Exergy Assessment and Thermo-Economic Analysis of Hybrid Solar Systems with Seasonal Storage and Heat Pump Coupling in the Social Housing Sector in Zaragoza

A real case study of an energy system based on a Solar Assisted Heat Pump (SAHP) fed by hybrid photovoltaic-thermal solar panels (PVT) and seasonal storage (SS) is presented in this paper. Exergy and exergy cost analyses are proposed as complementary methods for the assessment and better understandi...

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Main Authors: Amaya Martínez-Gracia, Sergio Usón, Mª Teresa Pintanel, Javier Uche, Ángel A. Bayod-Rújula, Alejandro Del Amo
Format: Article
Language:English
Published: MDPI AG 2021-02-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/14/5/1279
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author Amaya Martínez-Gracia
Sergio Usón
Mª Teresa Pintanel
Javier Uche
Ángel A. Bayod-Rújula
Alejandro Del Amo
author_facet Amaya Martínez-Gracia
Sergio Usón
Mª Teresa Pintanel
Javier Uche
Ángel A. Bayod-Rújula
Alejandro Del Amo
author_sort Amaya Martínez-Gracia
collection DOAJ
description A real case study of an energy system based on a Solar Assisted Heat Pump (SAHP) fed by hybrid photovoltaic-thermal solar panels (PVT) and seasonal storage (SS) is presented in this paper. Exergy and exergy cost analyses are proposed as complementary methods for the assessment and better understanding of the efficiency of this cogeneration solar configuration. The system performance takes advantage of storage heat in summer, when the solar resource is high in Spain, and is then later consumed during the cold winter (heating season). The building is devoted to social housing, and it is currently under construction. The assessment is based on simulations developed using TRNSYS, a dynamic simulation software for energy systems. Results show that the unit exergy cost of the solar field is around 6. The cost of the seasonal storage is higher, about 13, and its formation is affected both by its own irreversibility and by the irreversibility of the PVT solar field. The cost of the heat delivered by the heat pump is around 15, being affected by all the upstream units and even by the grid. Besides, the analysis points out strategies for improving the system efficiency, such as increasing the size of the storage tank or improving the control strategy of the boiler.
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spelling doaj.art-2b6b7f9984624aee9f0242f5d2f35ec32023-12-11T18:28:52ZengMDPI AGEnergies1996-10732021-02-01145127910.3390/en14051279Exergy Assessment and Thermo-Economic Analysis of Hybrid Solar Systems with Seasonal Storage and Heat Pump Coupling in the Social Housing Sector in ZaragozaAmaya Martínez-Gracia0Sergio Usón1Mª Teresa Pintanel2Javier Uche3Ángel A. Bayod-Rújula4Alejandro Del Amo5Mechanical Engineering Department—Research Institute CIRCE, University of Zaragoza, 50012 Zaragoza, SpainMechanical Engineering Department—Research Institute CIRCE, University of Zaragoza, 50012 Zaragoza, SpainMechanical Engineering Department—Research Institute CIRCE, University of Zaragoza, 50012 Zaragoza, SpainMechanical Engineering Department—Research Institute CIRCE, University of Zaragoza, 50012 Zaragoza, SpainElectrical Engineering Department—Research Institute CIRCE, University of Zaragoza, 50012 Zaragoza, SpainAbora Solar SL, Polígono Centrovía 0196 La Muela, 50196 Zaragoza, SpainA real case study of an energy system based on a Solar Assisted Heat Pump (SAHP) fed by hybrid photovoltaic-thermal solar panels (PVT) and seasonal storage (SS) is presented in this paper. Exergy and exergy cost analyses are proposed as complementary methods for the assessment and better understanding of the efficiency of this cogeneration solar configuration. The system performance takes advantage of storage heat in summer, when the solar resource is high in Spain, and is then later consumed during the cold winter (heating season). The building is devoted to social housing, and it is currently under construction. The assessment is based on simulations developed using TRNSYS, a dynamic simulation software for energy systems. Results show that the unit exergy cost of the solar field is around 6. The cost of the seasonal storage is higher, about 13, and its formation is affected both by its own irreversibility and by the irreversibility of the PVT solar field. The cost of the heat delivered by the heat pump is around 15, being affected by all the upstream units and even by the grid. Besides, the analysis points out strategies for improving the system efficiency, such as increasing the size of the storage tank or improving the control strategy of the boiler.https://www.mdpi.com/1996-1073/14/5/1279hybrid photovoltaic-thermal solar panelsexergy cost analysisseasonal storage
spellingShingle Amaya Martínez-Gracia
Sergio Usón
Mª Teresa Pintanel
Javier Uche
Ángel A. Bayod-Rújula
Alejandro Del Amo
Exergy Assessment and Thermo-Economic Analysis of Hybrid Solar Systems with Seasonal Storage and Heat Pump Coupling in the Social Housing Sector in Zaragoza
Energies
hybrid photovoltaic-thermal solar panels
exergy cost analysis
seasonal storage
title Exergy Assessment and Thermo-Economic Analysis of Hybrid Solar Systems with Seasonal Storage and Heat Pump Coupling in the Social Housing Sector in Zaragoza
title_full Exergy Assessment and Thermo-Economic Analysis of Hybrid Solar Systems with Seasonal Storage and Heat Pump Coupling in the Social Housing Sector in Zaragoza
title_fullStr Exergy Assessment and Thermo-Economic Analysis of Hybrid Solar Systems with Seasonal Storage and Heat Pump Coupling in the Social Housing Sector in Zaragoza
title_full_unstemmed Exergy Assessment and Thermo-Economic Analysis of Hybrid Solar Systems with Seasonal Storage and Heat Pump Coupling in the Social Housing Sector in Zaragoza
title_short Exergy Assessment and Thermo-Economic Analysis of Hybrid Solar Systems with Seasonal Storage and Heat Pump Coupling in the Social Housing Sector in Zaragoza
title_sort exergy assessment and thermo economic analysis of hybrid solar systems with seasonal storage and heat pump coupling in the social housing sector in zaragoza
topic hybrid photovoltaic-thermal solar panels
exergy cost analysis
seasonal storage
url https://www.mdpi.com/1996-1073/14/5/1279
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