ANSI IEEE C57.19.00-2004 General Requirements and Test Procedure for Outdoor Power Apparatus Bushings《电力装置套管的标准一般要求和试验程序》.pdf
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1、IEEE Std C57.19.00-2004(Revision of IEEE Std C57.19.00-1991)C57.19.00TMIEEE Standard General Requirementsand Test Procedure for PowerApparatus Bushings3 Park Avenue, New York, NY 10016-5997, USAIEEE Power Engineering SocietySponsored by theTransformers Committee8 June 2005Print: SH95315PDF: SS95315I
2、EEE Std C57.19.00-2004 (Revision of IEEE Std C57.19.00-1991) IEEE Standard General Requirements and Test Procedure for Power Apparatus Bushings Sponsor Transformers Committee of the IEEE Power Engineering Society Approved 8 December 2004 IEEE-SA Standards Board Approved 13 April 2005 Reaffirmed 18 A
3、ugust 2011 American National Standards Institute Abstract: This standard applies to power apparatus bushings that have basic impulse insulation levels of 110 kV and above for use as components of oil-filled transformers and oil-filled reactors. Keywords: apparatus bushings, bushings, oil-filled reac
4、tors, oil-filled transformers The Institute of Electrical and Electronics Engineers, Inc. 3 Park Avenue, New York, NY 10016-5997, USA Copyright 2005 by the Institute of Electrical and Electronics Engineers, Inc. All rights reserved. Published 8 June 2005. Printed in the United States of America. IEE
5、E is a registered trademark in the U.S. Patent +1 978 750 8400. Permission to photocopy portions of any individual standard for educational classroom use can also be obtained through the Copyright Clearance Center. iiiCopyright 2005 IEEE. All rights reserved.IntroductionThis introduction is not part
6、 of IEEE Std C57.19.00-2004, IEEE Standard General Requirements and Test Procedure for Power Apparatus Bushings.This document is based on the standard practices in the United States for power apparatus bushings. It is theresult of joint efforts of professional engineers, manufacturers, and users wor
7、king together in the BushingSubcommittee of the IEEE Transformers Committee.The related IEC standard is IEC-60137 (1995), Insulated bushings for alternating voltages above 100 V.This revision of the standard, which supersedes IEEE Std C57.19.00-1991 (R1995), includes the followingsignificant changes
8、: Reorganization and rearrangement to meet the requirements of the IEEE Standards Board StyleManual Expansion of the scope to include indoor bushings Addition of new definitions Redefinition and clarification of the thermal basis of rating Addition of short-time current and thermal ratings and assoc
9、iated test requirements Revision of existing test requirements and test procedures Addition of a special front-of-wave lightning impulse test Elimination of bushings for oil filled circuit breakers, which are listed in Annex A of IEEE StdC57.19.01-2000.The original standard, approved in 1942 as AIEE
10、 Standard 21 (which became American National Standardfor Apparatus Bushings, ANSI C76.1-1943) was prepared by the Joint Committee on BushingStandardization of the Electric Machinery, Power Transmission and Distribution, and Protection DevicesCommittees of the American Institute of Electrical Enginee
11、rs (AIEE) now the Institute of Electrical andElectronics Engineers (IEEE) and the National Electrical Manufacturers Association (NEMA). TheAmerican National Standards Institute (ANSI) Accredited Standards Committee, C76, was the sponsor ofthe standard.A supplement and partial revision, ANSI C76.1a-1
12、958, Electrical and Dimensional Characteristics ofOutdoor Apparatus Bushings (used with Power Circuit Breakers and Outdoor Transformers), was preparedby the NEMA Joint Sections Committee on Outdoor Apparatus Bushings (composed of representatives ofthe High Voltage Insulation Section, Power Circuit B
13、reakers Group, Switchgear Section, and theTransformers Section). It resulted from work by the regional associations of electrical utilities and filled theneeds of the user for dimensional interchangeability.At the time of this supplement, Committee C76 foresaw the need for a general revision and upd
14、ating of thestandard and asked AIEE and NEMA to submit recommendations. In NEMA, implementation of thisrequest was undertaken by a Subcommittee of the Joint Sections Committee on Outdoor ApparatusBushings and resulted in a proposal, which was approved in February 1960 by the Codes and StandardsCommi
15、ttee for submission to Committee C76 as the NEMA recommendation. In the AIEE, a Joint WorkingGroup consisting of members of the Transformer and Dielectric Test Committee, of the TransformersCommittee and of the Power Circuit Breaker Committee, was established and developed a recommendationthat was s
16、ubmitted to Committee C76 in July 1960. The West Coast Subcommittee of the AIEETransformers Committee, which developed additional recommendations and submitted them to CommitteeC76 in November 1960, subsequently reviewed the AIEE proposal. Committee C76 appointed a specialWorking Group for Revision
17、of ANSI C76.1-1943 to consolidate the several proposals andrecommendations. This became IEEE Std 21-1964 and was approved June 9, 1964, as ANSI C76.1-1964.It was reaffirmed in 1970.ivCopyright 2005 IEEE. All rights reserved.Work on a revision was initiated in Committee C76 in August 1968. A decision
18、 was made to separate thestandard into three parts: the first (C76.1) to cover the general requirements and test procedures, the second(C76.2) to cover explicit ratings and dimensions, and the third to be an application guide (IEEE StdC57.19.100), published in 1995. Other changes in this revision in
19、cluded test procedure updating, adding362 kV through 800 kV maximum system voltage bushing electrical ratings with wet switching impulse testvalues and coordination with switching surge sparkover values of arresters and establishing dual currentratings for 115 kV through 196 kV insulation class bush
20、ings, since circuit breakers have a lower temperaturerise than transformers, permitting a larger current rating for a given maximum ambient temperature whenapplied to circuit breakers.The revised standard was approved as IEEE Std 21-1976 on June 3, 1976, and as ANSI C76.1-1976 on July23, 1976.Work o
21、n the revision approved in 1991 (reaffirmed in 1996) was initiated in the then newly formed BushingSubcommittee of the Transformers Committee in October 1979. Extensive changes to the standard includeda new standard number, IEEE Std C57.19.00, which is indicative of its new IEEE Sponsor Committee.Ot
22、her major changes were made to improve the test sequence, to allow apparent charge measurements to bemade in addition to radio influence voltage measurements during the low-frequency dry withstand tests, andto provide for special tests, such as thermal stability tests.This standard applies to system
23、s used tocommunicate between intelligent electronic devices (IEDs) for substation integrated protection, control anddata acquisition. The requirements of this standard are in addition to those contained in standards forindividual devices (e.g., relays, switchgear).This standard applies to a rapidly
24、changing technology. It is anticipated that frequent revision may bedesirable.Notice to usersPatentsAttention is called to the possibility that implementation of this standard may require use of subject mattercovered by patent rights. By publication of this standard, no position is taken with respec
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