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The development and outlook of UHV transmission technology

封面

作者:Global energy interc

页数:17,209页

出版社:中国电力出版社

出版日期:2020

ISBN:9787519850746

电子书格式:pdf/epub/txt

内容简介

  With the continuous consumption of fossil energy, increasingly severe climate change and worsening environment pollution, the human being has put forward higher requirements for reliable, environmentally friendly and sustainable energy, bringing global energy interconnection into being. The core of sustainable development is clean development. UHV transmission technology is critical for the reliable and efficient delivery of clean energy, and it is of great significance to promote its global allocation.  After a century of development, the transmission technology of power system has made great progress in terms of voltage level, transmission capacity and distance. As for UHV AC power transmission technology, UHV DC transmission technology, flexible AC and VSC DC transmission technology, their respective voltage and transmission capacity have exceeded 1000 kV/5000 MVA, :tll00 kV/12000 MW and +800 kV/5000 MW. Flexible AC transmission technology has started to be applied in 1000 kV projects. The development of UHV power transmission technology provides a strong support for the world’s large-scale energy development and long-distance transmission, facilitates a large-scale optimization of energy allocation, and greatly improves the reliability and economic efficiency of power supply in human society.

作者简介

全球能源互联网发展合作组织(简称合作组织),是由致力于推动世界能源可持续发展的相关企业、组织、机构和个人等自愿组成的国际组织。注册地设在北京。合作组织的宗旨是推动构建全球能源互联网,以清洁和绿色方式满足全球电力需求,推动实现联合国“人人享有可持续能源”和应对气候变化目标,服务人类社会可持续发展。合作组织将积极推广全球能源互联网理念,组织制定全球能源互联网发展规划,建立技术标准体系,开展联合技术创新、重大问题研究和国际交流合作,推动工程项目实施,提供咨询服务,引领全球能源互联网发展。

本书特色

给出了特高压交流、特高压直流、柔性交流和柔性直流等先进输电技术的发展现状和核心技术装备,提出了技术和经济性展望,有力支撑全球能源互联网建设和清洁能源大规模开发利用的趋势,对于读者而言兼顾科普性、通识性以及专业性,满足不同读者的信息获取需求。

目录

PREFACE
SUMMARY

1 UHV AC Power Transmission Technology
1.1 Overview
1.1.1 International Exploration
1.1.2 Development in China
1.2 Technology Innovation
1.2.1 Key Technologies on System Research
1,2.2 Key Technologies on Overvoltage and External Insulation
1.2.3 Key Technologies on Electromagnetic Environment
1.2.4 Key Equipment Research and Development Technology
1,2.5 Complete Set of System Integration Technology
1.3 Gore Equipment
1.3.1 Transformer
1.3.2 GIS
1.3.3 Circuit Breaker
1.3.4 Isolating Switch
1.3.5 Lightning Arrester
1.3.6 Post Insulator
1.3.7 Bushing
1.3.8 Voltage Transformer
1.3.9 Current Transformer
1.3.10 Tower
1.3.11 Conductor
1.3.12 Insulator
1.4 Test System
1.5 Standard System
1.6 Typical Projects
1.6.1 Southeast Shanxi-Nanyang-Jingmen 1000 kV Pilot and Demonstration Project
1.6.2 Huainan-Shanghai 1000 kV Project
1.6.3 Mengxi-South Tianjin 1000 kV Project
1.6.4 Yuheng-Weifang 1000 kV Project
1.6.5 Sutong 1000 kV GIL Comprehensive Pipe Gallery Project
1.6.6 Shandong-Hebei 1000kV Project
1.7 Technical Outlook
1.7.1 UHV Switchgear for Special Applications
1.7.2 UHV Circuit Breaker with Long Electrical Life and Large Capacity
1.7.3 UHV Transformer with Key Performance Parameters Monitored
1.7.4 UHV AC High-performance Overvoltage Limiter
1.7.5 Environment-Friendly UHV AC Gas-Insulated Transmission Line (GIL) Power Transmission
1.8 Economic Outlook
……

2 UHVDC Power Transmission Technology
3 Flexible Transmission Technology

EPILOGUE
Appendix

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