Pressure Rise due to SF6 Arcing and Energy Balance in a Closed Container

Author:

Kotari Masashi1,Tadokoro Tomo1,Tanaka Shin-ichi1,Iwata Mikimasa1,Amakawa Tadashi1

Affiliation:

1. Electric Power Engineering Research Lab., Central Research Institute of Electric Power Industry (CRIEPI)

Publisher

Institute of Electrical Engineers of Japan (IEE Japan)

Subject

Electrical and Electronic Engineering,Energy Engineering and Power Technology

Reference25 articles.

1. (1) IEC Int. Standard 62271-200 Edition 2.0: “High voltage switchgear and controlgear-Part 200: AC metal-enclosed switchgear and controlgear for rated voltage above 1kV and up to and including 52kV” (2011)

2. (2) IEC Int. Standard 62271-201: “AC insulation-enclosed switchgear and controlgear for rated voltages above 1kV and up to and including 52kV” (2006)

3. (3) R. Smeets, P. Leufkens, J. Hooijmans, N. Uzelac, P. Milovac, D. Kennedy, G. J. Pietsch, and K. Anantavanich: “On the Replacement of SF6 by Air in Internal Arc Testing of MV SF6 Insulated Switchgear”, 20th International Conference on Electricity Disribution (CIRED), Paper 0392, 8-11 (2009-6)

4. (4) E. Dullni, M. Schumacher, and G. Pietsch: “Pressure Rise in a Switchroom due to an Internal Arc in a Switchbord”, Proc. 6th Int. Symp. on Short-circuit Currents in Power Systems (1994-9)

5. (5) N. Uzelac, E. Dullni, M. Kriegel, and R. Pater: “Application of Simplified Model for the Calculation of the Pressure Rise in MV Switchgear due to Internal Arc Fault”, 22nd International Conference on Electricity Disribution (CIRED), Paper 1001, 10-13 (2013-6)

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