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Maximization of primary energy savings of solar heating and cooling systems by transient simulations and computer design of experiments
Authors:F. Calise  A. Palombo  L. Vanoli
Affiliation:1. DETEC, University of Naples Federico II, P.le Tecchio 80, 80125 Naples, Italy;2. DIT, University of Naples “Parthenope”, Centro Direzionale IS.5, 80143 Naples, Italy
Abstract:In this paper, the simulation of the performance of solar-assisted heating and cooling systems is analyzed. Three different plant layouts are considered: (i) the first one consists of evacuated solar collectors and a single-stage LiBr–H2O absorption chiller; here in order to integrate the system in case of insufficient solar radiation, an electric water-cooled chiller is activated; (ii) configuration of the secondly considered system is similar to the first one, but the absorption chiller and the solar collector area are sized for balancing about 30% of the building cooling load only; (iii) the layout of the thirdly considered system differs from the first one since the auxiliary electric chiller is replaced by a gas-fired heater. Such system configurations also include: circulation pumps, storage tanks, feedback controllers, mixers, diverters and on/off hysteresis controllers.
Keywords:Solar cooling   Dynamic simulation   Design of experiment
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