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IEEE Transactions on Power Delivery | 2007

Development of SF

Toshiaki Rokunohe; Yoshitaka Yagihashi; Kenji Aoyagi; Takashi Oomori; Fumihiro Endo

This paper describes the fundamental insulation characteristics of environmentally friendly gases; dry air, N2 and N2 O2 mixed gas. Conventional gas insulated switchgear (GIS) generally uses SF6 as against over 72.5 kV class. We have proposed GIS with a vacuum circuit breaker against from 72.5 kV class to 170 kV class as SF6-free GIS. Because the insulation gas of this type of SF6 -free GIS has the hardly unnecessary current interception performance, the optimal insulation gas can be selected based on fundamental insulation performance. From the standpoints of insulation performance and economical efficiency, we selected compressed dry air as the optimal insulation gas for this type of SF6-free GIS. However, the dielectric strength of dry air is approximately one-third that of SF6 gas. Therefore, to achieve roughly the same size as conventional GIS, some strategies must be employed to enhance insulation performance. This paper investigates the influence of gas pressure and a gas/solid hybrid insulation structure. The insulation performance of the gas/solid hybrid insulation structure using an insulation coating was found to be better than that of a barrier. Moreover, the dielectric strength of particles adhering to a spacer under the compressed dry air was about 1.5 times higher than that under N2. Thus, the high insulation reliability of the gas/solid hybrid structure was high against particles was confirmed. In view of these investigative findings, this type of SF6-free 72.5 kV GIS which was designed and manufactured, was confirmed to comply with the IEC standard.


Electrical Engineering in Japan | 2006

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Toshiaki Rokunohe; Yoshitaka Yagihashi; Fumihiro Endo; Takashi Oomori


Electrical Engineering in Japan | 2006

-Free 72.5 kV GIS

Toshiaki Rokunohe; Yoshitaka Yagihashi; Fumihiro Endo; Kenji Aoyagi; Hitoshi Saitoh; Takashi Oomori


Archive | 2004

Fundamental insulation characteristics of air; N2, CO2, N2/O2, and SF6/N2 mixed gases

Toshiaki Rokunohe; Yoshitaka Yagihashi; Fumihiro Endo; Tomoaki Utsumi; Shunji Ito; Takashi Omori


Ieej Transactions on Power and Energy | 2005

Development of 72-kV high-pressure air-insulated GIS with vacuum circuit breaker

Toshiaki Rokunohe; Yoshitaka Yagihashi; Fumihiro Endo; Kenji Aoyagi; Hitoshi Saitoh; Takashi Oomori


Archive | 1996

Gas-insulated switchgear tank

Jun Ozawa; Kazuya Ooishi; Katsuji Shindo; Takahide Matsuo; Yoshitaka Yagihashi; Takeo Yamazaki


Electrical Engineering in Japan | 2009

Development of 72kV High Pressure Air-insulated GIS with Vacuum Circuit Breaker

Toshiaki Rokunohe; Yoshitaka Yagihashi; Fumihiro Endo; Takashi Oomori


Ieej Transactions on Power and Energy | 2006

Substation with surge arresters

Toshiaki Rokunohe; Yoshitaka Yagihashi; Fumihiro Endo; Takashi Oomori


Archive | 1993

Development of a high-pressure air-insulated 72/84-kV disconnecting switch corresponding to bus-transfer current switching

Jun Ozawa; Katsuji Shindo; Kazuya Ooishi; Yoshitaka Yagihashi


Ieej Transactions on Power and Energy | 2006

Development of a High Pressure Air-insulated 72/84kV Disconnecting Switch Corresponding to Bus-Transfer Current Switching

Toshiaki Rokunohe; Tomohiro Moriyama; Yoshitaka Yagihashi; Makoto Koizumi; Fumihiro Endo

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