参考文献
[1]PAUL A, JOSEPH S M, SCOTT L. Long-Duration Electricity Storage Applications, Economics, and Technologies[J]. Joule, 2020, 4(1):21-32.
[2]BRUNO C, LAWRIE S, JAMES R, et al. Short-, Medium-, and Long-Duration Energy Storage in a 100% Renewable Electricity Grid: A UK Case Study[J]. Energies, 2021, 14(24): 1-28.
[3]DEPARTMENT FOR BUSINESS, Energy & Industrial Strategy of UK Government. Benefits of Long Duration Electricity Storage [R]. 2022.
[4]DEPARTMENT FOR BUSINESS, Energy & Industrial Strategy of UK Government. Longer Duration Energy Storage Demonstration competition:cross-cutting guidance [R]. 2021.
[5]JACQUELINE A D, KATHERINE Z R, TYLER H R, et al. Role of Long-Duration Energy Storage in Variable Renewable Electricity Systems[J]. Joule, 2020, 4(9): 1907-1928.
[6]UDI H, BEN K, JOSEPH S. Development of Long-Duration Energy Storage Projects in Electric Power Systems in the United States: A Survey of Factors Which Are Shaping the Market[J]. Frontiers in Energy Research, 2020, 8.
[7]CHAD A H, MICHAEL M P, EVAN P R, et al. Techno-economic analysis of long-duration energy storage and flexible power generation technologies to support high-variable renewable energy grids[C]. International Symposium on Low Power Electronics and Design, 2021, 5(8): 2077-2101.
[8]JACQUELINE A D, NATHAN S L. Long-duration energy storage for reliable renewable electricity: The realistic possibilities[J]. Bulletin of the Atomic Scientists, 2021, 77(6):281-284.
[9]JESSE D J, NESTOR A S. Long-duration energy storage: A blueprint for research and innovation[C]. International Symposium on Low Power Electronics and Design, 2021, 5(9):2241-2246.
[10]WILLIAM J M, VALERIO D, RAYMOND H B, et al. Long-duration energy storage in a decarbonized future: Policy gaps, needs, and opportunities[J]. MRS Energy and Sustainability, 2022, 9(2): 142-170.
[11]SUSAN M S, WILLIAM V H. Long-vs.short-term energy storage technologies analysis : a life-cycle cost study : a study for the DOE energy storage systems program [R].2003.
[12]NESTOR A S, JESSE D J, AURORA E, et al. The Design Space For Long-Duration Energy Storage In Decarbonized Power Systems[J]. Nature Energy, 2021, 6(5): 506-516.
[13]RUI S, JEREMIAH R, SERGIO C, et al. Evaluating emerging long-duration energy storage technologies[J]. Renewable and Sustainable Energy Reviews, 2022, 159: 112240.
[14]JIAZI Z, OMAR J G, JOSHUA E, et al. Benefit Analysis of Long-Duration Energy Storage in Power Systems with High Renewable Energy Shares[J]. Frontiers in energy research, 2020, 8.
[15]UDI H, BEN K, JOSEPH S. Development of Long-Duration Energy Storage Projects in Electric Power Systems in the United States: A Survey of Factors Which Are Shaping the Market[J]. Frontiers in Energy Research, 2020, 8.
[16]周喜超.电力储能技术发展现状及走向分析[J].热力发电,2020,49(8):7-12.
[17]刘阳,滕卫军,谷青发,等.规模化多元电化学储能度电成本及其经济性分析[J].储能科学与技术,2023,12(1):312-318.
[18]李小平,曾少华,李晓东,等.改善偏远地区电能质量的移动式储能技术分析[J].自动化应用,2023,64(6):186-188.
[19]张玮灵,古含,章超,等.压缩空气储能技术经济特点及发展趋势[J].储能科学与技术,2023,12(4):1295-1301.
[20]张金平,周强,王定美,等.储能在高比例新能源电力系统中的应用及展望[J].内燃机与配件,2023,380(8):97-99.
[21]王佳晶.2031年欧洲储能市场规模将达到45吉瓦[N].中国石化报,2022-07-22(6).
[22]李小松.储能蓝海[N].中国石油报,2022-08-23(8).
[1] 北极星储能网.我国储能发展历程及储能政策法规梳理.2018年9月.
[2] 前瞻产业研究院.“双碳”及可再生能源发电背景下长时储能迎来爆发机遇.2022年4月.
[3] 常乐,张敏吉,梁嘉,等.储能在能源安全中的作用[J].中外能源,2012,17(2):29-35.
[4] 光大证券.《长时储能:百舸争流,谁主沉浮?》.2022年8月.
[5] Net-zero power and Long-duration energy storage for a renewable grid,Mackinsey,2022.
[6] 张新波.长时电网储能电池[J].中国科学基金,2022,36(3):435-436.
[7] 光大证券.《长时储能:百舸争流,谁主沉浮?》.2022年8月.
[8] 安信证券.《大型清洁能源基地建设加速,长时储能需求渐显》.2022年9月.
[9] 伍德麦肯兹(Wood Mackenzie)公司.《2022年长时储能报告》.2022年12月.
[10] 中国储能网新闻中心.《长时储能的发展挑战及展望》.2022年5月.
[11] 光大证券.《长时储能:百舸争流,谁主沉浮?》.2022年8月.
[12] 文军,刘楠,裴杰,等.储能技术全生命周期度电成本分析[J].热力发电,2021,50(8):24-29.
[13] 文军,刘楠,裴杰,等.储能技术全生命周期度电成本分析[J].热力发电,2021,50(8):24-29.
[14] 文军,刘楠,裴杰,等.储能技术全生命周期度电成本分析[J].热力发电,2021,50(8):24-29.(随着储能原材料价格、系统性能等因素的变化,储能系统的相关经济指标可能产生明显波动,故测算结果仅供读者参考。后同)
[15] 文军,刘楠,裴杰,等.储能技术全生命周期度电成本分析[J].热力发电,2021,50(8):24-29.(随着储能原材料价格、系统性能等因素的变化,储能系统的相关经济指标可能产生明显波动,故测算结果仅供读者参考。后同)
[16] 文军,刘楠,裴杰,等.储能技术全生命周期度电成本分析[J].热力发电,2021,50(8):24-29.
[17] 文军,刘楠,裴杰,等.储能技术全生命周期度电成本分析[J].热力发电,2021,50(8):24-29.
[18] 文军,刘楠,裴杰,等.储能技术全生命周期度电成本分析[J].热力发电,2021,50(8):24-29.
[19] 张新波.长时电网储能电池[J].中国科学基金,2022,36(3):435-436.
[20]《长时储能的发展挑战及展望》,中国储能网新闻中心.2022年5月.