. Theoretical prediction for the duration of the secondary loop voltage as a function of circuit parameters, for a fast bank operation of 6 kV, slow bank, 4–4.5 kV, and slow bank, 2–2.5 kV yieldt0=1.25 mS,t1=4.95 mS, andt2=24.1 mS. These values are in close agreement to the measured values oft0=1.39 mS,t1=5.7 mS, andt2=23.7 mS. The trigger delays to the various capacitor bank sections are parameter dependent. To avoid repetitive adjustments in the delays, a novel scheme for consistent triggering is also highlighted.  

 

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