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Investigation on the relations of operating parameters of a thermodynamic cycle energy storage system
Pan LS(潘利生); Dong YH(董跃华); Hao HL(郝亨隆); Zhang XH(张旭辉); Shi, Weixiu; Wei XL(魏小林)
Corresponding AuthorPan, Lisheng([email protected]) ; Zhang, Xuhui([email protected])
Source PublicationJOURNAL OF ENERGY STORAGE
2023-04-01
Volume60Pages:16
ISSN2352-152X
AbstractIn the background of carbon neutrality targets, energy for power generation is being converted from fossil to renewable sources. Energy storage has become particularly more and more important because it is a key tech-nology to solve the instability of renewable energy. An energy storage method coupled with a heat pump and power cycle named thermodynamic cycle energy storage, which uses a heat pump and power cycle to run alternately for energy storage and has attracted the attention of international researchers because of its char-acteristics of green development, flexible application and convenience for large scale. The relations of operating parameters of the thermodynamic cycle energy storage are very important for operating this system sufficiently. Therefore, an optimization model of thermodynamic cycle energy storage was established for the CO2 tran-scritical thermodynamic cycle, with hot water as a hot storage medium and NaCl brine as a cold storage medium. The relations of its operating parameters were analyzed by pinch point temperature difference and control variable method. The results showed that turning of some parameter curves occurs with changing the position of pinch point and largest temperature difference points. The round-trip efficiency generally increases firstly and then decreases with increasing the high-temperature side pressure of the power cycle. In the calculation range, when the evaporating pressure of the heat pump is 2.00 MPa, the high-temperature side pressure of the heat pump is 20.00 MPa, and the CO2 temperature of the air cooler outlet is 20 degrees C, the peak value of round-trip efficiency is the largest, the maximum round-trip efficiency is 56.9 %.
KeywordEnergy storage CO 2 transcritical power cycle CO 2 transcritical heat pump
DOI10.1016/j.est.2022.106589
Indexed BySCI ; EI
Language英语
WOS IDWOS:000920798600001
WOS KeywordINTEGRATION ; PERFORMANCE ; DESIGN
WOS Research AreaEnergy & Fuels
WOS SubjectEnergy & Fuels
Funding ProjectNational Natural Science Foundation of China[51776215] ; [3192042]
Funding OrganizationNational Natural Science Foundation of China
Classification二类/Q1
Ranking1
ContributorPan, Lisheng ; Zhang, Xuhui
Citation statistics
Cited Times:4[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://dspace.imech.ac.cn/handle/311007/91520
Collection高温气体动力学国家重点实验室
流固耦合系统力学重点实验室
Recommended Citation
GB/T 7714
Pan LS,Dong YH,Hao HL,et al. Investigation on the relations of operating parameters of a thermodynamic cycle energy storage system[J]. JOURNAL OF ENERGY STORAGE,2023,60:16.Rp_Au:Pan, Lisheng, Zhang, Xuhui
APA 潘利生,董跃华,郝亨隆,张旭辉,Shi, Weixiu,&魏小林.(2023).Investigation on the relations of operating parameters of a thermodynamic cycle energy storage system.JOURNAL OF ENERGY STORAGE,60,16.
MLA 潘利生,et al."Investigation on the relations of operating parameters of a thermodynamic cycle energy storage system".JOURNAL OF ENERGY STORAGE 60(2023):16.
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