An Overview and Outlook on Advanced Adiabatic Compressed Air Energy Storage Technique

被引:0
|
作者
Mei S. [1 ]
Li R. [1 ]
Chen L. [2 ]
Xue X. [1 ]
机构
[1] State Key Lab of Control and Simulation of Power Systems and Generation Equipments(Department of Electrical Engineering, Tsinghua University), Haidian District, Beijing
[2] School of QiDi (TUS) Renewable Energy, Qinghai University, Xining, 810016, Qinghai Province
基金
中国国家自然科学基金;
关键词
Advanced adiabatic compressed air energy storage; Ancillary service; Integrated energy system; Multi-carrier energy generation and storage; Smart grid;
D O I
10.13334/j.0258-8013.pcsee.172138
中图分类号
学科分类号
摘要
As an attractive grid-scale energy storage technique, advanced adiabatic compressed air energy storage (AA-CAES) is capable of superior ancillary service and multi-carrier energy generation and storage, which could benefit the renewable energy accommodation. Target to the applications in smart grid and integrated energy system, this paper exploited the dynamic characteristic of the AA-CAES facility and overviewed corresponding modeling, efficiency improvement measures, operation, and planning, as well as the market participation. Besides, the future research directions were depicted along with pointing out the drawbacks of current research. Hopefully, this study could help pave the way to the further applications of AA-CAES technique both in smart grid and integrated energy system, and spark the popularization of AA-CAES technique. © 2018 Chin. Soc. for Elec. Eng.
引用
收藏
页码:2893 / 2907
页数:14
相关论文
共 106 条
  • [1] Shu Y., Zhang Z., Guo J., Et al., Study on key factors and solution of renewable energy accommodation, Proceedings of the CSEE, 37, 1, pp. 1-8, (2017)
  • [2] Northwest Renewables grid connection operation notification, 2016
  • [3] Lund H., Werner S., Wiltshire R., Et al., 4th Generation district heating(4GDH): Integrating smart thermal grids into future sustainable energy systems, Energy, 68, pp. 1-11, (2014)
  • [4] Huang A.Q., Crow M.L., Heydt G.T., Et al., The future renewable electric energy delivery and management (FREEDM) system: The energy internet, Proceedings of the IEEE, 99, 1, pp. 133-148, (2010)
  • [5] Dong Z., Zhao J., Wen F., Et al., From smart grid to energy internet: Basic concept and research framework, Automation of Electric Power Systems, 38, 15, pp. 1-11, (2014)
  • [6] Hu J., Yang S., Hou C., Et al., Present condition analysis on typical demonstration application of large-scale energy storage technology and its enlightenment, Power System Technology, 39, 4, pp. 879-885, (2015)
  • [7] Madaeni S.H., Sioshansi R., Denholm P., How thermal energy storage enhances the economic viability of concentrating solar power, Proceedings of the IEEE, 100, 2, pp. 335-347, (2012)
  • [8] Energy Technology Perspectives 2014: Harnessing Electricity's Potential, (2014)
  • [9] Budt M., Wolf D., Span R., Et al., A review on compressed air energy storage: Basic principles, past milestones and recent developments, Applied Energy, 170, pp. 250-268, (2016)
  • [10] Lund H., Salgi G., The role of compressed air energy storage(CAES) in future sustainable energy systems, Energy Conversion and Management, 50, 5, pp. 1172-1179, (2009)