Thermal behavior of asphalt pavement as an active solar collector under Malaysia climate condition using rubber tube
Malaysia has potential to generate alternative renewable solar energy. Rubber tube was embedded in asphalt pavement at a depth of 75 mm. Thermal behavior of solar heat was studied at different location in asphalt pavement. Asphalt pavement top surface which is exposed to the direct sunlight, tempera...
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my.uniten.dspace-242022023-05-29T14:56:52Z Thermal behavior of asphalt pavement as an active solar collector under Malaysia climate condition using rubber tube Beddu S. Itam Z.B. Ahmad M. Alanimi F.B.I. Zainoodin M. 55812080500 55102723400 57200824716 57200820020 57202388764 Malaysia has potential to generate alternative renewable solar energy. Rubber tube was embedded in asphalt pavement at a depth of 75 mm. Thermal behavior of solar heat was studied at different location in asphalt pavement. Asphalt pavement top surface which is exposed to the direct sunlight, temperature above the rubber tube, temperature of liquid (water) filled in rubber tube and temperature below the rubber tube were the locations chosen to observe the thermal behavior and heat transformation from top to bottom. The observation was carried out for 3 days in asphalt pavement and using thermodynamic first law to find the heat efficiency. Study concludes that the maximum surface temperature reach to 59.5�C and water inside rubber tube temperature reach to 54.7�C. In the result minimum 2.4% and maximum heat efficiency 22.7% produced by using rubber tube the case might be change using other metals. � Medwell Journals, 2018. Final 2023-05-29T06:56:52Z 2023-05-29T06:56:52Z 2018 Article 10.3923/jeasci.2018.1690.1695 2-s2.0-85048192008 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85048192008&doi=10.3923%2fjeasci.2018.1690.1695&partnerID=40&md5=54094e28efe7187dafec64b5c9f88f26 https://irepository.uniten.edu.my/handle/123456789/24202 13 7 1690 1695 Medwell Journals Scopus |
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Malaysia has potential to generate alternative renewable solar energy. Rubber tube was embedded in asphalt pavement at a depth of 75 mm. Thermal behavior of solar heat was studied at different location in asphalt pavement. Asphalt pavement top surface which is exposed to the direct sunlight, temperature above the rubber tube, temperature of liquid (water) filled in rubber tube and temperature below the rubber tube were the locations chosen to observe the thermal behavior and heat transformation from top to bottom. The observation was carried out for 3 days in asphalt pavement and using thermodynamic first law to find the heat efficiency. Study concludes that the maximum surface temperature reach to 59.5�C and water inside rubber tube temperature reach to 54.7�C. In the result minimum 2.4% and maximum heat efficiency 22.7% produced by using rubber tube the case might be change using other metals. � Medwell Journals, 2018. |
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55812080500 |
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55812080500 Beddu S. Itam Z.B. Ahmad M. Alanimi F.B.I. Zainoodin M. |
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Beddu S. Itam Z.B. Ahmad M. Alanimi F.B.I. Zainoodin M. |
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Beddu S. Itam Z.B. Ahmad M. Alanimi F.B.I. Zainoodin M. Thermal behavior of asphalt pavement as an active solar collector under Malaysia climate condition using rubber tube |
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Beddu S. |
title |
Thermal behavior of asphalt pavement as an active solar collector under Malaysia climate condition using rubber tube |
title_short |
Thermal behavior of asphalt pavement as an active solar collector under Malaysia climate condition using rubber tube |
title_full |
Thermal behavior of asphalt pavement as an active solar collector under Malaysia climate condition using rubber tube |
title_fullStr |
Thermal behavior of asphalt pavement as an active solar collector under Malaysia climate condition using rubber tube |
title_full_unstemmed |
Thermal behavior of asphalt pavement as an active solar collector under Malaysia climate condition using rubber tube |
title_sort |
thermal behavior of asphalt pavement as an active solar collector under malaysia climate condition using rubber tube |
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Medwell Journals |
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2023 |
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1806428076071976960 |
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