DocumentCode :
1305577
Title :
Empirical analysis of high pressure SF6 gas breakdown strength in a spark gap switch
Author :
Nam, S.H. ; Rahaman, H. ; Heo, H. ; Park, S.S. ; Shin, J.W. ; So, J.H. ; Jang, W.
Author_Institution :
Pohang Accel. Lab., Pohang, South Korea
Volume :
16
Issue :
4
fYear :
2009
fDate :
8/1/2009 12:00:00 AM
Firstpage :
1106
Lastpage :
1110
Abstract :
It is difficult to predict or measure the breakdown strength of SF6 gas in the high pressure range. Therefore, it is hard to find reference data of the high pressure SF6 gas breakdown strength. This paper attempts to provide empirically a novel criterion for the estimation of SF6 gas breakdown strength in a spark gap switch. For this purpose, J.C. Martin´s breakdown field strength of non-uniform gap in air and Kuffel et al´s breakdown field strength by exploiting streamer criterion of uniform field in SF6 gas are adopted. The research is made for the empirical method of predicting the high pressure SF6 breakdown strength and compared results have been ascertained with several experimental data from different investigators in a wide range of pd (pressure times distance) and field enhancement factor (FEF). For further confirmation of the empirical approach, we have designed and developed a high pressure spark gap switch to be closely coupled to a high voltage PFN-Marx system. The designed spark gap switch operates above 1 MV. Our tests have verified the prediction of the breakdown strength of the SF6 filled spark gap switch in a pd range of 0.27-1.62 MPa . cm (2.7 to 16.2 bar.cm).
Keywords :
SF6 insulation; electric breakdown; spark gaps; switches; empirical analysis; field enhancement factor; high pressure SF6 gas breakdown strength; high voltage PFN-Marx system; spark gap switch; streamer criterion; Breakdown voltage; Electric breakdown; Gas insulation; Laboratories; Partial discharges; Pressure measurement; Pulse circuits; Pulse power systems; Sparks; Switches; Spark gap switch, breakdown strength, field enhancement, high pressure, SF6 gas.;
fLanguage :
English
Journal_Title :
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher :
ieee
ISSN :
1070-9878
Type :
jour
DOI :
10.1109/TDEI.2009.5211862
Filename :
5211862
Link To Document :
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