1. 中国电力工程顾问集团中南电力设计院有限公司, 湖北 武汉 430071Central Southern China Electric Power Design Institute Co., Ltd. of CPECC, Wuhan 430071, Hubei, China
2. 中能建数字科技集团有限公司, 北京 100022China Energy Digital Technology Group Co., Ltd., Beijing 100022, China
[ "许婷,1984-,女,高级工程师,工学硕士,主要从事火电、新型储能经济性研究工作(e-mail)xuting@csepdi.com" ]
纸质出版:2025
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许婷, 侯景峥, 祝玉章, 等. 燃煤机组耦合非补燃式压缩空气储能技术的深度调峰系统应用与经济性研究[J]. 南方能源建设, 2025, 12(6): 17-23.
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许婷, 侯景峥, 祝玉章, 等. 燃煤机组耦合非补燃式压缩空气储能技术的深度调峰系统应用与经济性研究[J]. 南方能源建设, 2025, 12(6): 17-23. DOI: 10.16516/j.ceec.2024-364.
. DOI: 10.16516/j.ceec.2024-364.
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SONG M H, YANG H Y. Flexible peak shaving technology for coal-fired boilers based on intelligent control [J]. Southern energy construction, 2024, 11(6): 1-17. DOI: 10.16516/j.ceec.2024.6.01.
宋民航, 杨宏燕. 基于智能控制的燃煤锅炉灵活调峰技术 [J]. 南方能源建设, 2024, 11(6): 1-17. DOI: 10.16516/j.ceec.2024.6.01.
YU G Q, LIU K T, HU Z M, et al. Optimal scheduling of deep peak regulation for thermal power units in power grid with large-scale new energy [J]. Electric power engineering technology, 2023, 42(1): 243-250. DOI: 10.12158/j.2096-3203.2023.01.029.
于国强, 刘克天, 胡尊民, 等. 大规模新能源并网下火电机组深度调峰优化调度 [J]. 电力工程技术, 2023, 42(1): 243-250. DOI: 10.12158/j.2096-3203.2023.01.029.
YUAN Z W, YANG Y F. Research status and development trend of compressed air energy storage technology [J]. Southern energy construction, 2024, 11(2): 146-153. DOI: 10.16516/j.ceec.2024.2.14.
袁照威, 杨易凡. 压缩空气储能技术研究现状及发展趋势 [J]. 南方能源建设, 2024, 11(2): 146-153. DOI: 10.16516/j.ceec.2024.2.14.
JI H M, XUE L, ZHOU F S, et al. System simulation study on performance of non-supplementary combustion liquid compressed air energy storage system [J]. Power generation technology, 2024, 45(5): 910-918. DOI: 10.12096/j.2096-4528.pgt.24030.
姬海民, 薛磊, 周方盛, 等. 非补燃液态压缩空气储能系统性能模拟研究 [J]. 发电技术, 2024, 45(5): 910-918. DOI: 10.12096/j.2096-4528.pgt.24030.
JI S Y, DUAN L Q, WANG Y H, et al. Research on flexible peak load regulation strategy and performance of typical coal-fired units [J]. Thermal power generation, 2023, 52(9): 94-103. DOI: 10.19666/j.rlfd.202305092.
冀帅宇, 段立强, 王远慧, 等. 典型燃煤机组灵活调峰策略及性能研究 [J]. 热力发电, 2023, 52(9): 94-103. DOI: 10.19666/j.rlfd.202305092.
LI Y H. Analysis on peak regulating of the grid-connected photovoltaic power generation with energy storage [D]. Beijing: North China Electric Power University, 2012. DOI: 10.7666/d.y2140252.
黎永华. 结合储能的并网光伏发电对电网的调峰作用分析 [D]. 北京: 华北电力大学, 2012. DOI: 10.7666/d.y2140252.
JIA Z J, FAN W, REN S J, et al. Research on combustion stability of a 600 MW subcritical power unit under long-term deep peak shaving [J]. Power generation technology, 2024, 45(2): 216-225. DOI: 10.12096/j.2096-4528.pgt.23016.
贾志军, 范伟, 任少君, 等. 600 MW亚临界机组长时间深度调峰燃烧稳定性研究 [J]. 发电技术, 2024, 45(2): 216-225. DOI: 10.12096/j.2096-4528.pgt.23016.
ZHANG L. Research on deep peak shaving of coal-fired units [J]. Journal of Hunan University of Arts and Science (science and technology), 2024, 36(3): 77-83. DOI: 10.3969/j.issn.1672-6146.2024.03.013.
张磊. 燃煤机组深度调峰问题研究 [J]. 湖南文理学院学报(自然科学版), 2024, 36(3): 77-83. DOI: 10.3969/j.issn.1672-6146.2024.03.013.
YUAN X, LIU J, CHEN H, et al. Effect of carbon capture technology application on peak shaving capacity of coal-fired units [J]. Power generation technology, 2024, 45(3): 373-381. DOI: 10.12096/j.2096-4528.pgt.22127.
袁鑫, 刘骏, 陈衡, 等. 碳捕集技术应用对燃煤机组调峰能力的影响 [J]. 发电技术, 2024, 45(3): 373-381. DOI: 10.12096/j.2096-4528.pgt.22127.
LU X Q. Optimization research and peak shaving performance analysis of coal power coupling steam-driven compressed air energy storage system [D]. Jinan: Shandong University, 2023. DOI: 10.27272/d.cnki.gshdu.2023.002268.
路雪晴. 火电耦合汽驱压缩空气储能系统优化研究与调峰性能分析 [D]. 济南: 山东大学, 2023. DOI: 10.27272/d.cnki.gshdu.2023.002268.
LI B, CHEN J L, LI C X, et al. Research on coupling schemes of a compressed air energy storage system and thermal power unit [J]. Journal of Chinese society of power engineering, 2021, 41(3): 244-250. DOI: 10.19805/j.cnki.jcspe.2021.03.011.
李斌, 陈吉玲, 李晨昕, 等. 压缩空气储能系统与火电机组的耦合方案研究 [J]. 动力工程学报, 2021, 41(3): 244-250. DOI: 10.19805/j.cnki.jcspe.2021.03.011.
LI J J, LI X S, ZHOU G W, et al. Thermodynamics and flexibility analysis of a novel coal-fired CHP-CAES system [J]. Journal of Chinese society of power engineering, 2023, 43(2): 205-213. DOI: 10.19805/j.cnki.jcspe.2023.02.011.
李佳佳, 李兴朔, 周国文, 等. 先进储能型燃煤热电联产系统热力特性及灵活性分析 [J]. 动力工程学报, 2023, 43(2): 205-213. DOI: 10.19805/j.cnki.jcspe.2023.02.011.
Central Southern China Electric Power Design Institute Co., Ltd. of China Power Engineering Group, China Energy Digital Technology Group Co., Ltd., Hubei Chuyun Energy Storage Technology Co., Ltd. Coal-fired unit deep peak regulation system based on advanced compressed air energy storage: CN221169682U [P]. 2024-06-18.
中国电力工程顾问集团中南电力设计院有限公司, 中能建数字科技集团有限公司, 湖北楚韵储能科技有限责任公司. 一种基于先进压缩空气储能的燃煤机组深度调峰系统: CN221169682U [P]. 2024-06-18.
MENG Z X. Integrated resource strategic planning model considering system flexibility and application research [D]. Beijing: North China Electric Power University, 2022. DOI: 10.27140/d.cnki.ghbbu.2022.001249.
孟之绪. 考虑系统灵活性的综合资源战略规划模型及应用研究 [D]. 北京: 华北电力大学, 2022. DOI: 10.27140/d.cnki.ghbbu.2022.001249.
ZHANG W L, GU H, ZHANG C, et al. Technical economic characteristics and development trends of compressed air energy storage [J]. Energy storage science and technology, 2023, 12(4): 1295-1301. DOI: 10.19799/j.cnki.2095-4239.2022.0645.
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. DOI: 10.19799/j.cnki.2095-4239.2022.0645.
ZHOU X H, ZHENG Z C, HU Y Q. Application research of steam extraction molten salt heat storage technology in coal-fired power generation flexibility transformation [J]. Scientific and technological innovation, 2023(22): 53-56. DOI: 10.3969/j.issn.1673-1328.2023.22.014.
周信华, 郑祯晨, 胡远庆. 抽汽熔盐蓄热技术在煤电灵活性改造中的应用研究 [J]. 科学技术创新, 2023(22): 53-56. DOI: 10.3969/j.issn.1673-1328.2023.22.014.
China Electricity Council. Basic terminology of electrical energy storage: DL/T 2528—2022 [S]. Beijing: China Electric Power Press, 2022.
中国电力企业联合会. 电力储能基本术语: DL/T 2528—2022 [S]. 北京: 中国电力出版社, 2022.
WANG Q B. Hereby it establishes a model for analyzing sensitive of nonlinear and multifactor of investment project [D]. Wuhan: Huazhong University of Science and Technology, 2005. DOI: 10.7666/d.d009486.
王秋彬. 基于多因素非线性敏感分析的工业项目评估模型 [D]. 武汉: 华中科技大学, 2005. DOI: 10.7666/d.d009486.
QIN F, LIU C. Research on the economic evaluation of business models and peak valley operating conditions of energy storage systems [J]. Electrical equipment and economy, 2023(10): 66-69. DOI: 10.3969/j.issn.1673-8845.2023.10.020.
秦帆, 刘聪. 储能系统商业模式及峰谷差运行工况的经济性评价研究 [J]. 电气技术与经济, 2023(10): 66-69. DOI: 10.3969/j.issn.1673-8845.2023.10.020.
China Electric Power Planning Engineering Institute. Guidelines for economic evaluation of fossil-fired power plant: DL/T 5435—2019 [S]. Beijing: China Planning Press, 2019.
电力规划设计总院. 火力发电工程经济评价导则: DL/T 5435—2019 [S]. 北京: 中国计划出版社, 2019.
LIU X C, MEI S W, DING R C, et al. Current situation, development trend and application prospect of compressed air energy storage engineering projects [J]. Electric power automation equipment, 2023, 43(10): 38-47, 102. DOI: 10.16081/j.epae.202309005.
刘笑驰, 梅生伟, 丁若晨, 等. 压缩空气储能工程现状、发展趋势及应用展望 [J]. 电力自动化设备, 2023, 43(10): 38-47, 102. DOI: 10.16081/j.epae.202309005.
YANG X W, REN H, LIAO Z Q, et al. Research status and prospect of underground artificial rock caverns for compressed air energy storage [J]. Southern energy construction, 2024, 11(4): 54-64. DOI: 10.16516/j.ceec.2024.4.06.
杨雪雯, 任灏, 廖泽球, 等. 压缩空气储能地下人工洞室研究现状与展望 [J]. 南方能源建设, 2024, 11(4): 54-64. DOI: 10.16516/j.ceec.2024.4.06.
PENG W, LI Y N, SHANG H L, et al. Research and application of old well sealing technology in compressed air energy storage power station [J]. Electric power survey design, 2024(6): 61-65. DOI: 10.13500/j.dlkcsj.issn1671-9913.2024.06.013.
彭威, 利奕年, 商浩亮, 等. 压缩空气储能电站中的老井锻铣封堵技术研究和应用 [J]. 电力勘测设计, 2024(6): 61-65. DOI: 10.13500/j.dlkcsj.issn1671-9913.2024.06.013.
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