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- W4224256426 abstract "In the current study, a 2-D concentric dispersion model with apparent heat capacity method was developed in order to investigate the thermal reactions of a solar system with thermal energy storage. The system is consisted of a phase change material (PCM) or sensible, encapsulated spherical capsules and a synthetic oil which was operated as the heat transfer fluid (HTF). In order to resolve the low thermal conductivity of the PCM for the energy storage, increasing the charging and also storage efficiencies of the system, an optimization was conducted using the Genetic Algorithm (GA) with a novel approach of combination possibility of sensible-latent materials as the optimal configuration with two different scenarios (scenario 1: outlet temperature of the unit with no temperature limitation, scenario 2: outlet temperature of the unit with threshold constraint). Results showed that by 5% increase (decrease) in the input HTF temperature, the charging time is lowered (increased) the by 25% (32%) and also the total stored energy was increased by 20% (decreased by 17%). Also, 50% increase (decrease) of the HTF flow rate results in 12% increase (25% decrease) in the charging time. 4940 and 4725 kWh of energy is stored by the optimal configuration during the charge for the 1st and 2nd optimization scenarios respectively which is at least 14% higher compared to the single PCM/sensible studied cases." @default.
- W4224256426 created "2022-04-26" @default.
- W4224256426 creator A5048146087 @default.
- W4224256426 creator A5081949221 @default.
- W4224256426 date "2022-08-01" @default.
- W4224256426 modified "2023-10-18" @default.
- W4224256426 title "Modeling and optimization of a thermal energy storage unit with cascaded PCM capsules in connection to a solar collector" @default.
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- W4224256426 doi "https://doi.org/10.1016/j.seta.2022.102197" @default.
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