1、 IEC TR 63042-100 Edition 1.0 2016-12 TECHNICAL REPORT UHV AC transmission systems Part 100: General information IEC TR 63042-100:2016-12(en) THIS PUBLICATION IS COPYRIGHT PROTECTED Copyright 2016 IEC, Geneva, Switzerland All rights reserved. Unless otherwise specified, no part of this publication m
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10、his publication or need further assistance, please contact the Customer Service Centre: csciec.ch. IEC TR 63042-100 Edition 1.0 2016-12 TECHNICAL REPORT UHV AC transmission systems Part 100: General information INTERNATIONAL ELECTROTECHNICAL COMMISSION ICS 29.240.01 ISBN 978-2-8322-3791-5 Registered
11、 trademark of the International Electrotechnical Commission Warning! Make sure that you obtained this publication from an authorized distributor. 2 IEC TR 63042-100:2016 IEC 2016 CONTENTS FOREWORD . 5 INTRODUCTION . 7 1 Scope 8 2 Normative references 8 3 Terms and definitions 8 4 Planning 8 4.1 Gene
12、ral . 8 4.2 Security and stability . 9 4.3 Transmission systems . 9 4.4 System voltage . 10 4.5 Reliability and availability 10 4.6 Transmission network . 11 4.7 Network requirement . 11 4.8 Transmission planning 11 5 System design . 11 5.1 General . 11 5.2 System design and solutions . 11 5.2.1 Rea
13、ctive power compensation . 11 5.2.2 Protection scheme . 12 5.2.3 Reclosing scheme . 12 5.3 Insulation coordination 12 5.3.1 General . 12 5.3.2 Lightning overvoltage 12 5.3.3 Slow front overvoltage (SFO) . 12 5.3.4 Very fast front overvoltage (VFFO) 13 5.3.5 AC temporary overvoltage . 13 6 Transmissi
14、on line and substation design 13 6.1 General . 13 6.2 Transmission line 14 6.2.1 General . 14 6.2.2 Basic concept for selecting the UHV AC transmission line . 14 6.2.3 Conductor design for the transmission line 14 6.2.4 Pollution design for insulators 14 6.2.5 Air clearance between tower and conduct
15、or . 14 6.2.6 Right of way (ROW) . 14 6.2.7 Height of conductor . 14 6.2.8 Structural tower design, foundation 15 6.3 Substation 15 6.3.1 Area survey and selection 15 6.3.2 Substation bus scheme 15 6.3.3 Substation switchgear type 16 6.3.4 Equipment layout . 18 6.4 Main equipment for the substation
16、and related design . 19 6.4.1 General . 19 6.4.2 Power transformers . 19 6.4.3 Switchgear 19 IEC TR 63042-100:2016 IEC 2016 3 6.4.4 Air clearance . 19 6.4.5 Seismic performance . 20 6.4.6 Tertiary circuit . 20 6.4.7 Substation electrical auxiliary system 20 6.5 Control and protection and communicati
17、on 20 7 Construction 20 7.1 General . 20 7.2 Transmission line 21 7.2.1 Transportation and preparing work at site 21 7.2.2 Foundation 21 7.2.3 Assembling of tower 21 7.2.4 Stringing 21 7.2.5 Quality control . 21 7.3 Substation 21 7.3.1 Transportation . 21 7.3.2 Installation . 21 8 Commissioning 22 9
18、 Operation and maintenance . 22 9.1 Transmission lines 22 9.2 Substations . 23 9.2.1 General . 23 9.2.2 Operation 23 9.2.3 Maintenance 23 10 Environmental considerations 24 10.1 Transmission lines 24 10.1.1 General . 24 10.1.2 EMF 24 10.1.3 Electrostatic induction 24 10.1.4 Electromagnetic induction
19、 25 10.1.5 Audible noise with corona discharge 25 10.1.6 Radio interference with corona discharge 25 10.1.7 Wind noise 25 10.1.8 Environmental impact 25 10.2 Substations . 25 10.2.1 Earthing design . 25 10.2.2 Electrostatic-induction design 25 10.2.3 Audible noise mitigation design . 26 10.2.4 Disas
20、ter-prevention design 26 Bibliography 27 Figure 1 Bus scheme . 16 Figure 2 General method of commissioning on site 22 Figure 3 Basic way of considering operation and maintenance of UHV AC substations . 24 Table 1 AC three-phase systems having a highest voltage for equipment exceeding 800 kV 10 Table
21、 2 Comparison of lightning fault between UHV and 550 kV systems . 10 4 IEC TR 63042-100:2016 IEC 2016 Table 3 Substation switchgears comparison (GIS, Hybrid-IS, and AIS) 17 Table 4 The principle technology designs for substations (their components and bays). 18 IEC TR 63042-100:2016 IEC 2016 5 INTER
22、NATIONAL ELECTROTECHNICAL COMMISSION _ UHV AC TRANSMISSION SYSTEMS Part 100: General information FOREWORD 1) The International Electrotechnical Commission (IEC) is a worldwide organization for standardization comprising all national electrotechnical committees (IEC National Committees). The object o
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33、 committees is to prepare International Standards. However, a technical committee may propose the publication of a technical report when it has collected a different kind of data from that which is normally published as an International Standard, for example “state of the art”. The technical report
34、IEC 63042-100 was prepared by IEC Technical Committee 122: UHV AC transmission systems. The text of this technical report is based on the following documents: Enquiry draft Report on voting 122/29/DTR 122/31A/RVC Full information on the voting for the approval of this technical report can be found i
35、n the report on voting indicated in the above table. 6 IEC TR 63042-100:2016 IEC 2016 This document has been drafted in accordance with the ISO/IEC Directives, Part 2. A list of all parts in the IEC 63042 series, published under the general title UHV AC transmission systems, can be found on the IEC
36、website. The committee has decided that the contents of this document will remain unchanged until the stability date indicated on the IEC website under “http:/webstore.iec.ch“ in the data related to the specific document. At this date, the document will be: reconfirmed, withdrawn, replaced by a revi
37、sed edition, or amended. A bilingual version of this publication may be issued at a later date. IEC TR 63042-100:2016 IEC 2016 7 INTRODUCTION UHV AC transmission systems are capable of transmitting large amounts of electric power. However, if a failure occurs in a UHV AC system, the system influence
38、 can be severe from the viewpoints of reliability and overall security of the supply of the power system. Most UHV AC substations are located far from city areas, with large equipment in size and mass installed. Equipment is transported over long distances from where it is manufactured and tested to
39、 where it is installed and commissioned. Also, the installation time of equipment is generally longer compared with lower voltage classes. For UHV AC transmission lines, the design of insulation is an important aspect due to non-linearity effect. Therefore, securing the reliability, availability, an
40、d environmental aspects are crucial issues. Standards and/or applications guidance, as relevant, in the following aspects of UHV AC transmission systems exceeding 800 kV are necessary: a) planning (guidance); b) design; c) technical requirements (exclusively systems-related); d) construction; e) com
41、missioning; f) reliability; g) availability (continuity of power supply, % availability); h) operation; i) maintenance. This document describes both specific issues to UHV AC transmission systems and common issues of UHV AC and lower voltage transmission systems because it is very easy to understand
42、 UHV AC transmission systems as a whole. In this Technical Report, minimum items or requirements for the standards and guidelines for each step of UHV AC transmission systems are described. 8 IEC TR 63042-100:2016 IEC 2016 UHV AC TRANSMISSION SYSTEMS Part 100: General information 1 Scope This part o
43、f IEC 63042, which is a Technical Report, specifies the reference for the standards and guidelines for UHV AC transmission systems. This document provides an overview of these standards as well as guidelines. This document is developed to clarify standardization items and/or guideline items for UHV
44、AC transmission systems. It describes the items to be considered for each stage of planning, design, construction, commissioning, operation, and maintenance during the development of IEC publications for UHV AC transmission systems. NOTE Based on this IEC/TR 63042-100, TC 122 will prepare the standa
45、rds and guidelines for UHV AC transmission systems, but it is not limited by the framework of the TR. A systematic approach is necessary for the preparation of systems-oriented specifications such as those for planning, design, technical requirements, construction, commissioning, reliability, availa
46、bility, operation, and maintenance. 2 Normative references The following documents are referred to in the text in such a way that some or all of their content constitutes requirements of this document. For dated references, only the edition cited applies. For undated references, the latest edition o
47、f the referenced document (including any amendments) applies. IEC 60038, IEC standard voltages IEC 60071-1, Insulation co-ordination Part 1: Definitions, principles and rules 3 Terms and definitions For the purposes of this document, the following terms and definitions apply. ISO and IEC maintain te
48、rminological databases for use in standardization at the following addresses: IEC Electropedia: available at http:/www.electropedia.org/ ISO Online browsing platform: available at http:/www.iso.org/obp 3.1 UHV AC the highest voltage of the AC transmission system exceeding 800 kV Note 1 to entry: UHV
49、 stands for Ultra High Voltage. 4 Planning 4.1 General Large scale power sources have been developed. It is important to transmit the electric power efficiently from these power sources to consumption areas. Moreover, the network enhancement might decrease the system stability and worsen fault current problems. To IEC TR 63042-100:2016 IEC 2016 9 prevent such problems in existing high voltage transmission systems, multiple transmission lines and switchyards might be necessary due to