
Strategic Research on China Energy Technology Revolution System
Licheng Li, Hong Rao, Aidong Xu, Xiaobin Guo, Hao Bai
Strategic Study of CAE ›› 2018, Vol. 20 ›› Issue (3) : 1-8.
Strategic Research on China Energy Technology Revolution System
In order to promote energy technology revolution, the Chinese Academy of Engineering launched a major consultation project in 2015, Strategic Research on China Energy Technology Revolution System. This paper states a development strategy through consultation and investigation in nine key energy areas, including nuclear energy, wind energy, solar energy, energy storage, oil and gas, coal, water energy, biomass energy, and integration of the smart grid and the energy network. Based on the system analysis of China's current situation of energy technologies, this paper proposes an energy technology system in which renewable energies are the main part, electric energy is the main part of the end-use energy, and multiple energies and grids integrate and complement with each other, develops an energy technology route including three stages for development of forward-looking technologies (2020), innovative technologies (2030) and disruptive technologies (2050), and finally puts forward the strategy proposal to promote energy technology revolution, which provides scientific support for making plans and policies about energy in China.
energy technology revolution / energy technology system / energy technology route / strategic research / strategy proposal
[1] |
张映红, 路保平. 世界能源趋势预测及能源技术革命特征分析 [J]. 天然气工业, 2015, 35(10): 1–10.
|
[2] |
康晓文, 付文. IEA/NEA 新版核能技术路线图(上): 世界核能发展的状况及趋势 [J]. 中国核工业, 2016 (4): 35–37.
|
[3] |
康晓文, 付文. IEA/NEA 新版核能技术路线图(中): 世界核能发展的预期行动 [J]. 中国核工业, 2016 (5): 34–37.
|
[4] |
钱伯章. 风能技术与应用 [M]. 北京: 科学出版社, 2010.
|
[5] |
沈德昌. 我国风能技术发展历程 [J]. 太阳能, 2017 (8): 9–10.
|
[6] |
汤叶华, 谢建. 光伏技术的发展现状 [J]. 可再生能源, 2005 (3): 68–69.
|
[7] |
Chow T T. A review on photovoltaic/thermal hybrid solar technol-ogy [J]. Applied Energy, 2010, 87(2): 365–379.
|
[8] |
Divya K C, Østergaard J. Battery energy storage technology for power systems—An overview [J]. Electric Power Systems Re-search, 2009, 79(4): 511–520.
|
[9] |
李建林, 马会萌, 惠东. 储能技术融合分布式可再生能源的现状及发展趋势 [J]. 电工技术学报, 2016, 31(14): 1–10.
|
[10] |
孙卫斌, 曹杨, 鲁瑶. 海洋电磁油气勘探技术及应用进展 [C]. 天津: 中国石油学会2017 年物探技术研讨会, 2017.
|
[11] |
喻言 . 油气勘探技术的发展与革新 [J]. 技术与市场 , 2016, 23(11): 136.
|
[12] |
刘宏. MEMS 矢量传感器在油气管道检测系统中的优化设计 [D]. 太原: 中北大学(硕士学位论文), 2014.
|
[13] |
Paish O. Small hydro power: Technology and current status [J]. Renewable and Sustainable Energy Reviews, 2002, 6(6):537–556.
|
[14] |
袁振宏, 吴创之, 马隆龙. 生物质能利用原理与技术 [M]. 北京: 化学工业出版社, 2005.
|
[15] |
陈树勇, 宋书芳, 李兰欣, 等. 智能电网技术综述 [J]. 电网技术, 2009, 33(8): 1–7.
|
[16] |
李立浧, 张勇军, 陈泽兴, 等. 智能电网与能源网融合的模式及其发展前景 [J]. 电力系统自动化, 2016, 40(11): 1–9.
|
[17] |
国家发展和改革委员会. 能源技术革命创新行动计划(2016—2030) [R]. 北京: 国家发展和改革委员会, 2016.
|
[18] |
中国科学院. 中国至2050 年能源科技发展路线图 [M]. 北京: 科学出版社, 2009.
|
[19] |
国家发展和改革委员会能源研究所. 重塑能源: 面向2050 年能源生产和消费革命路线图研究 [R]. 北京: 国家发展和改革委员会能源研究所, 2016.
|
[20] |
国家可再生能源中心. 中国可再生能源发展路线2050 [R]. 北京: 国家可再生能源中心, 2015.
|
[21] |
国家发展和改革委员会能源研究所. 中国2050 高比例可再生能源发展情景暨途径研究 [R]. 北京: 国家发展和改革委员会能源研究所, 2015.
|
/
〈 |
|
〉 |