DocumentCode
492326
Title
Hydro generator stator cores part 1 - constructional features and core losses
Author
Znidarich, M.M.
Author_Institution
TGE Energy Services, Osborne Park, WA
fYear
2008
fDate
14-17 Dec. 2008
Firstpage
1
Lastpage
8
Abstract
Hydroelectric generation is the largest contemporary source of commercially viable renewable energy produced on a large scale. Most of the Australian hydro generating plants are 40 to 60 years old and approaching their ldquohalf liferdquo refurbishment. Uprating of existing generously sized generators is, in most cases, possible and is the easiest and cheapest way of obtaining extra generating capacity without embarking on a costly and uncertain environmental approval process. Full replacement of the stator core is often part of the hydro generator upgrade scope. This is sometimes dictated by the deteriorated state of the original stator core, but more often the benefit is derived from advances in magnetic core steel technology where reductions in core losses permit achievement of required stator assembly temperature rises at an upgraded output, and often result in increased generating plant efficiency. The reduction in core losses may often be a deciding factor when considering feasibility and the possible extent of the hydro generator uprate. In one case with upgrade work on a 50 MVA hydro generator, which included replacement of the stator core, the author has achieved a reduction in core losses from 290 kW down to 160 kW. This resulted in a reduction of stator assembly temperature rise and improved machine efficiency. The two papers on hydro generator stator cores present a synthesis of knowledge derived from the author´s many years of experience in refurbishing and upgrading hydro generators.
Keywords
hydroelectric generators; hydroelectric power stations; magnetic cores; Australian hydro generating plant; apparent power 50 MVA; core losses; hydro generator stator cores; hydroelectric generation; machine efficiency; magnetic core steel technology; plant efficiency; power 290 kW to 160 kW; renewable energy; stator core; Assembly; Australia; Core loss; Hydroelectric power generation; Large-scale systems; Magnetic cores; Renewable energy resources; Stator cores; Steel; Temperature;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Engineering Conference, 2008. AUPEC '08. Australasian Universities
Conference_Location
Sydney, NSW
Print_ISBN
978-0-7334-2715-2
Electronic_ISBN
978-1-4244-4162-4
Type
conf
Filename
4812986
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