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http://dx.doi.org/10.5370/KIEEP.2013.62.4.181

Analysis on Electromagnetic Loss Characteristics of Bus bar and Enclosure according to the Specifications of Enclosures for a 24kV Switchgear  

Heo, Jeong Il (한국교통대 첨단과학기술대 전기공학과)
Hong, Jonggi (한국교통대 첨단과학기술대 전기공학과)
Kang, Hyoungku (한국교통대 첨단과학기술대 전기공학과)
Publication Information
The Transactions of the Korean Institute of Electrical Engineers P / v.62, no.4, 2013 , pp. 181-185 More about this Journal
Abstract
This paper deals with the electromagnetic loss characteristics of enclosures for a 24kV high voltage switchgear by using a finite element method (FEM). A study on the electromagnetic characteristics of enclosures for a high voltage switchgear should be conducted to minimize the size and the temperature rising of a switchgear. Generally, the enclosures made by stainless steel are used to minimize the eddy current loss caused by the transporting current in Bus bars due to its non-magnetic characteristics although the price of stainless steel is expensive compared with other metal for enclosures. Therefore, a switchgear made by stainless steel enclosures could be fabricated as a small size and are applied to a switchgear in urban substations. On the contrary, the switchgear enclosures made by steel could be fabricated with relatively cheap manufacturing price. However, the temperature easily rises due to the transporting current in Bus bars because steel is a ferromagnetic material. Therefore, the size of a switchgear made by steel enclosures is relatively massive and installed in rural substations. In this paper, the electromagnetic losses in the enclosures of a switchgear according to various enclosure thicknesses are calculated and compared with each other. Especially, we proposed a hybrid type enclosures for a switchgear made by stainless steel (top and bottom enclosure) and steel (left and right enclosure). It is concluded that the cost electromagnetic performance of applying the hybrid type enclosure is favorable to develop a high voltage switchgear.
Keywords
Bus bar; Eddy current; Electromagnetic loss; FEM; Switchgear;
Citations & Related Records
Times Cited By KSCI : 2  (Citation Analysis)
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