Electric field distribution along the surface of cap and pin glass insulators covered with contamination layers

Knowledge of the electric field distribution can deepen the understanding of the flashover behavior of outdoor insulators. Many factors contributed to the profile of the electric fields such as the geometry of the insulators, dielectric properties and environmental conditions. This project investiga...

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Main Author: Othman, Mardianaliza
Format: Thesis
Published: 2010
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Online Access:http://eprints.utm.my/id/eprint/26717/
http://libraryopac.utm.my/client/en_AU/main/search/results?qu=Electric+field+distribution+along+the+surface+of+cap+and+pin+glass+insulators+covered+with+contamination+layers&te=
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Institution: Universiti Teknologi Malaysia
id my.utm.26717
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spelling my.utm.267172017-08-17T03:49:43Z http://eprints.utm.my/id/eprint/26717/ Electric field distribution along the surface of cap and pin glass insulators covered with contamination layers Othman, Mardianaliza TK Electrical engineering. Electronics Nuclear engineering Knowledge of the electric field distribution can deepen the understanding of the flashover behavior of outdoor insulators. Many factors contributed to the profile of the electric fields such as the geometry of the insulators, dielectric properties and environmental conditions. This project investigates the electric field distribution along the surface of cap and pin glass insulators and its enhancement due to contamination particles or elements by means of computational simulations and laboratory experiments. Different levels of contamination that affecting the electric field distribution was analyzed through finite element method simulation by using Quick Field software. The insulator surface is simulated for dry conditions as well as its changes under wet conditions. To find the influence of the contamination layers on the potential and electric field distribution, various levels of the ESDD of the insulators were applied in the study. In addition, the laboratory experiments were conducted for measuring voltage distribution along the insulators and leakage current in order to correlate the results from the simulation findings. 2010 Thesis NonPeerReviewed Othman, Mardianaliza (2010) Electric field distribution along the surface of cap and pin glass insulators covered with contamination layers. Masters thesis, Universiti Teknologi Malaysia, Faculty of Electrical Engineering. http://libraryopac.utm.my/client/en_AU/main/search/results?qu=Electric+field+distribution+along+the+surface+of+cap+and+pin+glass+insulators+covered+with+contamination+layers&te=
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Othman, Mardianaliza
Electric field distribution along the surface of cap and pin glass insulators covered with contamination layers
description Knowledge of the electric field distribution can deepen the understanding of the flashover behavior of outdoor insulators. Many factors contributed to the profile of the electric fields such as the geometry of the insulators, dielectric properties and environmental conditions. This project investigates the electric field distribution along the surface of cap and pin glass insulators and its enhancement due to contamination particles or elements by means of computational simulations and laboratory experiments. Different levels of contamination that affecting the electric field distribution was analyzed through finite element method simulation by using Quick Field software. The insulator surface is simulated for dry conditions as well as its changes under wet conditions. To find the influence of the contamination layers on the potential and electric field distribution, various levels of the ESDD of the insulators were applied in the study. In addition, the laboratory experiments were conducted for measuring voltage distribution along the insulators and leakage current in order to correlate the results from the simulation findings.
format Thesis
author Othman, Mardianaliza
author_facet Othman, Mardianaliza
author_sort Othman, Mardianaliza
title Electric field distribution along the surface of cap and pin glass insulators covered with contamination layers
title_short Electric field distribution along the surface of cap and pin glass insulators covered with contamination layers
title_full Electric field distribution along the surface of cap and pin glass insulators covered with contamination layers
title_fullStr Electric field distribution along the surface of cap and pin glass insulators covered with contamination layers
title_full_unstemmed Electric field distribution along the surface of cap and pin glass insulators covered with contamination layers
title_sort electric field distribution along the surface of cap and pin glass insulators covered with contamination layers
publishDate 2010
url http://eprints.utm.my/id/eprint/26717/
http://libraryopac.utm.my/client/en_AU/main/search/results?qu=Electric+field+distribution+along+the+surface+of+cap+and+pin+glass+insulators+covered+with+contamination+layers&te=
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