ANSI IEEE C57.12.56-1986 Standard Test Procedure for Thermal Evaluation of Insulation Systems for Ventilated Dry-Type Power and Distribution Transformers.pdf
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1、ANSI/IEEE C57.12.56-1986An American National StandardIEEE Standard Test Procedure for Thermal Evaluation of Insulation Systems for Ventilated Dry-Type Power and Distribution TransformersSponsorTransformers Committee of theIEEE Power Engineering SocietySecretariatInstitute of Electrical and Electroni
2、cs EngineersNational Electrical Manufacturers AssociationApproved December 17, 1981IEEE Standards BoardApproved August 27, 1984American National Standards Institute Copyright 1986The Institute of Electrical and Electronics Engineers, Inc. 345 East 47th Street, New York, NY 10017, USANo part of this
3、publication may be reproduced in any form, in an electronic retrieval system or otherwise, without theprior written permission of the publisher.iiIEEE Standards documents are developed within the Technical Committees of the IEEE Societies and the StandardsCoordinating Committees of the IEEE Standard
4、s Board. Members of the committees serve voluntarily and withoutcompensation. They are not necessarily members of the Institute. The standards developed within IEEE represent aconsensus of the broad expertise on the subject within the Institute as well as those activities outside of IEEE that haveex
5、pressed an interest in participating in the development of the standard.Use of an IEEE Standard is wholly voluntary. The existence of an IEEE Standard does not imply that there are no otherways to produce, test, measure, purchase, market, or provide other goods and services related to the scope of t
6、he IEEEStandard. Furthermore, the viewpoint expressed at the time a standard is approved and issued is subject to changebrought about through developments in the state of the art and comments received from users of the standards. EveryIEEE Standard is subjected to review at least every five years fo
7、r revision or reaffirmation. When a document is morethan five years old and has not been reaffirmed, it is reasonable to conclude that its contents, although still of somevalue, do not wholly reflect the present state of the art. Users are cautioned to check to determine that they have thelatest edi
8、tion of any IEEE Standard.Comments for revision of IEEE Standards are welcome from any interested party, regardless of membership affiliationwith IEEE. Suggestions for changes in documents should be in the form of a proposed change of text, together withappropriate supporting comments.Interpretation
9、s: Occasionally questions may arise regarding the meaning of portions of standards as they relate tospecific applications. When the need for interpretations is brought to the attention of IEEE, the Institute will initiateaction to prepare appropriate responses. Since IEEE Standards represent a conse
10、nsus of all concerned interests, it isimportant to ensure that any interpretation has also received the concurrence of a balance of interests. For this reasonIEEE and the members of its technical committees are not able to provide an instant response to interpretation requestsexcept in those cases w
11、here the matter has previously received formal consideration.Comments on standards and requests for interpretations should be addressed to:Secretary, IEEE Standards Board345 East 47th StreetNew York, NY 10017USAiiiForeword(This Foreword is not a part of ANSI/IEEE C57.12.56-1986, IEEE Standard Test P
12、rocedure for Thermal Evaluation of InsulationSystems for Ventilated Dry-Type Power and Distribution Transformers.)This standard was developed to provide a method for evaluating insulation systems for ventilated dry-typetransformers with high-voltage ratings greater than 600 V. Since the procedures c
13、ontained herein are new, experiencefactors may require future revision.The working group that developed this standard used AIEE 65-1956, the Proposed Test for Thermal Evaluation ofVentilated Dry-Type Power and Distribution Transformers, as a starting point. New materials and coil-designtechniques ne
14、cessitated a revision of the procedure to recognize such factors as layer insulation, higher impulsewithstand capabilities, and new organic, high-temperature insulations. This standard describes methods that take thenew materials and processes into account.The working group was unable to define an e
15、xisting insulation system to use as a control for comparison with aninsulation system under test; therefore, an arbitrary extrapolation criteria of 40 000 h was selected for the evaluation.The working group urges the Dry-Type Transformer Industry to report results of tests using this standard to pro
16、vide abasis for future improvement.The working group considered aging under voltage stresses which might cause partial discharge but ruled it out sincepresent transformer designs are generally made to be as free of partial discharges as practical.The working group considered a vibration and shock pr
17、ocedure as one of the aging factors. So little information ispublished regarding the effects of vibration and shock in high-voltage insulation systems that it was impossible toinclude it in this standard. The working group urges the industry to report procedures and results of testing insulationsyst
18、ems with vibration and shock so that revisions of this standard may incorporate these factors, if they are found tobe significant.This standard relates voltage withstand end-point criteria to the impulse voltage distribution within the coil or to theinitial-voltage withstand of the coil. A relations
19、hip between impulse withstand of the insulation and short-term 60 Hzwithstand is identified so that 50/60 Hz testing of model coils is possible.Acknowledgement and thanks are extended to those who have so freely given their time and knowledge and haveconducted experimental work on which this standar
20、d is based.This standard was developed by a working group of the Dry-Type Transformer Subcommittee of the IEEETransformer Committee of the IEEE Power Engineering Society.At the time it approved this standard, the C57 Committee had the following membership:R. E. Uptegraff, Jr, Chair R.E. Ensign, Vice
21、 Chair R. G. Hansen, Secretary Organization Represented. Name of RepresentativeBonneville Power Administration. VacantElectric Light and Power Group N. DerwiankaR. L. EnsignI. H. KoponenB. F. SmithE. F. Villasuso, JrJ. P. Markery (Alt)Institute of Electrical and Electronics Engineers . J. V. Bonucch
22、iivO. ComptonJ. C. DuttonL. W. LongL. S. McCormickW. J. NeiswenderB. Stanleigh (Alt)National Electrical Manufacturers Association J. D. DouglassW. C. KendallK. R. LinsleyW. J. McNuttH. RobinM. SampahR. E. Uptegraff, JrR. J. Stahara (Alt)Naval Facilities Engineering Command .H. P. StickleyRural Elect
23、rification Administration.J. C. Arnold, JrTennessee Valley Authority. L. R. SmithUnderwriters Laboratories T. OGradyR. W. Seelbach (Alt)Water and Power Resources Service. F. W. Cook, SrWestern Area Power Administration. D. R. TorgersonThe personnel of the working group at the time of completion of t
24、his standard were as follows:G. H. Bowers, Chair B. F. AllenG. M. BellF. J. BrttE. J. HuberA.D. KlineM.L. ManningN.J. MeltonA.C. WurdackWhen the IEEE Standards Board approved this standard on December 17, 1981, it had the following membership:I. N. Howell, Jr, Chair Irving Kolodny, Vice Chair Sava I
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