IEEE 1120-2004 en Guide for the Planning Design Installation and Repair of Submarine Power Cable Systems《海底电力电缆系统的规划、设计、安装和修理指南》.pdf
《IEEE 1120-2004 en Guide for the Planning Design Installation and Repair of Submarine Power Cable Systems《海底电力电缆系统的规划、设计、安装和修理指南》.pdf》由会员分享,可在线阅读,更多相关《IEEE 1120-2004 en Guide for the Planning Design Installation and Repair of Submarine Power Cable Systems《海底电力电缆系统的规划、设计、安装和修理指南》.pdf(51页珍藏版)》请在麦多课文档分享上搜索。
1、IEEE Std 1120-2004IEEE Standards1120TMIEEE Guide for the Planning, Design,Installation, and Repair of SubmarinePower Cable Systems3 Park Avenue, New York, NY 10016-5997, USAIEEE Power Engineering SocietySponsored by theInsulated Conductors CommitteeIEEE Standards31 March 2005Print: SH95271PDF: SS952
2、71Recognized as anAmerican National Standard (ANSI)The Institute of Electrical and Electronics Engineers, Inc.3 Park Avenue, New York, NY 10016-5997, USACopyright 2005 by the Institute of Electrical and Electronics Engineers, Inc.All rights reserved. Published 31 March 2005. Printed in the United St
3、ates of America.IEEE is a registered trademark in the U.S. Patent (978) 750-8400. Permission to photocopy portions of any individual standard for educationalclassroom use can also be obtained through the Copyright Clearance Center.Note: Attention is called to the possibility that implementation of t
4、his standard may require use of subject mat-ter covered by patent rights. By publication of this standard, no position is taken with respect to the existence orvalidity of any patent rights in connection therewith. The IEEE shall not be responsible for identifying patentsfor which a license may be r
5、equired by an IEEE standard or for conducting inquiries into the legal validity orscope of those patents that are brought to its attention.iiiCopyright 2005 IEEE. All rights reserved.IntroductionThis guide has been prepared in the form of a list with brief explanations after each item. This list rep
6、resentsthe more important aspects to consider when working on a submarine cable project. As such, this guideshould be particularly helpful to the engineer who is occasionally presented with the challenge of workingon a submarine cable project.This approach is used because a comprehensive coverage of
7、 the wide variety of subjects involved in asubmarine cable project would fill many volumes. Once this list has been used to evaluate a particularproject, detailed information can be obtained by searching technical literature and by interviewing experts inthe field. This version of this guide address
8、es many more topics than the previous version. It also provides briefexplanations of these topics to illustrate their relevance.Notice to usersErrataErrata, if any, for this and all other standards can be accessed at the following URL: http:/standards.ieee.org/reading/ieee/updates/errata/index.html.
9、 Users are encouraged to check this URL forerrata periodically.InterpretationsCurrent interpretations can be accessed at the following URL: http:/standards.ieee.org/reading/ieee/interp/index.html.PatentsAttention is called to the possibility that implementation of this standard may require use of su
10、bject mattercovered by patent rights. By publication of this standard, no position is taken with respect to the existence orvalidity of any patent rights in connection therewith. The IEEE shall not be responsible for identifyingpatents or patent applications for which a license may be required to im
11、plement an IEEE standard or forconducting inquiries into the legal validity or scope of those patents that are brought to its attention.This introduction is not part of IEEE P1120-2004, IEEE Guide for the Planning, Design, Installation, and Repairof Submarine Power Cable Systems.ivCopyright 2005 IEE
12、E. All rights reserved.ParticipantsAt the time this guide was completed, C11 Submarine Cables Working Group within the Insulated Conduc-tors Committee of IEEE had the following membership: Neil K. Parker, ChairSteve Turner, Co-chairThe following members of the individual balloting committee voted on
13、 this standard. Balloters may havevoted for approval, disapproval, or abstention. When the IEEE-SA Standards Board approved this standard on 23 September 2004, it had the followingmembership:Don Wright, ChairSteve M. Mills, Vice ChairJudith Gorman, Secretary*Member EmeritusAlso included are the foll
14、owing nonvoting IEEE-SA Standards Board liaisons:Satish K. Aggarwal, NRC RepresentativeRichard DeBlasio, DOE RepresentativeAlan Cookson, NIST RepresentativeMichael D. FisherIEEE Standards Project EditorRusty BascomAlex CanaanJohn CooperSwapan DeyCam DowlatEd HahnJerry JohnsonInge KovacsAllen MacPhai
15、lJohn NierenbergHakon OstbyJim PachotDeepak ParmarDave PurnhagenJohn RectorEwell T RobesonNirmal SinghGino ValliRobert O. WilkinsonJack WilsonJoe ZimnochTorben AaboEarle Bascom, IIITommy CooperMatthew DavisDr. Guru dutt DhingraAmir El-SheikhGary EngmannClifford C. ErvenRobert GearRichie HarpLauri J.
16、 HiivalaEdward Horgan, Jr.David W. Jackson Robert KonnikGlenn LuzziJohn MerandoG. MichelThomas PekarekRalph Philbrook, IIIJames RuggieriHenry SoleskiStephen TurnerDaniel WardJames WilsonWolfgang B. HaverkampChuck AdamsH. Stephen BergerMark D. BowmanJoseph A. BruderBob DavisRoberto de Marca BoissonJu
17、lian Forster*Arnold M. GreenspanMark S. HalpinRaymond HapemanRichard J. HollemanRichard H. HulettLowell G. JohnsonJoseph L. Koepfinger*Hermann KochThomas J. McGeanDaleep C. MohlaPaul NikolichT. W. OlsenRonald C. PetersenGary S. RobinsonFrank StoneMalcolm V. ThadenDoug ToppingJoe D. WatsonCONTENTS 1.
18、 Overview 1 1.1 Scope . 1 1.2 Purpose 1 1.3 Preface . 1 2. Route selection . 2 2.1 Natural marine conditions 2 2.2 Man-made obstacles 3 2.3 Hazardous human activities. 4 2.4 Marine access 4 2.5 Beach conditions 4 2.6 Termination sites . 5 2.7 Installation considerations . 5 2.8 System integration .
19、6 2.9 Length 6 2.10 Width . 6 2.11 Operating rights and permitting. 6 2.12 Monitoring and environmental mitigation. 6 3. Permitting and environmental impacts . 6 3.1 Marine vegetation 7 3.2 Marine animal life . 7 3.3 Silt and turbidity 7 3.4 Storage and disposal of excavated material . 7 3.5 Grain s
20、ize distribution . 7 3.6 Beach stability . 7 3.7 Topography 7 3.8 Upland plants and wetlands. 7 3.9 Oil, grease, and pH 8 3.10 Contamination . 8 3.11 Noise 8 4. Information gathering and surveying 8 4.1 Existing maps 8 4.2 Photography and video 8 4.3 Weather data 9 4.4 Marine Surveys 9 4.5 Land surv
21、eys 11 4.6 Survey control 11 4.7 Post-installation surveys 12 4.8 System studies . 12 5. Cable systems . 12 5.1 Reliability 12 5.2 Ampacity . 13 5.3 Hydraulic limitations . 14 Copyright 2005 IEEE. All rights reserved. v5.4 Cable components 15 5.5 Cable weight 17 5.6 Sheath voltages and bonding . 17
22、5.7 DC systems 18 5.8 Joints 18 5.9 Armor anchors . 19 5.10 Optical fiber. 19 5.11 Reparability . 19 6. Termination stations . 19 6.1 Terminations 20 6.2 Station grounding 20 6.3 Slack cable. 20 6.4 Spare cable storage 20 6.5 Fluid handling 21 6.6 Spare fluid storage. 21 6.7 Fluid containment system
23、 21 6.8 Degasifier 21 6.9 Instrumentation and metering 21 6.10 System protection equipment 22 6.11 Communications 22 6.12 Backup generation and pressure pumps. 22 6.13 Laydown area 22 6.14 Future expansion 22 7. Installation techniques 22 7.1 Schedule and timing 23 7.2 Removal of obstacles. 24 7.3 T
24、ransportation 24 7.4 Reel handling. 25 7.5 Laying equipment 25 7.6 Cable protection. 26 7.7 Intertidal installation 28 7.8 Mid-channel crossing installation 29 7.9 Installing cable on land 30 7.10 Cable handling and storage 30 8. Quality assurance and testing . 30 8.1 Plant audit/vendor selection. 3
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