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Design and optimization of a novel wind-powered liquefied air energy storage system integrated with a supercritical carbon dioxide cycle

dc.contributor.authorSadeghi, Shayan
dc.contributor.authorJavani, Nader
dc.contributor.authorGhandehariun, Samane
dc.contributor.authorAhmadi, Pouria
dc.date.accessioned2026-06-27T14:38:16Z
dc.date.issued2021
dc.description.abstractIn this paper, a novel liquefied air energy storage (LAES) system driven by wind energy and natural gas, integrated with a two-stage supercritical carbon dioxide cycle is proposed and investigated. Three different sensible thermal energy storage (TES) systems are considered in this study to store the heat produced in the compressions stage and use it later to improve the performance. The proposed system is analyzed in terms of energy, exergy, exergo-economic, and environmental impacts. A detailed economical and technical investigation is carried out to determine system hotspots, exergy destruction rates, and the performance of the system and subsystems. Finally, by considering ten design variables, the nondominated sorting genetic algorithm-II (NSGA-II) is employed to evaluate the optimal design solutions for double objective functions, including cost per unit of exergy and overall system exergy efficiency. Results indicate that for a 50 MW of discharging power, 80.75 MW of charging electricity and 1.22 kg/s of fuel are required. Additionally, the product cost per unit of exergy and the levelized costs are calculated as 32.02 $/GJ and 0.133 $/kWh, respectively. The results of the optimization study also show that for the optimal Pareto solution, the energy efficiency would be 52.2% while the exergy efficiency is 45.26%.en
dc.description.urihttps://doi.org/10.1002/est2.274
dc.identifier.doi10.1002/est2.274
dc.identifier.eissn2578-4862
dc.identifier.issue6
dc.identifier.urihttps://hdl.handle.net/20.500.14981/62950
dc.identifier.volume3
dc.identifier.wos000684818800001
dc.language.isoeng
dc.publisherWILEY
dc.relation.ispartofENERGY STORAGE
dc.subjectenvironmental assessment
dc.subjectexergo-economic
dc.subjectliquefied air energy storage
dc.subjectoptimization
dc.subjectrenewable energy
dc.subjectMULTIOBJECTIVE OPTIMIZATION
dc.subjectTHERMODYNAMIC ANALYSIS
dc.subjectHYDROGEN
dc.subjectEXERGY
dc.subjectPERFORMANCE
dc.subjectALGORITHM
dc.subjectTURBINE
dc.subjectLAES
dc.subjectEnergy & Fuels
dc.titleDesign and optimization of a novel wind-powered liquefied air energy storage system integrated with a supercritical carbon dioxide cycle
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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