Investigation of Potential Waste Insulating Material Properties with Different Heat Transfer Fluid for Thermal Storage Application
Though thermal energy storage (TES) is well developed hugely in most of the solar power generation plant, it is less growth in implementing a modular type of TES in a solar plant, e.g. Solar dish/Stirling engine application. The main issue in designing the TES system is its thermal capacity of stora...
Autores principales: | , , , , |
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Formato: | Conference or Workshop Item |
Lenguaje: | English |
Publicado: |
2013
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Acceso en línea: | http://umpir.ump.edu.my/id/eprint/3972/1/P057.pdf |
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author | Tanti Zanariah, Shamshir Ali R. A., Bakar Gan, Leong Ming Billy, Anak Sup Mohd Farid, Zainudin |
author_facet | Tanti Zanariah, Shamshir Ali R. A., Bakar Gan, Leong Ming Billy, Anak Sup Mohd Farid, Zainudin |
author_sort | Tanti Zanariah, Shamshir Ali |
collection | UMP |
description | Though thermal energy storage (TES) is well developed hugely in most of the solar power generation plant, it is less growth in implementing a modular type of TES in a solar plant, e.g. Solar dish/Stirling engine application. The main issue in designing the TES system is its thermal capacity of storage materials, e.g. insulator. This study is focusing on the potential waste material as an insulator for thermal energy storage applications. The insulator usage is to reduce the heat transfer between two medium and the capability is measured by its resistance to heat flow. It is needed to obtain optimal material to energy conversion at the same time reduce the waste generation. Therefore, a small-scale experimental testing of natural cooling process of an insulated tank within a confined room without any forced cooling system, e.g. fan. The testing is repeated by changing the insulator using the potential waste material from natural and industrial waste and also by changing the heat transfer fluid (HTF). The analysis is performed on the relationship between heat loss and the reserved period by the insulator. The results indicate the percentage of period of the insulated tank withstands the heat compared to non-insulated tank, e.g. foam reserved the period of 333% more than non-insulated tank to withstand the heat transfer of cooking oil to the surrounding. The paper finally justifies the most potential waste material as an insulator in different heat transfer fluid. |
first_indexed | 2024-03-06T11:41:52Z |
format | Conference or Workshop Item |
id | UMPir3972 |
institution | Universiti Malaysia Pahang |
language | English |
last_indexed | 2024-03-06T11:41:52Z |
publishDate | 2013 |
record_format | dspace |
spelling | UMPir39722018-01-16T07:23:58Z http://umpir.ump.edu.my/id/eprint/3972/ Investigation of Potential Waste Insulating Material Properties with Different Heat Transfer Fluid for Thermal Storage Application Tanti Zanariah, Shamshir Ali R. A., Bakar Gan, Leong Ming Billy, Anak Sup Mohd Farid, Zainudin TJ Mechanical engineering and machinery Though thermal energy storage (TES) is well developed hugely in most of the solar power generation plant, it is less growth in implementing a modular type of TES in a solar plant, e.g. Solar dish/Stirling engine application. The main issue in designing the TES system is its thermal capacity of storage materials, e.g. insulator. This study is focusing on the potential waste material as an insulator for thermal energy storage applications. The insulator usage is to reduce the heat transfer between two medium and the capability is measured by its resistance to heat flow. It is needed to obtain optimal material to energy conversion at the same time reduce the waste generation. Therefore, a small-scale experimental testing of natural cooling process of an insulated tank within a confined room without any forced cooling system, e.g. fan. The testing is repeated by changing the insulator using the potential waste material from natural and industrial waste and also by changing the heat transfer fluid (HTF). The analysis is performed on the relationship between heat loss and the reserved period by the insulator. The results indicate the percentage of period of the insulated tank withstands the heat compared to non-insulated tank, e.g. foam reserved the period of 333% more than non-insulated tank to withstand the heat transfer of cooking oil to the surrounding. The paper finally justifies the most potential waste material as an insulator in different heat transfer fluid. 2013-07-01 Conference or Workshop Item PeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/3972/1/P057.pdf Tanti Zanariah, Shamshir Ali and R. A., Bakar and Gan, Leong Ming and Billy, Anak Sup and Mohd Farid, Zainudin (2013) Investigation of Potential Waste Insulating Material Properties with Different Heat Transfer Fluid for Thermal Storage Application. In: International Conference on Mechanical Engineering Research (ICMER2013) , 1-3 July 2013 , Bukit Gambang Resort City, Kuantan, Pahang, Malaysia. pp. 1-9.. (Unpublished) (Unpublished) |
spellingShingle | TJ Mechanical engineering and machinery Tanti Zanariah, Shamshir Ali R. A., Bakar Gan, Leong Ming Billy, Anak Sup Mohd Farid, Zainudin Investigation of Potential Waste Insulating Material Properties with Different Heat Transfer Fluid for Thermal Storage Application |
title | Investigation of Potential Waste Insulating Material Properties with Different Heat Transfer Fluid for Thermal Storage Application
|
title_full | Investigation of Potential Waste Insulating Material Properties with Different Heat Transfer Fluid for Thermal Storage Application
|
title_fullStr | Investigation of Potential Waste Insulating Material Properties with Different Heat Transfer Fluid for Thermal Storage Application
|
title_full_unstemmed | Investigation of Potential Waste Insulating Material Properties with Different Heat Transfer Fluid for Thermal Storage Application
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title_short | Investigation of Potential Waste Insulating Material Properties with Different Heat Transfer Fluid for Thermal Storage Application
|
title_sort | investigation of potential waste insulating material properties with different heat transfer fluid for thermal storage application |
topic | TJ Mechanical engineering and machinery |
url | http://umpir.ump.edu.my/id/eprint/3972/1/P057.pdf |
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