A novel lightning protection technique of wind turbine components
The lightning energy can be very harmful to wind turbine (WT) farm components; therefore an effective lightning protection technique is required. In this study, a novel technique for WT components protection is presented. This technique used ferromagnetic rings placed around the WT blade roots. Ferr...
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Online Access: | http://digital-library.theiet.org/content/journals/10.1049/joe.2015.0175 |
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doaj-6cd5b7e1c9594117abeb3219d93c4d8b2021-04-02T16:04:31ZengWileyThe Journal of Engineering2051-33052015-12-0110.1049/joe.2015.0175JOE.2015.0175A novel lightning protection technique of wind turbine componentsM.A. Abd-Allah0A. Said1Mahmoud N. Ali2Benha UniversityBenha UniversityBenha UniversityThe lightning energy can be very harmful to wind turbine (WT) farm components; therefore an effective lightning protection technique is required. In this study, a novel technique for WT components protection is presented. This technique used ferromagnetic rings placed around the WT blade roots. Ferrite ring was moulded into particular shapes from the powder of compounds of ferric oxide, manganese, and zinc, and then sintered. The dimensions of rings used are 990 mm (inner diameter), 1030 mm (outer diameter), and 100 mm (thickness). The effectiveness of the novel technique in overvoltage mitigation during lightning strokes is presented and discussed. The results show that the overvoltage is effectively damped with using this technique. The transient overvoltage at control devices is reduced to 16% of its original value, while at distribution system; it is reduced to 5% of its original value.http://digital-library.theiet.org/content/journals/10.1049/joe.2015.0175wind turbineswind power plantslightning protectionbladessinteringpowdersovervoltage protectionlightning protection techniqueWT farm component protectionwind turbine farm component protectionferromagnetic ringWT blade rootferrite ringsinteringferric oxide compound powdermanganese compound powderzinc compound powderlightning stroketransient overvoltage mitigationcontrol devicesize 990 mm to 1030 mmsize 100 mm |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
M.A. Abd-Allah A. Said Mahmoud N. Ali |
spellingShingle |
M.A. Abd-Allah A. Said Mahmoud N. Ali A novel lightning protection technique of wind turbine components The Journal of Engineering wind turbines wind power plants lightning protection blades sintering powders overvoltage protection lightning protection technique WT farm component protection wind turbine farm component protection ferromagnetic ring WT blade root ferrite ring sintering ferric oxide compound powder manganese compound powder zinc compound powder lightning stroke transient overvoltage mitigation control device size 990 mm to 1030 mm size 100 mm |
author_facet |
M.A. Abd-Allah A. Said Mahmoud N. Ali |
author_sort |
M.A. Abd-Allah |
title |
A novel lightning protection technique of wind turbine components |
title_short |
A novel lightning protection technique of wind turbine components |
title_full |
A novel lightning protection technique of wind turbine components |
title_fullStr |
A novel lightning protection technique of wind turbine components |
title_full_unstemmed |
A novel lightning protection technique of wind turbine components |
title_sort |
novel lightning protection technique of wind turbine components |
publisher |
Wiley |
series |
The Journal of Engineering |
issn |
2051-3305 |
publishDate |
2015-12-01 |
description |
The lightning energy can be very harmful to wind turbine (WT) farm components; therefore an effective lightning protection technique is required. In this study, a novel technique for WT components protection is presented. This technique used ferromagnetic rings placed around the WT blade roots. Ferrite ring was moulded into particular shapes from the powder of compounds of ferric oxide, manganese, and zinc, and then sintered. The dimensions of rings used are 990 mm (inner diameter), 1030 mm (outer diameter), and 100 mm (thickness). The effectiveness of the novel technique in overvoltage mitigation during lightning strokes is presented and discussed. The results show that the overvoltage is effectively damped with using this technique. The transient overvoltage at control devices is reduced to 16% of its original value, while at distribution system; it is reduced to 5% of its original value. |
topic |
wind turbines wind power plants lightning protection blades sintering powders overvoltage protection lightning protection technique WT farm component protection wind turbine farm component protection ferromagnetic ring WT blade root ferrite ring sintering ferric oxide compound powder manganese compound powder zinc compound powder lightning stroke transient overvoltage mitigation control device size 990 mm to 1030 mm size 100 mm |
url |
http://digital-library.theiet.org/content/journals/10.1049/joe.2015.0175 |
work_keys_str_mv |
AT maabdallah anovellightningprotectiontechniqueofwindturbinecomponents AT asaid anovellightningprotectiontechniqueofwindturbinecomponents AT mahmoudnali anovellightningprotectiontechniqueofwindturbinecomponents AT maabdallah novellightningprotectiontechniqueofwindturbinecomponents AT asaid novellightningprotectiontechniqueofwindturbinecomponents AT mahmoudnali novellightningprotectiontechniqueofwindturbinecomponents |
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