A review on thermochemical seasonal solar energy storage materials and modeling methods

Abstract In the current era, national and international energy strategies are increasingly focused on promoting the adoption of clean and sustainable energy sources. In this perspective, thermal energy storage (TES) is essential in developing sustainable energy systems. Researchers examined thermoch...

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Published in:International Journal of Air-Conditioning and Refrigeration
Main Authors: Abdullah, M. Koushaeian, N. A. Shah, J. D. Chung
Format: Article
Language:English
Published: Springer 2024-01-01
Subjects:
Online Access:https://doi.org/10.1007/s44189-023-00044-6
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author Abdullah
M. Koushaeian
N. A. Shah
J. D. Chung
author_facet Abdullah
M. Koushaeian
N. A. Shah
J. D. Chung
author_sort Abdullah
collection DOAJ
container_title International Journal of Air-Conditioning and Refrigeration
description Abstract In the current era, national and international energy strategies are increasingly focused on promoting the adoption of clean and sustainable energy sources. In this perspective, thermal energy storage (TES) is essential in developing sustainable energy systems. Researchers examined thermochemical heat storage because of its benefits over sensible and latent heat storage systems, such as higher energy density and decreased heat loss. Solar energy is a promising alternative among the numerous renewable energy sources. As a result, this study provides an overview of thermochemical heat storage materials, focusing on materials utilized by solar energy systems in buildings. The research examines the storage materials used in relevant studies and the models used to predict and enhance system performance.
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spelling doaj-art-ae02bdd70fa342c5bdac9ea5cfd93d142025-08-19T23:52:21ZengSpringerInternational Journal of Air-Conditioning and Refrigeration2010-13332024-01-0132112610.1007/s44189-023-00044-6A review on thermochemical seasonal solar energy storage materials and modeling methodsAbdullah0M. Koushaeian1N. A. Shah2J. D. Chung3Department of Mechanical Engineering, Sejong UniversityDepartment of Mechanical Engineering, Sejong UniversityDepartment of Mechanical Engineering, Sejong UniversityDepartment of Mechanical Engineering, Sejong UniversityAbstract In the current era, national and international energy strategies are increasingly focused on promoting the adoption of clean and sustainable energy sources. In this perspective, thermal energy storage (TES) is essential in developing sustainable energy systems. Researchers examined thermochemical heat storage because of its benefits over sensible and latent heat storage systems, such as higher energy density and decreased heat loss. Solar energy is a promising alternative among the numerous renewable energy sources. As a result, this study provides an overview of thermochemical heat storage materials, focusing on materials utilized by solar energy systems in buildings. The research examines the storage materials used in relevant studies and the models used to predict and enhance system performance.https://doi.org/10.1007/s44189-023-00044-6IsothermsThermal energy storageEnergy densityThermochemical materialsAdsorption
spellingShingle Abdullah
M. Koushaeian
N. A. Shah
J. D. Chung
A review on thermochemical seasonal solar energy storage materials and modeling methods
Isotherms
Thermal energy storage
Energy density
Thermochemical materials
Adsorption
title A review on thermochemical seasonal solar energy storage materials and modeling methods
title_full A review on thermochemical seasonal solar energy storage materials and modeling methods
title_fullStr A review on thermochemical seasonal solar energy storage materials and modeling methods
title_full_unstemmed A review on thermochemical seasonal solar energy storage materials and modeling methods
title_short A review on thermochemical seasonal solar energy storage materials and modeling methods
title_sort review on thermochemical seasonal solar energy storage materials and modeling methods
topic Isotherms
Thermal energy storage
Energy density
Thermochemical materials
Adsorption
url https://doi.org/10.1007/s44189-023-00044-6
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