ANSI IEEE C50.12-2005 Salient-Pole 50 Hz and 60 Hz Synchronous Generators and Generator Motors for Hydraulic Turbine Applications Rated 5 MVA and Above《5MVA及以上水轮机设备用50和60赫兹凸极其同步发电机.pdf
《ANSI IEEE C50.12-2005 Salient-Pole 50 Hz and 60 Hz Synchronous Generators and Generator Motors for Hydraulic Turbine Applications Rated 5 MVA and Above《5MVA及以上水轮机设备用50和60赫兹凸极其同步发电机.pdf》由会员分享,可在线阅读,更多相关《ANSI IEEE C50.12-2005 Salient-Pole 50 Hz and 60 Hz Synchronous Generators and Generator Motors for Hydraulic Turbine Applications Rated 5 MVA and Above《5MVA及以上水轮机设备用50和60赫兹凸极其同步发电机.pdf(45页珍藏版)》请在麦多课文档分享上搜索。
1、IEEE Std C50.12-2005(Previously designated asANSI C50.12-1982)IEEE Standard for Salient-Pole50 Hz and 60 Hz SynchronousGenerators and Generator/Motorsfor Hydraulic Turbine ApplicationsRated 5 MVA and AboveI E E E3 Park Avenue New York, NY 10016-5997, USA15 February 2006IEEE Power Engineering Society
2、Sponsored by theElectric Machinery CommitteeRecognized as an American National Standard (ANSI) IEEE Std C50.12-2005(R2010) (Previously designated as ANSI C50.12-1982)IEEE Standard for Salient-Pole 50 Hz and 60 Hz Synchronous Generators and Generator/Motors for Hydraulic Turbine Applications Rated 5
3、MVA and Above Sponsor Electric Machinery Committee of the IEEE Power Engineering Society Approved 22 September 2005 Reaffirmed 30 September 2010 IEEE-SA Standards Board Approved 29 December 2005 Reaffirmed 11 August 2011 American National Standards Institute The working group thanks the Internationa
4、l Electrotechnical Commission (IEC) for permission to reproduce information from its International Standard IEC 60034-3. All such extracts are copyright of IEC, Geneva, Switzerland. All rights reserved. Further information on the IEC is available from www.iec.ch. IEC has no responsibility for the pl
5、acement and context in which the extracts and contents are reproduced by the author, nor is IEC in any way responsible for the other content or accuracy therein. Abstract: The requirements in this standard apply to all types of 50 Hz and 60 Hz salient-pole synchronous generators and generator/motors
6、 rated 5 MVA and above to be used for hydraulic turbine or hydraulic pump/turbine applications. Keywords: ac generator, generator, hydro generator, salient-pole rotor, synchronous generator The Institute of Electrical and Electronics Engineers, Inc 3 Park Avenue, New York, NY 10016-5997, USA Copyrig
7、ht 2006 by the Institute of Electrical and Electronics Engineers, Inc. All rights reserved. Published 15 February 2006. Printed in the United States of America. IEEE is a registered trademark in the U.S. Patent +1 978 750 8400. Permission to photocopy portions of any individual standard for educatio
8、nal classroom use can also be obtained through the Copyright Clearance Center. Introduction This introduction is not part of IEEE Std C50.12-2005, IEEE Standard for Salient-Pole 50 Hz and 60 Hz Synchronous Generators and Generator/Motors for Hydraulic Turbine Applications Rated 5 MVA and Above . Thi
9、s introduction provides some background on the rationale used to develop this standard. This information is meant to aid in the understanding and usage of this standard. From the early 1990s until the date of issue of this standard, two different working groups of the Electrical Machinery Committee
10、(EMC) of the IEEE Power Engineering Society have carefully pursued the modernization of the ANSI C50 standards for large steam turbine and combustion turbine generators. Throughout the mid-1990s, the first working group (IEEE PES EMC Task Force on Standards Harmonization) compared American National
11、Standards Institute (ANSI) standards for several different types of electrical machines with corresponding International Electrotechnical Commission (IEC) standards. In the late 1990s, members of the EMC Task Force published several summaries of their work B2, B11, B15, B16.aIn association with the
12、general initiative by the Electric Machinery Committee to compare different standards for electric machines, the Synchronous Machinery Subcommittee (SMSC) of the EMC commissioned a second working group in 1998 to focus on clarifying and modernizing the ANSI C50 series of standards for synchronous ge
13、nerators. The SMSC Working Group (WG) No. 4 (Revision of ANSI C50.1X series) included the following ANSI C50.1X standards in their scope: a) b) c) d) e) ANSI C50.10-1990, Rotating Electrical MachinerySynchronous Machines.bANSI C50.12-1982 (Reaff 1989), Requirements for Salient-Pole Synchronous Gener
14、ators and Generator/Motors for Hydraulic Turbine Applications. ANSI C50.13-1989, Requirements for Cylindrical-Rotor Synchronous Generators. ANSI C50.14-1977, Requirements for Combustion Gas Turbine Driven Cylindrical Rotor Synchronous Generators. ANSI C50.15-1989, Hydrogen-Cooled, Combustion-Gas-Tur
15、bine-Driven, Cylindrical-Rotor Synchronous GeneratorsRequirements. The SMSC WG No. 4 has periodically reported their progress B3, B4, B5, B12. As has been communicated in these papers, where it has been possible for this group to agree to the appropriateness of requirements recorded in IEC 60034 sta
16、ndards B6, B7, those requirements have been incorporated into the revised ANSI C50.1X series of standards. As the most workable approach to clarify and modernize the IEEE/ANSI standards for cylindrical-rotor synchronous generators the SMSC WG No. 4 chose to consolidate the previously separate ANSI C
17、50.10, ANSI C50.13, ANSI C50.14, and ANSI C50.15 standards into one consolidated IEEE Std C50.13 standard. This modernized IEEE Std C50.13 has been written to consolidate the previously separate ANSI C50.13, ANSI C50.14, and ANSI C50.15 standards in their entire scope and to incorporate applicable p
18、arts of ANSI C50.10. Similarly, WG No. 4 chose to modify ANSI C50.12 to become a consolidated standard for large salient-pole generators and generator/motors for hydraulic turbine applications. All applicable parts of ANSI C50.10 have been incorporated into the modernized IEEE Std C50.12. Also, wher
19、ever possible, the modernized IEEE Std C50.12 and IEEE Std C50.13 have been harmonized with each other. aThe numbers in brackets correspond to those of the bibliography in Annex A. bANSI publications are available from the Sales Department, American National Standards Institute, 25 West 43rd Street,
20、 4th Floor, New York, NY 10036, USA (http:/www.ansi.org/). iv Copyright 2006 IEEE. All rights reserved. The logic to consolidate ANSI C50.13, ANSI C50.14, and ANSI C50.15 into one standard was primarily that ANSI C50.14 and ANSI C50.15 contained a significant amount of content that had been duplicat
21、ed from ANSI C50.13 solely to cover different applications of the same basic configuration of generators covered by ANSI C50.13. Additionally, because some newer applications to which no C50 standards directly pertained had occurred since the creation of the separate ANSI C50.14 and ANSI C50.15, the
22、 working group had to choose between creating additional highly duplicated standards or finding a way to consolidate them. The decision to drop the general standard, ANSI C50.10, and to incorporate appropriate parts of its content into IEEE Std C50.12 and IEEE Std C50.13 was made after an initial at
23、tempt to retain and update ANSI C50.10. During that effort, it was recognized that the content directly applicable to IEEE Std C50.12 and IEEE Std C50.13, respectively, was not that great. It was also recognized that most ultimate users of the generator standards would significantly benefit from hav
24、ing a single standard for each of these two major types of machines. This approach would provide a better focus and alignment of the standards to purchasers and manufacturers knowledgeable in each product affected by the standard. That better focus and alignment would minimize the risk of conflict o
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