Recent advances in hybrid compressed air energy storage systems: Technology categorization, integration potentials with renewable energy systems, and retrofitting improvement strategies

被引:6
作者
Geweda, A. E. [1 ]
Saif, Ahmed Gaber H. [1 ]
Zayed, Mohamed E. [2 ]
Kabeel, A. E. [3 ,4 ]
Zafar, Sohaib [5 ]
Khalid, Muhammad [2 ,6 ]
机构
[1] King Fahd Univ Petr & Minerals KFUPM, Mech Engn Dept, Dhahran 31261, Saudi Arabia
[2] KFUPM, Interdisciplinary Res Ctr Sustainable Energy Syst, Dhahran 31261, Saudi Arabia
[3] Tanta Univ, Fac Engn, Mech Power Engn Dept, Tanta, Egypt
[4] Delta Univ Sci & Technol, Fac Energy Engn, Gamasa, Egypt
[5] Lahore Univ Management Sci, Dept Elect Engn, Lahore, Pakistan
[6] KFUPM, Elect Engn Dept, Dhahran 31261, Saudi Arabia
关键词
Hybrid energy storage systems; Renewable energies driven compressed air; energy storage; Optimal operation and scheduling management; Retrofitting improvement strategies; Technoeconomic aspects; ECONOMIC-ANALYSES; GAS-TURBINE; SOLAR; CAES; OPTIMIZATION; PERFORMANCE; COLLECTOR; MACHINE; EXERGY; BASIN;
D O I
10.1016/j.aej.2024.11.062
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The unpredictable nature of renewable energy creates uncertainty and imbalances in energy systems. Incorporating energy storage systems into energy and power applications is a promising approach to provide economic, technical, and environmental benefits to these energy systems. Among different energy storage options, compressed air energy storage (CAES) is a concept for thermo-mechanical energy storage with the potential to offer large-scale, and sustainable operation. However, the low roundtrip efficiency and high unit storage cost are the main drawbacks that impede the commercialization of this kind of advanced technology. This review paper covers the technological advancements, design criteria, retrofitting enhancement strategies, and renewable energies' emerging application potentials for improving the thermo-economic performances of CAES systems. More so, the paper also discusses the recent scheduling considerations, challenges, and the role of solar and wind powered CAES systems in micro-grid distribution within energy networks, and energy market environments. Lastly, the limitations and future expectations of CAES are also highlighted. The paper serves as a detailed guide for planning and implementing various types of renewable driven CAES configurations in diverse applications.
引用
收藏
页码:12 / 29
页数:18
相关论文
共 118 条
[1]   Optimal operation scheduling of wind power integrated with compressed air energy storage (CAES) [J].
Abbaspour, M. ;
Satkin, M. ;
Mohammadi-Ivatloo, B. ;
Lotfi, F. Hoseinzadeh ;
Noorollahi, Y. .
RENEWABLE ENERGY, 2013, 51 :53-59
[2]   Machine learning-aided modeling for predicting freshwater production of a membrane desalination system: A long-short-term memory coupled with election-based optimizer [J].
Abd Elaziz, Mohamed ;
Zayed, Mohamed E. ;
Abdelfattah, H. ;
Aseeri, Ahmad O. ;
Tag-eldin, Elsayed M. ;
Fujii, Manabu ;
Elsheikh, Ammar H. .
ALEXANDRIA ENGINEERING JOURNAL, 2024, 86 :690-703
[3]   Design and dynamic numerical modeling of a hybrid reverse osmosis/adsorption-based distillation system driven by solar dish Stirling engine for enhanced performance and waste heat recovery [J].
Aboelmaaref, Moustafa M. ;
Zhao, Jun ;
Zayed, Mohamed E. ;
Li, Yang ;
Gu, Lei ;
Askalany, Ahmed A. ;
Ghazy, Mohamed ;
Alsaman, Ahmed S. ;
Ali, Ehab S. .
PROCESS SAFETY AND ENVIRONMENTAL PROTECTION, 2023, 180 :324-338
[4]   Research on solar dish/Stirling engine driven adsorption-based desalination system for simultaneous co-generation of electricity and freshwater: Numerical investigation [J].
Aboelmaaref, Moustafa M. ;
Zhao, Jun ;
Li, Wenjia ;
Ali, Ehab S. ;
Askalany, Ahmed A. ;
Ghazy, Mohamed ;
Gu, Lei ;
Zayed, Mohamed E. .
CASE STUDIES IN THERMAL ENGINEERING, 2023, 47
[5]  
Adib M., 2023, Electron Energy, V5, DOI DOI 10.1016/J.PRIME.2023.100194
[6]   Hybridizing solar dish Stirling power system with single-effect desalination for sustainable electricity and freshwater co-generation: Mathematical modeling and performance evaluation [J].
Alhawsawi, Abdulsalam ;
Zayed, Mohamed E. ;
Moustafa, Essam ;
Banoqitah, Essam ;
Elsheikh, Ammar H. .
CASE STUDIES IN THERMAL ENGINEERING, 2023, 45
[7]   A comprehensive techno-economic analysis and multi-criteria optimization of a compressed air energy storage (CAES) hybridized with solar and desalination units [J].
Alirahmi, Seyed Mojtaba ;
Mousavi, Shadi Bashiri ;
Razmi, Amir Reza ;
Ahmadi, Pouria .
ENERGY CONVERSION AND MANAGEMENT, 2021, 236
[8]   A novel approach to Weibull distribution for the assessment of wind energy speed [J].
Aljeddani, Sadiah M. A. ;
Mohammea, M. A. .
ALEXANDRIA ENGINEERING JOURNAL, 2023, 78 :56-64
[9]  
Allen RD., 1985, Summary of selected compressed air energy storage studies
[10]   Multi-objective distributionally robust approach for optimal location of renewable energy sources [J].
AlSaba, Mohammed T. ;
Hakami, Nasser A. ;
AlJebreen, Khalid S. ;
Abido, Mohammad A. .
ALEXANDRIA ENGINEERING JOURNAL, 2023, 77 :75-94