Comparison of coal-saving effect and national economic indices of three feasible curtailed wind power accommodating strategies

被引:5
作者
Lyu, Quan [1 ]
Li, Ling [1 ]
Zhu, Quansheng [2 ]
Wang, Haixia [1 ]
Liu, Rao [1 ]
Li, Weidong [1 ]
机构
[1] College of Electrical Engineering, Dalian University of Technology, Dalian
[2] Electric Power Research Institute of State Grid Henan Electric Power Company, Zhengzhou
来源
Dianli Xitong Zidonghua/Automation of Electric Power Systems | 2015年 / 39卷 / 07期
基金
中国国家自然科学基金;
关键词
Accommodation of curtailed wind power; Combined heat and power (CHP); Heat storage; Heat supply; Pumped storage; Wind power generation;
D O I
10.7500/AEPS20140125001
中图分类号
学科分类号
摘要
Heat storage, space heating by wind power and pumped storage are three feasible solutions to accommodate curtailed wind power. In order to evaluate the coal-saving effect and national economic indices of three methods, relevant models are developed, and numerical examples are also given to confirm the theoretical analysis. The results show that the national economic indices of three solutions are all satisfactory under the condition where wind power is so seriously curtailed in the “three Northern regions” in China. Numerical examples show that the heat storage method requires the least investment when offering 1 MW accommodating space for wind power and is capable to achieve the best coal-saving effect when accommodating 1 MW·h wind power. It thus has the best national economic indices and risk-taking ability for the uncertainty of wind power. ©2015 State Grid Electric Power Research Institute Press
引用
收藏
页码:75 / 83
页数:8
相关论文
共 18 条
[11]  
Lyu Q., Chen T., Wang H., Et al., Combined power and heat dispatch model of power system with heat accumulator, Electric Power Automation Equipment, 34, 5, pp. 79-85, (2014)
[12]  
Xu F., Chen L., Jin H., Et al., Modeling and application analysis of optimal joint operation of pumped storage power station and wind power, Automation of Electric Power Systems, 37, 1, pp. 149-154, (2013)
[13]  
Gao Y., Wei B., Design of stratified thermal storage tank for hot water, Journal of HV&AC, 34, 1, pp. 39-42, (2004)
[14]  
Bahnfleth W.P., Musser A., Thermal performance of a full-scale stratified chilled-water thermal storage tank, ASHRAE Transactions, 104, 2, pp. 377-388, (1998)
[15]  
Danish Energy Agency, Technology data for energy plants, pp. 164-168, (2010)
[16]  
Lyu Q., Jiang H., Chen T., Et al., Wind power accommodation by combined heat and power plant with electric boiler and its national economic evaluation, Automation of Electric Power Systems, 38, 1, pp. 6-12, (2014)
[17]  
Liu Q., Zhang Q., Xu X., Analysis on feasibility of heat storing electric boiler application for energy storage and peak shaving to increase utilization rate of wind power capacity, Huadian Technology, 34, 9, pp. 75-82, (2012)
[18]  
Bai H., Qian W., Wei Y., Et al., Analysis on the operating status of Henan thermal power plants, Electric Power, 46, 7, pp. 143-148, (2013)