DocumentCode
3483147
Title
A practical approach to arc flash hazard analysis and reduction
Author
Tinsley, H. Wallace, III ; Hodder, Michael
Author_Institution
Eaton Electr., Warrendale, PA, USA
fYear
2004
fDate
27 June-1 July 2004
Firstpage
111
Lastpage
119
Abstract
Recent efforts to quantify the dangers associated with potential arc flash hazards rely on overcurrent protection to remove a given fault condition. The effectiveness of various devices is determined by a clearing time related to the maximum available fault current for each system location. As industrial and commercial facilities begin to embrace arc flash labeling procedures and begin to recognize arc flash prevention as a part of a complete safety program, the current method of calculation will allow them to quantity the incident energy associated with a maximum, three-phase fault condition. Most faults produce current magnitudes less than the three-phase maximum. This paper considers fault current magnitudes less than that of the maximum, three-phase condition and discuss the resulting calculations for incident energy across the range of current magnitudes. Under these additional scenarios, the performance of various overcurrent protection devices is demonstrated. Associated considerations for design, modeling, and maintenance are presented.
Keywords
arcs (electric); electrical safety; fault currents; hazards; overcurrent protection; power system protection; arc flash hazard analysis; arc flash hazard reduction; arc flash prevention; clearing time; constant energy C-line; fault current; incident energy; overcurrent protection devices; safety program; three-phase fault condition; unbalanced faults; worst-case scenario; Circuit faults; Data analysis; Fault currents; Hazards; Labeling; Personnel; Power system analysis computing; Power system protection; Safety; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Pulp and Paper Industry Technical Conference, 2004. Conference Record of the 2004 Annual
ISSN
0190-2172
Print_ISBN
0-7803-8282-X
Type
conf
DOI
10.1109/PAPCON.2004.1338371
Filename
1338371
Link To Document