DocumentCode :
1315152
Title :
Design, Analysis, and Operation of the Electrical Distribution System for a Modern Electric Arc Furnace and Ladle Melt Furnace
Author :
White, Richard S. ; Dionise, Thomas J. ; Baron, Jeffrey A.
Author_Institution :
Charter Steel-Cleveland Charter Manuf. Co., Inc., Cuyahoga Heights, OH, USA
Volume :
46
Issue :
6
fYear :
2010
Firstpage :
2267
Lastpage :
2275
Abstract :
An electric arc furnace, a ladle melt furnace, a single-tank vacuum degasser, and a four-strand continuous caster comprise this new melting and casting operation that supports a rod and bar-in-coil rolling mill. This paper describes the design, analysis, and operation of the electrical distribution system for these modern electric arc furnace and ladle melt furnace. First, the design of the electrical distribution system provided adequate capacity to support simultaneous operation of both the electric arc furnace and the ladle melt furnace in support of melt-shop operations. Next, harmonic analysis and flicker analysis of the circuit supplying the furnaces resulted in specification of a multistage filter that insured acceptable levels of harmonic distortion and voltage flicker on the utility supply as well as voltage support during all stages of arcing. Finally, operation experience gained from furnace performance during the initial startup led to subsequent fine-tuning to achieve higher levels of production.
Keywords :
arc furnaces; harmonic distortion; electrical distribution system; flicker analysis; harmonic analysis; harmonic distortion; ladle melt furnace; modern electric arc furnace; rolling mill; single tank vacuum degasser; voltage flicker; Carbon; Computer aided software engineering; Furnaces; Harmonic analysis; Inductors; Steel; Voltage fluctuations; Electric arc furnace (EAF); IEEE Standard 18-1992; IEEE Standard 519-1992; flicker; harmonic analysis; harmonic filtering; ladle melt furnace (LMF);
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/TIA.2010.2074173
Filename :
5565470
Link To Document :
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