Analysis of a hybrid heat and underwater compressed air energy storage system used at coastal areas
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DOI: 10.1016/j.apenergy.2023.122142
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- Yang, Shanju & Zhang, Yao & Gao, Zening & Liu, Zhan, 2024. "Isobaric compressed air energy storage system: Water compensating cycle or CO2 compensating cycle?," Energy, Elsevier, vol. 312(C).
- Liu, Changchun & Su, Xu & Yin, Zhao & Sheng, Yong & Zhou, Xuezhi & Xu, Yujie & Wang, Xudong & Chen, Haisheng, 2024. "Experimental study on the feasibility of isobaric compressed air energy storage as wind power side energy storage," Applied Energy, Elsevier, vol. 364(C).
- Bu, Xianbiao & Huang, Sihao & Liu, Shi & Yang, Yi & Shu, Jie & Tan, Xianfeng & Chen, Hongnian & Wang, Guiling, 2024. "Efficient utilization of abandoned mines for isobaric compressed air energy storage," Energy, Elsevier, vol. 311(C).
- Tang, Junrong & Li, Qibin & Werle, Sebastian & Wang, Shukun & Yu, Haoshui, 2024. "Development and comprehensive thermo-economic analysis of a novel compressed CO2 energy storage system integrated with high-temperature thermal energy storage," Energy, Elsevier, vol. 303(C).
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Keywords
Compressed air energy storage; Underwater storage; Electrical heat storage; Thermodynamics; Economics;All these keywords.
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