STUDY OF LIGHTNING PROTECTION SYSTEM ON 275 KV OVERHEAD TRANSMISSION LINES IN TROPICAL AREA

The theses has investigated lightning protection system on INALUM Co. 275 kV overhead transmission lines, location in North Sumatera near equatorial belt. Lightning data acquired from BKMG North Sumatera present total cloud to ground lightning flashes frequency are 500-10.000 flashes in this area...

Full description

Saved in:
Bibliographic Details
Main Author: MURDIYA, FRI
Format: Theses
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/12135
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:12135
spelling id-itb.:121352017-09-27T15:37:38ZSTUDY OF LIGHTNING PROTECTION SYSTEM ON 275 KV OVERHEAD TRANSMISSION LINES IN TROPICAL AREA MURDIYA, FRI Indonesia Theses Cloud to ground lightning flashes frequency, magnetic link, BFOR and SFFOR, combination three and two OHGW INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/12135 The theses has investigated lightning protection system on INALUM Co. 275 kV overhead transmission lines, location in North Sumatera near equatorial belt. Lightning data acquired from BKMG North Sumatera present total cloud to ground lightning flashes frequency are 500-10.000 flashes in this area during 2006-2007. Lightning protection system on this overhead transmission lines has installed three overhead ground wires (OHGW) and negative shielding angel, 22 pieces of porcelain insulator, and tower footing resistance designed 10 ???? by counterpoises grounding. After construction works of INALUM Co. 275 kV transmission lines (1982 until now), damage ground wire and arcing horn have occurred, due to lightning stroke. Lightning peak current distribution on each tower have recorded by magnetic link. Shielding failure analysis by electro geometric concept (EGC) and finite element method (FEM) in PDEtool Matlab programming, using electrostatics mode, show that shielding failure flash over rate is zero. Estimation of lightning performance by Whitehead concept, for Ng = 6 flashes/km2/year ,FOR is 0.24 flashes/100km/year. It is “Excellent grounding and shielding” for CIGRE/IEEE probability lightning peak current. However, for Zoro, etc. probability lightning peak current, FOR= 0.32 flashes/100km/year. It is “Good grounding and shielding”. Between CIGRE/IEEE and Zoro probability lightning peak current are significant different. Proposing to install three OHGW than two OHGW in the new 275 kV T/L system, it reduce BFOR at 57%. For some application, where the cost of three OHGW is not economically and technically justified, or where there is low ground flash density, two OHGW can be used. Simulation by ATP program, result of the combination three and two OHGW reduce tower peak voltage due to lightning strike until 14.7 % than two OHGW only. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description The theses has investigated lightning protection system on INALUM Co. 275 kV overhead transmission lines, location in North Sumatera near equatorial belt. Lightning data acquired from BKMG North Sumatera present total cloud to ground lightning flashes frequency are 500-10.000 flashes in this area during 2006-2007. Lightning protection system on this overhead transmission lines has installed three overhead ground wires (OHGW) and negative shielding angel, 22 pieces of porcelain insulator, and tower footing resistance designed 10 ???? by counterpoises grounding. After construction works of INALUM Co. 275 kV transmission lines (1982 until now), damage ground wire and arcing horn have occurred, due to lightning stroke. Lightning peak current distribution on each tower have recorded by magnetic link. Shielding failure analysis by electro geometric concept (EGC) and finite element method (FEM) in PDEtool Matlab programming, using electrostatics mode, show that shielding failure flash over rate is zero. Estimation of lightning performance by Whitehead concept, for Ng = 6 flashes/km2/year ,FOR is 0.24 flashes/100km/year. It is “Excellent grounding and shielding” for CIGRE/IEEE probability lightning peak current. However, for Zoro, etc. probability lightning peak current, FOR= 0.32 flashes/100km/year. It is “Good grounding and shielding”. Between CIGRE/IEEE and Zoro probability lightning peak current are significant different. Proposing to install three OHGW than two OHGW in the new 275 kV T/L system, it reduce BFOR at 57%. For some application, where the cost of three OHGW is not economically and technically justified, or where there is low ground flash density, two OHGW can be used. Simulation by ATP program, result of the combination three and two OHGW reduce tower peak voltage due to lightning strike until 14.7 % than two OHGW only.
format Theses
author MURDIYA, FRI
spellingShingle MURDIYA, FRI
STUDY OF LIGHTNING PROTECTION SYSTEM ON 275 KV OVERHEAD TRANSMISSION LINES IN TROPICAL AREA
author_facet MURDIYA, FRI
author_sort MURDIYA, FRI
title STUDY OF LIGHTNING PROTECTION SYSTEM ON 275 KV OVERHEAD TRANSMISSION LINES IN TROPICAL AREA
title_short STUDY OF LIGHTNING PROTECTION SYSTEM ON 275 KV OVERHEAD TRANSMISSION LINES IN TROPICAL AREA
title_full STUDY OF LIGHTNING PROTECTION SYSTEM ON 275 KV OVERHEAD TRANSMISSION LINES IN TROPICAL AREA
title_fullStr STUDY OF LIGHTNING PROTECTION SYSTEM ON 275 KV OVERHEAD TRANSMISSION LINES IN TROPICAL AREA
title_full_unstemmed STUDY OF LIGHTNING PROTECTION SYSTEM ON 275 KV OVERHEAD TRANSMISSION LINES IN TROPICAL AREA
title_sort study of lightning protection system on 275 kv overhead transmission lines in tropical area
url https://digilib.itb.ac.id/gdl/view/12135
_version_ 1820728423064010752