Hostname: page-component-7479d7b7d-m9pkr Total loading time: 0 Render date: 2024-07-10T17:27:17.297Z Has data issue: false hasContentIssue false

Monitoring of the dielectric strength of the air/SF6-mixtures for application in gas insulated transmission lines

Published online by Cambridge University Press:  25 June 2004

A. Moukengué Imano*
Affiliation:
University Institute of Technology, University of Douala, BP 8698, Douala, Republic of Cameroon
Get access

Abstract

This paper investigates the dielectric properties of various air/SF6 gas mixtures based upon a cylindrical spacer model with adhering particle on the surface under homogeneous field conditions. The investigation involves a comparison with pure SF6. The flashover field strength for clean and particle contaminated spacer surface under lightning impulse (LI) and alternating voltage (AC) stress is determined. The results of the investigations show the sensitivity of air/SF6 gas mixtures to conducting particles on spacer surfaces for gas pressure up to 1000 kPa. Moreover, the correspondence between pure SF6 and air/SF6 gas mixtures for AC and LI flashover field strength range from 50 to 178 kV/cm is determined. Conclusions are drawn about the ability of air/SF6 gas mixtures to serve as technically efficient media for long Gas Insulated Transmission Lines (GITL). The results shed light on the issue of the SF6 reduction and the particle detectability in GITL.

Keywords

Type
Research Article
Copyright
© EDP Sciences, 2004

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

G. Mauthe et al., Electra N° 173 (1997)
Christophorou, L.G., van Brunt, R.J., IEEE Trans. Diel. Elec. Insul. 2, 66 (1995) CrossRef
W. Boeck, in Proceedings of ETG-Fachtagung GIS in Mittel- und in Hochspannungsnetz, München (1990)
A. Wieland, Ph.D. thesis, Technical University Darmstadt, Germany (1978)
R.G. Baumgartner, in Proceedings of the IEE International Conference on Gas Discharges, N. 118 (1974)
C. Neumann, ETZ 23-24 (VDE Publisher, 1998)
Kind, D., Trans. SA Institut Electr. Engin. 65, 92 (1974)
M. Beyer, W. Boeck, K. Möller, W. Zaengl, Hochspannungstechnik/Theoretische und praktische Grundlagen (Springer, Berlin, 1986)
W. Mosch, W. Hauschild, Hochspannungsisolierungen mit Schwefelhexafluorid (Hüthig, Heidelberg-Basel, 1979)
M. Beyer, ETZ-A (VDE Publisher, 1977), Bd. 98
R. Schurer, Ph.D. thesis, University of Stuttgart, Germany (1999)
Moukengué Imano, A., IEEE Trans. Diel. Elec. Insul. 10, 483 (2003) CrossRef
H.F.A. Verhaart, A.J.L. Verhage, Kema Sci. Techn. Rep. 6,179 (1988)
Malik, N.H., Qureshi, A.H., IEEE Trans. Diel. Elec. Insul. 15, 413 (1980) CrossRef
X. Rong, Ph.D. thesis, University of Stuttgart, Germany, 1994
B. Nageshwar Rao et al., in Proceeding of the IEEE Intern. Symp. on Electric. Insul. (ISEI1998), Arlington, Virginia, USA (1998)
H. Lautenschlaeger, ETZ-Archiv (VDE Publisher, 1985), Vol. 7
A. Moukengué Imano, in Proceeding of the 13th Intern. Symp. on High Voltage Engineering (ISH), Delft, The Netherlands (2003)
Moukengué Imano, A., J. Electrostat. 61, 1 (2004) CrossRef
Moukengué Imano, A., Elektrie, Berlin 56, 41 (2002)