TY - GEN
T1 - Geometric modeling of flashover configurations in metallized polypropylene film
AU - Halstead, E. M.
AU - Caulcrick, A. D.
AU - Zirnheld, J. L.
AU - Singh, H.
PY - 2007
Y1 - 2007
N2 - The phenomenon of surface flashover on Metallized Polypropylene Films (MPF) is a highly complex process of which very little is known. In order to begin to better understand this phenomenon, a computer model was developed to simulate current waveforms obtained in experiments. Expressing the entire system in terms of the parasitic elements of the film to form an RLC circuit, a mathematical model was used to describe the time dependent behavior of the current waveform through the film. A C++ program utilizing the Runge-Kutta method of solving differential equations was used to solve the computer model. These results led to a series of proposed experiments to determine the validity of the model and to better understand the physical mechanisms behind this class of surface flashover. When completed, these investigations will answer several questions regarding flashover and will lead to practical applications and further research.
AB - The phenomenon of surface flashover on Metallized Polypropylene Films (MPF) is a highly complex process of which very little is known. In order to begin to better understand this phenomenon, a computer model was developed to simulate current waveforms obtained in experiments. Expressing the entire system in terms of the parasitic elements of the film to form an RLC circuit, a mathematical model was used to describe the time dependent behavior of the current waveform through the film. A C++ program utilizing the Runge-Kutta method of solving differential equations was used to solve the computer model. These results led to a series of proposed experiments to determine the validity of the model and to better understand the physical mechanisms behind this class of surface flashover. When completed, these investigations will answer several questions regarding flashover and will lead to practical applications and further research.
UR - https://www.scopus.com/pages/publications/45149123159
U2 - 10.1109/PPC.2005.300456
DO - 10.1109/PPC.2005.300456
M3 - Conference contribution
AN - SCOPUS:45149123159
SN - 078039190X
SN - 9780780391901
T3 - Digest of Technical Papers-IEEE International Pulsed Power Conference
SP - 970
EP - 973
BT - 2005 IEEE Pulsed Power Conference, PPC
T2 - 2005 IEEE Pulsed Power Conference, PPC
Y2 - 13 June 2005 through 17 June 2005
ER -