The use of phase change materials (PCM) can be considered an effective way to improve the energy storage capabilities of hybrid water thermal energy storage (TESs) in solar heating and cooling plants. However, due to a few shortcomings, their use is still limited. This paper aims to give a direct estimation of the considerable advantages achievable by means of these hybrid TESs by simulating the annual performance of an existing gymnasium building located in northern Italy. The solar heating/cooling and ground source absorption heat pump plant is simulated using Trnsys. A validated type allows for the simulation of the hybrid water TESs, and also includes the possibility to use aluminum foams to enhance the heat transfer capabilities of the paraffin waxes used as PCM. This paper presents an optimization of the plant design from both energy and economic points of view by considering different cases: all three tanks modeled as sensible (water) storage, or one of the tanks modeled as PCM storage, or as enhanced PCM with metal foam.

Application of Hybrid PCM Thermal Energy Storages with and without Al Foams in Solar Heating/Cooling and Ground Source Absorption Heat Pump Plant: An Energy and Economic Analysis

Lazzarin, Renato;Noro, Marco;Righetti, Giulia;Mancin, Simone
2019

Abstract

The use of phase change materials (PCM) can be considered an effective way to improve the energy storage capabilities of hybrid water thermal energy storage (TESs) in solar heating and cooling plants. However, due to a few shortcomings, their use is still limited. This paper aims to give a direct estimation of the considerable advantages achievable by means of these hybrid TESs by simulating the annual performance of an existing gymnasium building located in northern Italy. The solar heating/cooling and ground source absorption heat pump plant is simulated using Trnsys. A validated type allows for the simulation of the hybrid water TESs, and also includes the possibility to use aluminum foams to enhance the heat transfer capabilities of the paraffin waxes used as PCM. This paper presents an optimization of the plant design from both energy and economic points of view by considering different cases: all three tanks modeled as sensible (water) storage, or one of the tanks modeled as PCM storage, or as enhanced PCM with metal foam.
2019
Electronic
Inglese
9
5
MDPI, ST ALBAN-ANLAGE 66, CH-4052 BASEL, SWITZERLAND
Internazionale
anonymous
1007
hybrid thermal energy storage; PCM; metal foam; solar thermal collector; dual source heat pump; ground source heat pump; absorption heat pump
This research was funded by the SID2016 Research Project (“Utilization of PCMs (phase change contributed to revision of this paper. materials) in short, middle or long terms thermal storages”) by the University of Padova.
no
open
Lazzarin, Renato; Noro, Marco; Righetti, Giulia; Mancin, Simone
01 CONTRIBUTO IN RIVISTA::01.01 - Articolo in rivista
info:eu-repo/semantics/article
4
262
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/3316329
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