Optimization of fast three-electrode spark gaps isolated with a SF6 and he mixture

This paper considered the possibility of reducing the dissipation of the trigger time of the three-electrode spark gaps with a separated triggered electrode. The work is of a theoretical, numerical and of experimental nature. The experiments were performed on a spark gap model under well-controlled...

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Veröffentlicht in:Nuclear technology & radiation protection 2021-01, Vol.36 (3), p.234-242
Hauptverfasser: Nedic, Teodora, Lazarevic, Djordje, Stankovic, Koviljka, Kartalovic, Nenad
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Sprache:eng
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Zusammenfassung:This paper considered the possibility of reducing the dissipation of the trigger time of the three-electrode spark gaps with a separated triggered electrode. The work is of a theoretical, numerical and of experimental nature. The experiments were performed on a spark gap model under well-controlled laboratory conditions. It was determined that the results obtained with the model can be applied to the spark gap prototype. Unlike the previous research in this area, the computer-designed spark gap that was used can be triggered with one mechanism only. Also, as opposed to the previous study, a mixture of SF6 and He gases and the third electrode with a double ionization effect were used. The obtained results showed the optimal combination of the construction solution, insulation gas, triggered impulse, and the triggered electrode's shape, reduce the stochastic dissipation of a random variable far in the sub-microsecond field. This result is of great significance for the parallel triggering of current and voltage generators to obtain the best superposition signals.
ISSN:1451-3994
1452-8185
DOI:10.2298/NTRP2103234N