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AuthorBerrhazi, Samir
AuthorOuammi, Ahmed
AuthorBenchrifa, Rachid
Available date2025-03-10T08:18:43Z
Publication Date2020
Publication NameThermal Science and Engineering Progress
ResourceScopus
Identifierhttp://dx.doi.org/10.1016/j.tsep.2020.100716
ISSN24519049
URIhttp://hdl.handle.net/10576/63541
AbstractThis paper attempts to investigate the effect of the diameter of the solid filler and the porosity of the heat transfer fluid on the selection process of suitable material given best performance in terms of storage capacity of thermal energy storages coupled with parabolic trough concentrating solar power plants. In addition, an optimization model is proposed. The model is formulated as a constrained optimization problem to optimally design a rock-bed storage system. The main objective is to determine optimal values of the porosity and the solid filler diameter of appropriate materials maximizing the storage capacity. A comparative study is considered, where the operation of the thermocline storage is simulated taking into account two different materials, the concrete HT and the granite. The results show that the selection of suitable material depends strongly on the porosity and the solid filler diameter.
Languageen
PublisherElsevier
SubjectDecision support model
Materials selection
Optimization
Thermal energy storage
Thermocline
TitleThermo-physical effect of solid filler on the performance of a packed-bed thermal storage
TypeArticle
Volume Number20
dc.accessType Open Access


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