Performance enhancement of cold thermal energy storage system using nanofluid phase change materials: A review

Cold thermal energy storage (CTES) plays a vital role in many industrial applications such as central air-conditioning in the large buildings, high powered electronic cooling applications, waste heat recovery, food processing, and restoring the electrical power imbalance between daytime need and nig...

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Main Authors: Che Sidik, Nor Azwadi, Kean, Tung Hao, Chow, Hoong Kee, Rajaandra, Aravinthan, Rahman, Shiblur, Kaur, Jesbains
Format: Article
Published: Elsevier Ltd 2018
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Online Access:http://eprints.utm.my/id/eprint/85187/
http://dx.doi.org/10.1016/j.icheatmasstransfer.2018.03.024
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spelling my.utm.851872020-03-04T01:30:56Z http://eprints.utm.my/id/eprint/85187/ Performance enhancement of cold thermal energy storage system using nanofluid phase change materials: A review Che Sidik, Nor Azwadi Kean, Tung Hao Chow, Hoong Kee Rajaandra, Aravinthan Rahman, Shiblur Kaur, Jesbains T Technology (General) Cold thermal energy storage (CTES) plays a vital role in many industrial applications such as central air-conditioning in the large buildings, high powered electronic cooling applications, waste heat recovery, food processing, and restoring the electrical power imbalance between daytime need and night-time abundance. In addition, CTES system incorporating phase change materials (PCM) is proved as a viable option for achieving high energy efficiency by many systems. Due to the significance of this issue, many studies have been conducted on the applications of PCM in CTES system. The main aim of this article is to provide a comprehensive review, which summarizes recent research progress on PCM-CTES and an overview of numerical and experimental studies on the heat transfer performance of different base fluid of PCMs. This article also discusses several factors affecting the thermal conductivity of PCMs, such as nanoparticle enhanced PCMs, shape of encapsulated PCM materials, solid volume fraction and particle size. Observation and findings from past studies are discussed in detail. Recommendations based on research results, advantages and drawbacks of PCM-CTES are made for future research directions. Elsevier Ltd 2018-05 Article PeerReviewed Che Sidik, Nor Azwadi and Kean, Tung Hao and Chow, Hoong Kee and Rajaandra, Aravinthan and Rahman, Shiblur and Kaur, Jesbains (2018) Performance enhancement of cold thermal energy storage system using nanofluid phase change materials: A review. International Communications in Heat and Mass Transfer, 94 . pp. 85-95. ISSN 0735-1933 http://dx.doi.org/10.1016/j.icheatmasstransfer.2018.03.024
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic T Technology (General)
spellingShingle T Technology (General)
Che Sidik, Nor Azwadi
Kean, Tung Hao
Chow, Hoong Kee
Rajaandra, Aravinthan
Rahman, Shiblur
Kaur, Jesbains
Performance enhancement of cold thermal energy storage system using nanofluid phase change materials: A review
description Cold thermal energy storage (CTES) plays a vital role in many industrial applications such as central air-conditioning in the large buildings, high powered electronic cooling applications, waste heat recovery, food processing, and restoring the electrical power imbalance between daytime need and night-time abundance. In addition, CTES system incorporating phase change materials (PCM) is proved as a viable option for achieving high energy efficiency by many systems. Due to the significance of this issue, many studies have been conducted on the applications of PCM in CTES system. The main aim of this article is to provide a comprehensive review, which summarizes recent research progress on PCM-CTES and an overview of numerical and experimental studies on the heat transfer performance of different base fluid of PCMs. This article also discusses several factors affecting the thermal conductivity of PCMs, such as nanoparticle enhanced PCMs, shape of encapsulated PCM materials, solid volume fraction and particle size. Observation and findings from past studies are discussed in detail. Recommendations based on research results, advantages and drawbacks of PCM-CTES are made for future research directions.
format Article
author Che Sidik, Nor Azwadi
Kean, Tung Hao
Chow, Hoong Kee
Rajaandra, Aravinthan
Rahman, Shiblur
Kaur, Jesbains
author_facet Che Sidik, Nor Azwadi
Kean, Tung Hao
Chow, Hoong Kee
Rajaandra, Aravinthan
Rahman, Shiblur
Kaur, Jesbains
author_sort Che Sidik, Nor Azwadi
title Performance enhancement of cold thermal energy storage system using nanofluid phase change materials: A review
title_short Performance enhancement of cold thermal energy storage system using nanofluid phase change materials: A review
title_full Performance enhancement of cold thermal energy storage system using nanofluid phase change materials: A review
title_fullStr Performance enhancement of cold thermal energy storage system using nanofluid phase change materials: A review
title_full_unstemmed Performance enhancement of cold thermal energy storage system using nanofluid phase change materials: A review
title_sort performance enhancement of cold thermal energy storage system using nanofluid phase change materials: a review
publisher Elsevier Ltd
publishDate 2018
url http://eprints.utm.my/id/eprint/85187/
http://dx.doi.org/10.1016/j.icheatmasstransfer.2018.03.024
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score 13.211869