IEEE C57 100-2011 en Test Procedure for Thermal Evaluation of Insulation Systems for Liquid-Immersed Distribution and Power Transformers《油浸式配电变压器绝缘系统热评定试验方法》.pdf
《IEEE C57 100-2011 en Test Procedure for Thermal Evaluation of Insulation Systems for Liquid-Immersed Distribution and Power Transformers《油浸式配电变压器绝缘系统热评定试验方法》.pdf》由会员分享,可在线阅读,更多相关《IEEE C57 100-2011 en Test Procedure for Thermal Evaluation of Insulation Systems for Liquid-Immersed Distribution and Power Transformers《油浸式配电变压器绝缘系统热评定试验方法》.pdf(37页珍藏版)》请在麦多课文档分享上搜索。
1、g3g3g3IEEE Standard Test Procedure for Thermal Evaluation of Insulation Systems for Liquid-Immersed Distribution and Power Transformers Sponsored by the Transformers Committee g3IEEE 3 Park Avenue New York, NY 10016-5997 USA 27 January 2012 IEEE Power +1 978 750 8400. Permission to photocopy portion
2、s of any individual standard for educational classroom use can also be obtained through the Copyright Clearance Center. iv Copyright 2012 IEEE. All rights reserved. Introduction This introduction is not part of IEEE Std C57.100-2011, IEEE Standard Test Procedure for Thermal Evaluation of Insulation
3、Systems for Liquid-Immersed Distribution and Power Transformers. This standard is intended to establish test procedures for evaluating the insulation systems of liquid-immersed transformers. The electrical insulation of transformers is subject to electrical, mechanical, and thermal stresses occurrin
4、g in different parts of the structure. How long the insulation system will be serviceable depends on the transformer design and the severity of the stresses acting on it, as well as on the materials themselves and the service environment. Therefore, the length of useful life of the insulation system
5、 depends on the way that its individual components are arranged, their interactions upon each other, the contribution of each component to the electrical and mechanical integrity of the system, and the way the transformer is manufactured and operated. Experience has shown that the thermal life chara
6、cteristics of composite insulation systems cannot be reliably inferred solely from information concerning individual component materials. To assure satisfactory service life, transformer designs need to be verified by service experience or accelerated life tests. Tests on complete insulation systems
7、, representative of each transformer design, are necessary to confirm the performance of materials for their specific functions in the transformer. During the preparation of prior editions of this standard, manufacturers built and tested more than one hundred complete distribution transformers. The
8、results of these tests, while not specifically published, confirmed the practicality of the test procedures in this standard for liquid-immersed distribution transformers. Subsequent to this work, it was recognized by prior working groups that a need existed for a similar test procedure for power tr
9、ansformers. To fulfill this need, two projects on “Basic Transformer Life Characteristics” were completed by the Electric Power Research Institute (EPRI) in 1982 B6, B7.aLimited testing was performed on insulated coils, models, and model assemblies. The information obtained from these EPRI projects
10、was used to extend the test procedures in this standard to power transformers. Manufacturers occasionally make changes in the insulation used in transformers. This occurs due to the development of a new material or a change in vendors. In some cases, a preferred material will no longer be available,
11、 or a preliminary evaluation of the potential of a new insulation system is needed. It is reasonable to permit a reduced scale thermal test to determine that the change will not reduce the life of the transformer. For this situation, a single point aging test described in Annex A is specified using
12、the procedure outlined in Annex B (similar to the Annex A from IEEE Std C57.100-1999). In situations where more than a minor change to the insulation system is made, a comparison to the industry-proven system must be made. This revision deals with how such a comparison is to be conducted. In additio
13、n to the use of a comparison test to the industry-proven system, this revision of IEEE Std C57.100 deals with issues raised during the ballot for the 1999 revision of this document, as well as issues that have developed during the intervening time period. These issues included the need for a simplif
14、ied model test for power transformers, as well as the need for evaluation methods for materials of dissimilar thermal capability. The old Annex A from IEEE Std C57.100-1999 has been modified to become part of the materials testing section in the new annex, which will also include a new dual-temperat
15、ure sealed tube test method in Annex C. In the case of the distribution transformer and power transformer model test, the difference in performance between the candidate system and the industry-proven system can be compared directly by test. In the case of the materials tests described in Annex B an
16、d Annex C, the difference between the industry-proven system and the candidate system are also obtained, but the correlation of this difference to transformer life may require confirmation from industry experience. The scope of this document notes that the dielectric liquid is part of the insulation
17、 system, but evaluations of the fluid portion of the insulation system are not part of this test procedure. While fluids are a critical part of the insulation system, since they can be reprocessed or exchanged, this document only investigates the solid insulation components as the limiting factor of
18、 the insulation system. aThe numbers in brackets correspond to those of the bibliography in Annex E. Notice to users Laws and regulations Users of these documents should consult all applicable laws and regulations. Compliance with the provisions of this standard does not imply compliance to any appl
19、icable regulatory requirements. Implementers of the standard are responsible for observing or referring to the applicable regulatory requirements. IEEE does not, by the publication of its standards, intend to urge action that is not in compliance with applicable laws, and these documents may not be
20、construed as doing so. Copyrights This document is copyrighted by the IEEE. It is made available for a wide variety of both public and private uses. These include both use, by reference, in laws and regulations, and use in private self-regulation, standardization, and the promotion of engineering pr
21、actices and methods. By making this document available for use and adoption by public authorities and private users, the IEEE does not waive any rights in copyright to this document. Updating of IEEE documents Users of IEEE standards should be aware that these documents may be superseded at any time
22、 by the issuance of new editions or may be amended from time to time through the issuance of amendments, corrigenda, or errata. An official IEEE document at any point in time consists of the current edition of the document together with any amendments, corrigenda, or errata then in effect. In order
23、to determine whether a given document is the current edition and whether it has been amended through the issuance of amendments, corrigenda, or errata, visit the IEEE Standards Association web site at http:/ieeexplore.ieee.org/xpl/standards.jsp, or contact the IEEE at the address listed previously.
24、For more information about the IEEE Standards Association or the IEEE standards development process, visit the IEEE-SA web site at http:/standards.ieee.org. Errata Errata, if any, for this and all other standards can be accessed at the following URL: http:/standards.ieee.org/findstds/errata/index.ht
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