DocumentCode
2194654
Title
A novel method to calculate pressure, temperature and shockwave propagation in self-blast circuit breakers
Author
Khanali, M. ; Keshavarz, K.S. ; Niayesh, Kaveh
Author_Institution
ECE Dept., Univ. of Waterloo, Waterloo, ON, Canada
fYear
2012
fDate
3-7 June 2012
Firstpage
548
Lastpage
551
Abstract
Distribution of different mechanical and electro-magnetic parameters is obtained via simulation of electrical arcs in SF6 circuit breakers with a novel method of dividing a simulation area into two zones. The proposed method makes it feasible to consider the exact geometry of the whole interruption chamber and material properties as well as to discover pressure profile and shock wave propagation curves. The aim of these simulations is to find the pattern of pressure and temperature rises and to design the equipment for a proper function. This problem is approached by solving a combination of fluid dynamics and electromagnetic equations in the arc column and only fluid dynamics equations in its surrounding area and assessing the impact of produced pressures and shock waves on the internal parts. One of the strengths of this approach is the capability to apply complete real geometry and specific dimensions of a circuit breaker arrangement as well as considering practically used materials. In this research the developed method is discussed and then as a case study to verify this process, a circuit breaker is simulated and the results are compared with the existing experimental results.
Keywords
SF6 insulation; circuit-breaking arcs; fluid dynamics; gas blast circuit breakers; geometry; shock waves; SF6 circuit breaker; electrical arc simulation; electromagnetic equation; electromagnetic parameter distribution; fluid dynamics equation; geometry; interruption chamber; material property; mechanical parameter distribution; pressure calculation; self-blast circuit breaker; shockwave propagation curve calculation; temperature calculation; Arc; Pressure; SF6 circuit breaker; Temperature;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Modulator and High Voltage Conference (IPMHVC), 2012 IEEE International
Conference_Location
San Diego, CA
Print_ISBN
978-1-4673-1222-6
Type
conf
DOI
10.1109/IPMHVC.2012.6518802
Filename
6518802
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