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Selection of phase change materials for high temperature latent heat thermal energy storage for concentrated solar power plants

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dc.contributor.author Jayathunga, D
dc.contributor.author Karunathilake, H
dc.contributor.author Narayana, M
dc.contributor.author Witharana, S
dc.contributor.editor Rathnayake, M
dc.contributor.editor Adhikariwatte, V
dc.contributor.editor Hemachandra, K
dc.date.accessioned 2022-10-28T06:11:21Z
dc.date.available 2022-10-28T06:11:21Z
dc.date.issued 2022-07
dc.identifier.citation D. Jayathunga, H. Karunathilake, M. Narayana and S. Witharana, "Selection of phase change materials for high temperature latent heat thermal energy storage for concentrated solar power plants," 2022 Moratuwa Engineering Research Conference (MERCon), 2022, pp. 1-6, doi: 10.1109/MERCon55799.2022.9906235. en_US
dc.identifier.uri http://dl.lib.uom.lk/handle/123/19279
dc.description.abstract Concentrated Solar Power (CSP) is one of the most promising options among emerging renewable energy technologies. Thermal energy storage can be incorporated into CSP plants to improve dispatchability. Thus, the development of high-temperature Thermal Energy Storage (TES) materials is essential to enhance the performance of CSP plants. Phase Change Materials (PCM) show favourable characteristics to be used as the working material in this application. This paper addresses the selection of appropriate storage materials that have desirable properties for thermal energy storage in CSP applications, considering the cost and volume per unit of thermal energy storage. A three-stage screening process based on melting temperature, latent heat of fusion, cost, thermal conductivity and storage volume criteria was used to select the most economical and thermo-physically feasible materials from a list of 25 materials. Accordingly, Na2CO 3 +Li 2 CO 3 (56:44), Li 2 CO3+K2CO 3 (2S:72), Li 2 CO3+K2CO 3 (35:65), NaF+KF+K2CO 3 (17:21:62), LiCO 3 +Na2CO3+K2CO 3 (20:60:20), Li 2 CO 3 +Na2CO3+K2CO 3 (22:16:62), K 2 CO 3 +Na2CO 3 (51:49) S PCMs were selected as the best materials to develop high temperature TES for CSP plants. Using these PCMs as storage materials, cost-effective TES can be developed to deliver technical and economic benefits. en_US
dc.language.iso en en_US
dc.publisher IEEE en_US
dc.relation.uri https://ieeexplore.ieee.org/document/9906235/ en_US
dc.subject PCM en_US
dc.subject Economical en_US
dc.subject Melting temperature en_US
dc.subject LHTES en_US
dc.subject CSP en_US
dc.title Selection of phase change materials for high temperature latent heat thermal energy storage for concentrated solar power plants en_US
dc.type Conference-Full-text en_US
dc.identifier.faculty Engineering en_US
dc.identifier.department Engineering Research Unit, University of Moratuwa en_US
dc.identifier.year 2022 en_US
dc.identifier.conference Moratuwa Engineering Research Conference 2022 en_US
dc.identifier.place Moratuwa, Sri Lanka en_US
dc.identifier.proceeding Proceedings of Moratuwa Engineering Research Conference 2022 en_US
dc.identifier.email jayathungards.21@uom.lk
dc.identifier.email hirushiek@uom.lk
dc.identifier.email mahinsasa@uom.lk
dc.identifier.email switharana@ieee.org
dc.identifier.doi 10.1109/MERCon55799.2022.9906235 en_US


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