Energy Storage Science and Technology ›› 2017, Vol. 6 ›› Issue (1): 25-42.doi: 10.12028/j.issn.2095-4239.2016.0014
Previous Articles Next Articles
TAN Yaqian1,2, ZHOU Xuezhi1, XU Yujie1, CHEN Haisheng1, QIN Wei3
Received:
2016-05-05
Revised:
2016-06-06
Online:
2017-01-03
Published:
2017-01-03
TAN Yaqian1,2, ZHOU Xuezhi1, XU Yujie1, CHEN Haisheng1, QIN Wei3. Seawater pumped hydro energy storage: Review and perspectives[J]. Energy Storage Science and Technology, 2017, 6(1): 25-42.
[1] MCLARNON F R, CAIRNS E J. Energy storage[J]. Annu. Rev. Energy, 1989, 14: 241-271. [2] JENSEN J. Energy storage[M]. London: Newnes-Butterworths, 1980. [3] CHEN H, CONG T N, YANG W, et al. Progress in electrical energy storage system: A critical review[J]. Progress in Natural Science, 2009, 19(3): 291-312. [4] 张新敬. 压缩空气储能系统若干问题的研究[D]. 北京: 中国科学院工程热物理研究所, 2011. ZHANG X J. Investigation on compressed air energy storage system[D]. Beijing: Institute of Engineering Thermophysics, Chinese Acadaemy of Sciences, 2011. [5] WIKIPEDIA. Pumped-storage hydroelectricity[EB/OL]. [2016-04-16]. https://en. wikipedia.org/wiki/Pumped-storage_hydroelectricity. [6] 中国储能网新闻中心. 抽水蓄能电站: 迈入产业成长期[EB/OL]. [2015-12-28]. http://www.escn.com.cn/news/show-292339.html. News Cener of China Energy Storage Network. Pumped storage power station: Entering the industrial growth period[EB/OL]. [2015-12-28]. http://www.escn.com.cn/news/show-292339.html. [7] KANEDA Takeshi, YONEYAMA Naoto. Sea-water pumped-storage power station: JP 1991089819[P]. 1991-04-15. [8] 刘布谷. 世界上首座海水抽水蓄能电站上库的设计与施工[J]. 水利水电快报, 2012, 33(11): 15-17. LIU B G. The design and construction of the first seawater pumped storage power station in the world[J]. Water Resources and Hydropower Engineering, 2012, 33(11): 15-17. [9] 孟祥科. 冲绳海水抽水蓄能电站[J]. 山东电力技术, 1999, 106(2): 77-79. MENG X K. Seawater pumped storage power station in Okinawa[J]. Shangdong Electric Power, 1999, 106(2): 77-79. [10] 关存良. 海水抽水蓄能技术及其展望[J]. 水利水电技术, 2002, 33(1): 71-73. GUAN C L. Technology and prospects of seawater pumped storage[J]. Water Resources and Hydropower Engineering, 2002, 33(1): 71-73. [11] FUJIHARA T, IMANO H, OSHIMA K. Development of pump turbine for seawater pumped storage power plant[J]. Hitachi Review, 1998, 47(5): 199-202. [12] 石文辉, 查浩, 罗魁, 等. 我国海水抽蓄电站发展初探[J]. 中国能源, 2015(12): 36-40. SHI W H, CHA H, LUO K, et al. The development of seawater pumped storage power station in China[J]. Energy of China, 2015(12): 36-40. [13] MCLEAN E, KEARNEY D. An evaluation of seawater pumped hydro storage for regulating the export of renewable energy to the national grid[J]. Energy Procedia, 2014, 46(46): 152-160. [14] Glinsk PHES[EB/OL]. [2016-01-13]. http://www.organicpower.ie/content/ [15] KOTIUGA W, HADJIAN S, KING M, et al. Pre-feasibility study of a 1000MW seawater pumped storage plant in Saudi Arabia[C]// Hydrovision International Conference, USA: Denver, Colorado, USA, 2013. [16] RAMOS H M, AMARAL M P, COVAS D I C. Pumped-storage solution towards energy efficiency and sustainability: Portugal contribution and real case studies[J]. Journal of Water Resource and Protection, 2014, 6(12): 1099-1111. [17] PINE A, IOAKIMIDS C S, FERRAO P. Economic modeling of a seawater pumped-storage system in the context of SãO Miguel[C]// IEEE International Conference on Sustainalbe Energy Technologies, Singapore, 2008: 707-712. [18] Dead Sea Vision LLC. Med-Dead/ Lake Shalom project a vison for economic development and peace[EB/OL]. [2016-01-13]. http://www. [19] KRAEMER S. First sea water pumped hydro proposed-staggering 2400 MW potential[EB/OL]. [2012-01-05]. http://www.greenprophet. com/2012/01/first-sea-water-pumped-hydro-proposed-staggering-2400-mw-potential/. [20] REHMAN S, AL-HADHRAMI L M, ALAM M M. Pumped hydro energy storage system: A technological review[J]. Renewable & Sustainable Energy Reviews, 2015, 44: 586-598. [21] Project No. ENE 1001. Brief description of the Muuga Seawater-pumped hydro accumulation power plant [EB/OL]. [2016- 01-13]. http://energiasalv.ee/wpcontent/uploads/2012/07/Muuga_HAJ_ 17_02_2010_ENG.pdf. [22] KATSAPRAKAKIS D A, CHRISTAKIS D G, PAVLOPOYLOS K, et al. Introduction of a wind powered pumped storage system in the isolated insular power system of Karpathos-Kasos[J]. Applied Energy, 2012, 97(9): 38-48. [23] KATSAPRAKAKIS D A, CHRISTAKIS D G, STEFANAKIS I, et al. Technical details regarding the design, the construction and the operation of seawater pumped storage systems[J]. Energy, 2013, 55(1): 619-630. [24] KATSAPRAKAKIS D, CHRISTAKIS D G. Seawater pumped storage systems and offshore wind parks in islands with low onshore wind potential. A fundamental case study[J]. Energy, 2014, 66(4): 470-486. [25] MANFRIDA G, SECCHI R. Seawater pumping as an electricity storage solution for photovoltaic energy systems[J]. Energy, 2014, 69(5): 470-484. [26] SLOCUM A H, FENNELL G E, DUNDAR G, et al. Ocean renewable energy storage (ORES) system: Analysis of an undersea energy storage concept[J]. Proceedings of the IEEE, 2013, 101(4): 906-924. [27] SLOCUM A H, FENNELL G E, GREENLEE A S. Offshore energy harvesting, storage, and power generation system: US 8698338[P]. 2014-04-15. [28] ALVAREZ A. Underwater batteries are making a splash for energy storage[EB/OL]. [2013-05-17]. https://gigaom.com/2013/05/17/underwater- [29] Nathan. Energy storage undersea: New pumped hydro design floated [EB/OL]. [2013-05-22]. http://reneweconomy.com.au/2013/energy-storage- [30] ANMELDER G. Unterwasserspeicher zum Speichern von vorzugsweise elektrischer Energie: DE 102012100981[P]. 2013-08-08. [31] MA T, YANG H, LU L, et al. Pumped storage-based standalone photovoltaic power generation system: Modeling and techno-economic optimization[J]. Applied Energy, 2015, 137: 649-659. [32] MA T, YANG H, LU L, et al. Technical feasibility study on a standalone hybrid solar-wind system with pumped hydro storage for a remote island in Hong Kong[J]. Renewable Energy, 2014, 69(3): 7-15. [33] MA T, YANG H, LU L, et al. Optimal design of an autonomous solar-wind-pumped storage power supply system[J]. Applied Energy, 2015, 160: 728-736. [34] 国家海洋局. 国家海洋事业发展“十二五”规划[EB/OL]. [2013-04-11]. http://www.soa.gov.cn/zwgk/fwjgwywj/shxzfg/201304/ State oceanic administration people’s republic of China. The 12th five-year plan of the national marine career development[EB/OL]. [2013-04-11]. http://www.soa.gov.cn/zwgk/fwjgwywj/shxzfg/201304/ [35] 任岩, 翟兆江, 郭齐柯, 等. 海岛风/光/抽蓄/海水淡化复合系统的配置优化[J]. 水力发电, 2015, 41(12): 101-104. REN Y, ZHAI Z J, GUO Q K, et al. Configuration optimization of island wind/PV/pumped-storage/desalination hybrid system[J]. Water Power, 2015, 41(12): 101-104. [36] 许昌, 李旻, 任岩, 等. 孤岛风柴蓄复合发电功率粒子群优化分配研究[J]. 电力系统保护与控制, 2013(11): 85-92. XU C, LI M, REN Y, et al. Research on wind-diesel-storage power generation using PSO in a solitary island[J]. Power system protection and control, 2013(11): 85-92. [37] 欧阳丽, 葛兴凯. 海岛智能微电网技术综述[J]. 电器与能效管理技术, 2014(10): 56-59. OUYANG L, GE X K. Intellgent micro-grid technology for island[J]. Electrical & Energy Management Technology, 2014(10): 56-59. [38] 《全国海岛资源综合调查报告》编写组. 全国海岛资源综合调查报告[M]. 北京: 海洋出版社, 1996. The compiling group of the comprehensive survey report of the national island resources. The comprehensive survey report of the national island resources[M]. Beijing: Maritime Press, 1996. [39] 张东. 我国南部沿海地区海水抽水蓄能资源初步评价[J]. 低碳世界, 2015(1): 69-70. ZHANG D. The preliminary evaluation of the seawater pumped hydro energy storage resources in the southern coastal areas of China[J]. Low Carbon World, 2015(1): 69-70. [40] 华东勘测设计研究院. 我院承担的《东部沿海地区海水抽水蓄能资源开发潜力评价》科技项目顺利通过验收[EB/OL]. [2014-11-27]. http://www.boraid.cn/company_news/read_328154.html East China investigation and design institute. The science and technology projects of The development potential evaluation of the seawater pumped hydro energy storage resources in the eastern coastal areas of China passed appraisal[EB/OL]. [2014-11-27]. http://www.boraid.cn/company_news/read_328154.html. |
[1] | Zhen YAO, Qi ZHANG, Rui WANG, Qinghua LIU, Baoguo WANG, Ping MIAO. Application of biomass derived carbon materials in all vanadium flow battery electrodes [J]. Energy Storage Science and Technology, 2022, 11(7): 2083-2091. |
[2] | Yu SHI, Zhong ZHANG, Jingying YANG, Wei QIAN, Hao LI, Xiang ZHAO, Xintong YANG. Opportunity cost modelling and market strategy of energy storage participating in the AGC market [J]. Energy Storage Science and Technology, 2022, 11(7): 2366-2373. |
[3] | Wei ZENG, Junjie XIONG, Jianlin LI, Suliang MA, Yiwen WU. Optimal configuration of energy storage power station in multi-energy system based on weight adaptive whale optimization algorithm [J]. Energy Storage Science and Technology, 2022, 11(7): 2241-2249. |
[4] | Jianmin HAN, Feiyu XUE, Shuangyin LIANG, Tianshu QIAO. Hybrid energy storage system assisted frequency modulation simulation of the coal-fired unit under fuzzy control optimization [J]. Energy Storage Science and Technology, 2022, 11(7): 2188-2196. |
[5] | Zhiying LU, Shan JIANG, Quanlong LI, Kexin MA, Teng FU, Zhigang ZHENG, Zhicheng LIU, Miao LI, Yongsheng LIANG, Zhifei DONG. Open-circuit voltage variation during charge and shelf phases of an all-vanadium liquid flow battery [J]. Energy Storage Science and Technology, 2022, 11(7): 2046-2050. |
[6] | Shufeng DONG, Lingchong LIU, Kunjie TANG, Haiqi ZHAO, Chengsi XU, Liheng LIN. The teaching method of energy storage control experiment based on Simulink and low-code controller [J]. Energy Storage Science and Technology, 2022, 11(7): 2386-2397. |
[7] | Yuhan GUO, Dan YU, Peng YANG, Ziji WANG, Jintao WANG. Optimal capacity allocation method of a distributed energy storage system based on greedy algorithm [J]. Energy Storage Science and Technology, 2022, 11(7): 2295-2304. |
[8] | Xingzhong YUAN, Bin HU, Fan GUO, Huan YAN, Honggang JIA, Zhou SU. EU energy storage policies and market mechanism and its reference to China [J]. Energy Storage Science and Technology, 2022, 11(7): 2344-2353. |
[9] | Xiaojie YANG, Haiyun WANG, Zhongchuan JIANG, Zhanghua SONG. Bidirectional power flow strategy design of BLDC motor for flywheel energy storage [J]. Energy Storage Science and Technology, 2022, 11(7): 2233-2240. |
[10] | Hongtao LI, Shuai ZHANG, Xudong LI, Yunguang JI, Mingxu SUN, Xin LI. Application of single tank energy storage and heat exchange system in hot air non-woven fabric process [J]. Energy Storage Science and Technology, 2022, 11(7): 2250-2257. |
[11] | Tian WU, Mincheng LIN, Hao HAI, Haiyu SUN, Zhaoyin WEN, Fuyuan MA. Development of high-power Ni-MH battery system for primary frequency modulation [J]. Energy Storage Science and Technology, 2022, 11(7): 2213-2221. |
[12] | Guojing LIU, Bingjie LI, Xiaoyan HU, Fen YUE, Jiqiang XU. Australia policy mechanisms and business models for energy storage and their applications to china [J]. Energy Storage Science and Technology, 2022, 11(7): 2332-2343. |
[13] | HAN Junwei, XIAO Jing, TAO Ying, KONG Debin, LV Wei, YANG Quanhong. Compact energy storage: Methodology with graphenes and the applications [J]. Energy Storage Science and Technology, 2022, 11(6): 1865-1873. |
[14] | SU Yaogang, WU Xiaonan, LIAO Borui, LI Shuang. Analysis of novel liquefied-air energy-storage system coupled with LNG cold energy and ORC [J]. Energy Storage Science and Technology, 2022, 11(6): 1996-2006. |
[15] | DING Yi, YANG Yan, CHEN Kai, ZENG Tao, HUANG Yunhui. Intelligent fire protection of lithium-ion battery and its research method [J]. Energy Storage Science and Technology, 2022, 11(6): 1822-1833. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||