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储热提升风电消纳能力的实施方式及效果分析

DOI: 10.13334/j.0258-8013.pcsee.2015.17.001, PP. 4283-4290

Keywords: 风电消纳,弃风,储热,热电联产,电供热

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Abstract:

在电-热联合系统中,应用大容量储热可提高电力系统运行控制的灵活性,从而提升系统消纳风电的能力。根据电力系统和热力系统的耦合关系,储热的应用位置包括热电联产机组处和电供热系统处。通过对储热环节的控制,打破以热定电的电-热刚性耦合关系,提高系统调节能力。构建了包含储热的热电联产机组、电供热系统的调度模型,将储热纳入包含风电的电力系统有功调度体系。基于我国某省级电网的实际数据,仿真分析了储热提升风电消纳能力的效果,比较了不同应用位置储热在运行模式上的差异。

References

[1]  国家能源局.2013年风电产业继续保持平稳较快发展势头[EB/OL].2014-03-06.http://www.nea.gov.cn/ 2014-03/06/c_133166473.htm.National Energy Administration.Wind power industry continues to maintain steady and rapid development in 2013[EB/OL].[2014-03-.http://www.nea.gov.cn/ 2014-03/06/c_133166473.htm(in Chinese).
[2]  国家电力监管委员会.重点区域风电消纳监管报告(2012年第10号)[R].北京:国家电力监管委员会,2012.State Electricity Regulatory Commission.Supervision report on wind power accommodation in key areas (No. 10, 2012)[R].Beijing:State Electricity Regulatory Commission,2012(in Chinese).
[3]  吴雄,王秀丽,李骏,等.风电储能混合系统的联合调度模型及求解[J].中国电机工程学报,2013,33(13):10-17. Wu Xiong,Wang Xiuli,Li Jun,et al.A joint operation model and solution for hybrid wind energy storage systems[J].Proceedings of the CSEE,2013,33(13):10-17(in Chinese).
[4]  严干贵,刘嘉,崔杨,等.利用储能提高风电调度入网规模的经济性评价[J].中国电机工程学报,2013,33(22):45-52. Yan Gangui,Liu Jia,Cui Yang,et al.Economic evaluation on improving wind power scheduling scale by using energy storage systems[J].Proceedings of the CSEE,2013,33(22):45-52(in Chinese).
[5]  郑乐,胡伟,陆秋瑜,等.储能系统用于提高风电接入的规划和运行综合优化模型[J].中国电机工程学报,2014,34(16):2533-2543. Zheng Le,Hu Wei,Lu Qiuyu,et al.Research on planning and operation model for energy storage system to optimize wind power integration[J].Proceedings of the CSEE,2014,34(16):2533-2543(in Chinese).
[6]  袁小明,程时杰,文劲宇.储能技术在解决大规模风电并网问题中的应用前景分析[J].电力系统自动化,2013,37(1):14-18. Yuan Xiaoming,Cheng Shijie,Wen Jinyu.Prospects analysis of energy storage application in grid integration of large-scale wind power[J].Automation of Electric Power Systems,2013,37(1):14-18(in Chinese).
[7]  李群英,冯利民,许宇辉,等.基于水源热泵技术的风电消纳模式[J].电力系统自动化,2012,36(17):25-27. Li Qunying,Feng Limin,Xu Yuhui,et al.Accommodation mode of wind power based on water source heat pump technology[J].Automation of Electric Power Systems,2012,36(17):25-27(in Chinese).
[8]  龙虹毓,徐瑞林,何国军,等.基于热电风电协调调度的系统日调峰能力分析[J].电力自动化设备,2013,33(4):30-34. Long Hongyu,Xu Ruilin,He Guojun,et al.Analysis of peak-load regulation capability based on combined dispatch of wind power and thermal power[J].Electric Power Automation Equipment,2013,33(4):30-34(in Chinese).
[9]  吕泉,姜浩,陈天佑,等.基于电锅炉的热电厂消纳风电方案及其国民经济评价[J].电力系统自动化,2014,38(1):6-12. Lü Quan,Jiang Hao,Chen Tianyou,et al.Wind power accommodation by combined heat and power plant with electric boiler and its national economic evaluation [J].Automation of Electric Power Systems,2014,38(1):6-12(in Chinese).
[10]  国家能源局综合司.关于做好风电清洁供暖工作的通知(国能综新能〔2013〕63号)[EB/OL].[2013-03-.http:// zfxxgk.nea.gov.cn/auto87/201303/t20130322_1599.htm. Comprehensive Department of National Energy Administration.Notice on the work of clean heating using wind power (No. 63, 2013)[EB/OL].[2013-03-15].http:// zfxxgk.nea.gov.cn/auto87/201303/t20130322_1599.htm(in Chinese).Streckiene G,Martinaitis V,Andersen A N,et al.Feasibility of CHP-plants with thermal stores in the German spot market[J].Applied Energy,2009,86(11):2308-2316.
[11]  Nuytten T,Claessens B,Paredis K,et al.Flexibility of a combined heat and power system with thermal energy storage for district heating[J].Applied Energy,2013,104:583-591.
[12]  吕泉,陈天佑,王海霞,等.配置储热后热电机组调峰能力分析[J].电力系统自动化,2014,38(11):34-41. Lü Quan,Chen Tianyou,Wang Haixia,et al.Analysis on peak-load regulation ability of cogeneration unit with heat accumulator[J].Automation of Electric Power Systems,2014,38(11):34-41(in Chinese).
[13]  徐飞,闵勇,陈磊,等.包含大容量储热的电-热联合系统[J].中国电机工程学报,2014,34(29):5063-5072. Xu Fei,Min Yong,Chen Lei,et al.Combined electricity-heat operation system containing large capacity thermal energy storage[J].Proceedings of the CSEE,2014,34(29):5063-5072(in Chinese).
[14]  吕泉,陈天佑,王海霞,等.含储热的电力系统电热综合调度模型[J].电力自动化设备,2014,34(5):79-85. Lü Quan,Chen Tianyou,Wang Haixia,et al.Combined heat and power dispatch model for power system with heat accumulator[J].Electric Power Automation Equipment,2014,34(5):79-85(in Chinese).
[15]  韩伟国,江亿,郭非.多种供热供暖方式的能耗分析[J].暖通空调,2005,35(11):106-110. Han Weiguo,Jiang Yi,Guo Fei.Energy consumption analysis of several kinds of heating systems[J].Heating Ventilating & Air Conditioning,2005,35(11):106-110(in Chinese).
[16]  梁明珊,符永正.以电为能源的各种供暖方式能效对比分析[J].供热制冷,2011,12(6):64-66. Liang Mingshan,Fu Yongzheng.Energy-efficiency comparative analysis on the electrical energy heating forms[J].Heating & Refrigeration,2011,12(6):64-66(in Chinese).
[17]  周玮,彭昱,孙辉,等.含风电场的电力系统动态经济调度[J].中国电机工程学报,2009,29(25):13-18. Zhou Wei,Peng Yu,Sun Hui,et al.Dynamic economic dispatch in wind power integrated system[J].Proceedings of the CSEE,2009,29(25):13-18(in Chinese).
[18]  王蓓蓓,刘小聪,李扬.面向大容量风电接入考虑用户侧互动的系统日前调度和运行模拟研究[J].中国电机工程学报,2013,33(22):35-44. Wang Beibei,Liu Xiaocong,Li Yang.Day-ahead generation scheduling and operation simulation considering demand response in large-capacity wind power integrated systems[J].Proceedings of the CSEE,2013,33(22):35-44(in Chinese).

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