Optimization of the Performance of PCM Thermal Storage Systems

Author:

Fabbri Giampietro1,Greppi Matteo2,Amati Federico1

Affiliation:

1. Department of Industrial Engineering (DIN), University of Bologna, Viale Risorgimento 2, 40136 Bologna, Italy

2. Department of Electrical, Electronic and Information Engineering (DEI), University of Bologna, Viale Risorgimento 2, 40136 Bologna, Italy

Abstract

In this article, we present some optimised geometries for a thermal storage system previously proposed exploiting Phase-changing materials (PCMs). The optimization has been carried out by using a genetic algorithm. We demonstrate that a simple single-parental, mutation-based, single-objective genetic algorithm can be conveniently employed to optimize the geometry of the proposed PCM thermal energy storage system. Optimization I was the one with the least restrictive conditions and, therefore, with the greatest possibility of variation in the channel geometry. While the one with the worst results is Optimization II because of the most restrictive conditions, primarily constant solid/liquid volume. A metal frame increases the surface area by 6.

Publisher

MDPI AG

Reference28 articles.

1. Application of phase change material in thermal energy storage systems;Kumar;Mater. Today Proc.,2022

2. Analysis and modelling of a phase change storage system for air conditioning applications;Vakilaltojjar;Appl. Therm. Eng.,2001

3. Improvement of a thermal energy storage using plates with paraffin–graphite composite;Zalba;Int. J. Heat Mass Transf.,2005

4. Heat transfer enhancement in water when used as PCM in thermal energy storage;Cabeza;Appl. Therm. Eng.,2002

5. Mehling, H., Hiebler, S., and Ziegler, F. (September, January 28). Latent heat storage using a PCM–graphite composite material. Proceedings of the Terrastock 2000—8th International Conference on Thermal Energy Storage, Stuttgart, Germany.

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