DocumentCode :
1999270
Title :
NESC Wind and Ice load effects on wood distribution pole design
Author :
Jurgemeyer, Mark ; Miller, Brent
Author_Institution :
Stanley Consultants, Inc., Centennial, CO, USA
fYear :
2012
fDate :
15-17 April 2012
Abstract :
The National Electrical Safety Code[1] has three basic structural loading conditions that may apply to various components of an overhead line. These load cases are defined in Section 25 and are generally referred to as District Loading (Rule 250B), Extreme Wind (Rule 250C) and Extreme Ice with Concurrent Wind (Rule 250D). Both the Extreme Wind and the Extreme Ice with Concurrent Wind paragraphs state that these loads apply when a structure or its supported facilities exceed sixty feet above the ground. For many years there has been an industry wide discussion regarding the application of the loading exclusion for short poles and the associated impact on overhead distribution design. This paper will evaluate a variety of three-phase distribution lines and examine the cost impacts of applying the Extreme Wind and Extreme Ice with Concurrent Wind load cases to the design of wood pole structures less than sixty feet tall.
Keywords :
IEEE standards; load (electric); poles and towers; power distribution lines; power overhead lines; NESC wind effect; National Electrical Safety Code; concurrent wind paragraph state; cost impact; district loading; extreme ice; extreme wind; ice load effect; overhead distribution design; overhead line; short pole; structural loading condition; three-phase distribution lines; wood distribution pole design; Conductors; Ice; Loading; National Electrical Safety Code - c2; Wind speed; ANSI Standards; IEEE Standards; Power Distribution; Power Distribution Lines; Structural Engineering;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Rural Electric Power Conference (REPC), 2012 IEEE
Conference_Location :
Milwaukee, WI
ISSN :
0734-7464
Print_ISBN :
978-1-4673-0336-1
Type :
conf
DOI :
10.1109/REPCon.2012.6194565
Filename :
6194565
Link To Document :
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