Study of the Performance of Paraffin Wax as a Phase Change Material in Packed Bed Thermal Energy Storage System

The present work deals with an experimental investigation of charging and discharging processes in thermal storage system using a phase change material PCM. Paraffin wax was used as the PCM which is formed in spherical capsules and packed in a cylindrical packed column which acted as an energy stor...

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Main Authors: Lubna A. Naeem, Tahseen A. Al-Hattab, Majid I. Abdulwahab
Format: Article
Language:English
Published: University of Baghdad/College of Engineering 2018-03-01
Series:Iraqi Journal of Chemical and Petroleum Engineering
Subjects:
Online Access:http://ijcpe.uobaghdad.edu.iq/index.php/ijcpe/article/view/230
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spelling doaj-02aae881c37e46f883da86a554dc71262020-11-25T02:53:54ZengUniversity of Baghdad/College of EngineeringIraqi Journal of Chemical and Petroleum Engineering1997-48842618-07072018-03-01174Study of the Performance of Paraffin Wax as a Phase Change Material in Packed Bed Thermal Energy Storage SystemLubna A. NaeemTahseen A. Al-HattabMajid I. Abdulwahab The present work deals with an experimental investigation of charging and discharging processes in thermal storage system using a phase change material PCM. Paraffin wax was used as the PCM which is formed in spherical capsules and packed in a cylindrical packed column which acted as an energy storage system. Air was used as the heat transfer fluid HTF in thermal storage unit. The effect of flow rate and inlet temperature of HTF on the time of charging and discharging process were studied. The results showed that the faster storage of thermal energy can be made by high flow rate of heat transfer fluid HTF and high inlet temperature of heat transfer fluid. It was found that at 65°C HTF inlet temperature, the melting and solidification processes accelerated by 27.9% and 57.14% respectively, when the flow rate was increased from 9 to 24 L/s. Also, when the HTF inlet temperature changed from 65°C to 80°C, the time needed to complete melting process decreased by 38.8%. http://ijcpe.uobaghdad.edu.iq/index.php/ijcpe/article/view/230Phase Change Material PCM, Paraffin wax, Heat transfer fluid HTF, Thermal energy storage TES.
collection DOAJ
language English
format Article
sources DOAJ
author Lubna A. Naeem
Tahseen A. Al-Hattab
Majid I. Abdulwahab
spellingShingle Lubna A. Naeem
Tahseen A. Al-Hattab
Majid I. Abdulwahab
Study of the Performance of Paraffin Wax as a Phase Change Material in Packed Bed Thermal Energy Storage System
Iraqi Journal of Chemical and Petroleum Engineering
Phase Change Material PCM, Paraffin wax, Heat transfer fluid HTF, Thermal energy storage TES.
author_facet Lubna A. Naeem
Tahseen A. Al-Hattab
Majid I. Abdulwahab
author_sort Lubna A. Naeem
title Study of the Performance of Paraffin Wax as a Phase Change Material in Packed Bed Thermal Energy Storage System
title_short Study of the Performance of Paraffin Wax as a Phase Change Material in Packed Bed Thermal Energy Storage System
title_full Study of the Performance of Paraffin Wax as a Phase Change Material in Packed Bed Thermal Energy Storage System
title_fullStr Study of the Performance of Paraffin Wax as a Phase Change Material in Packed Bed Thermal Energy Storage System
title_full_unstemmed Study of the Performance of Paraffin Wax as a Phase Change Material in Packed Bed Thermal Energy Storage System
title_sort study of the performance of paraffin wax as a phase change material in packed bed thermal energy storage system
publisher University of Baghdad/College of Engineering
series Iraqi Journal of Chemical and Petroleum Engineering
issn 1997-4884
2618-0707
publishDate 2018-03-01
description The present work deals with an experimental investigation of charging and discharging processes in thermal storage system using a phase change material PCM. Paraffin wax was used as the PCM which is formed in spherical capsules and packed in a cylindrical packed column which acted as an energy storage system. Air was used as the heat transfer fluid HTF in thermal storage unit. The effect of flow rate and inlet temperature of HTF on the time of charging and discharging process were studied. The results showed that the faster storage of thermal energy can be made by high flow rate of heat transfer fluid HTF and high inlet temperature of heat transfer fluid. It was found that at 65°C HTF inlet temperature, the melting and solidification processes accelerated by 27.9% and 57.14% respectively, when the flow rate was increased from 9 to 24 L/s. Also, when the HTF inlet temperature changed from 65°C to 80°C, the time needed to complete melting process decreased by 38.8%.
topic Phase Change Material PCM, Paraffin wax, Heat transfer fluid HTF, Thermal energy storage TES.
url http://ijcpe.uobaghdad.edu.iq/index.php/ijcpe/article/view/230
work_keys_str_mv AT lubnaanaeem studyoftheperformanceofparaffinwaxasaphasechangematerialinpackedbedthermalenergystoragesystem
AT tahseenaalhattab studyoftheperformanceofparaffinwaxasaphasechangematerialinpackedbedthermalenergystoragesystem
AT majidiabdulwahab studyoftheperformanceofparaffinwaxasaphasechangematerialinpackedbedthermalenergystoragesystem
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