DocumentCode
2302839
Title
Streamer Initiation in Volume and Surface Discharges in Atmospheric Gases
Author
Lehr, J.M. ; Warne, L.K. ; Jorgenson, R.E. ; Wallace, Z.R. ; Hodge, K.C. ; Caldwell, M.
Author_Institution
Sandia Nat. Labs., Albuquerque, NM
fYear
2008
fDate
27-31 May 2008
Firstpage
354
Lastpage
357
Abstract
It is generally acknowledged that once a highly conductive channel is established between two charged and conducting materials, electrical breakdown is well established and difficult to interrupt. An understanding of the initiation mechanism for electrical breakdown is crucial for devising mitigating methods to avoid catastrophic failures. Both volumetric and surface discharges are of interest. An effort is underway where experiments and theory are being simultaneously developed. The experiment consists of an impedance matched discharge chamber capable of investigating various gases and pressures to ten atmospheres. In addition to current and voltage measurements, a high dynamic range streak camera records streamer velocities. The streamer velocities are particularly valuable for comparison with theory. A streamer model is being developed which includes photo-ionization and particle interactions with an insulating surface. The combined theoretical and experimental effort is aimed at detailed comparisons of streamer development as well as a quantitative understanding of how streamers interact with dielectric surfaces and the resulting effects on breakdown voltage.
Keywords
electric breakdown; surface discharges; atmospheric gases; catastrophic failures; conductive channel; dielectric surfaces; dynamic range streak camera records; impedance matching; initiation mechanism; particle interactions; photoionization; streamer initiation; surface discharges; Atmosphere; Atmospheric modeling; Cameras; Conducting materials; Dynamic range; Electric breakdown; Gases; Surface discharges; Surface impedance; Voltage measurement;
fLanguage
English
Publisher
ieee
Conference_Titel
IEEE International Power Modulators and High Voltage Conference, Proceedings of the 2008
Conference_Location
Las Vegas, NE
Print_ISBN
978-1-4244-1534-2
Electronic_ISBN
978-1-4244-1535-9
Type
conf
DOI
10.1109/IPMC.2008.4743657
Filename
4743657
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