Heat to electrical energy conversion using thermoelectric generation (TEG) HT-12710 TEG / Abdul Irfan Azmi

Heat to electricity energy conversion is one of an alternative green technology used to benefit the waste heat energy dissipated to surrounding air. Thermoelectric generator (TEG) is one of the solutions to fully utilize the waste heat from the vehicle, power plant or any type of source that emit he...

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Main Author: Azmi, Abdul Irfan
Format: Thesis
Language:English
Published: 2013
Online Access:https://ir.uitm.edu.my/id/eprint/84882/1/84882.pdf
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spelling my-uitm-ir.848822024-01-16T08:55:11Z Heat to electrical energy conversion using thermoelectric generation (TEG) HT-12710 TEG / Abdul Irfan Azmi 2013 Azmi, Abdul Irfan Heat to electricity energy conversion is one of an alternative green technology used to benefit the waste heat energy dissipated to surrounding air. Thermoelectric generator (TEG) is one of the solutions to fully utilize the waste heat from the vehicle, power plant or any type of source that emit heat. TEG has a capability to convert heat to electricity energy without need a moving part or working fluid. Electricity energy generates when there is temperature different between two sides of TEG on Hot side and Cold side. The voltage generated is 2.4.80V with temperature on Hot side is 145.020°C and Cold side is 94.730°C. Using a sensory system monitoring, the actual performance of the TEG can be recorded live and continuously. In this research, the test result for heat to electricity conversion efficiency is 4.395% near to the 5% of maximum efficiency of HT-12710 TEG capability. Efficiency of 4.395% shows the efficiency of the whole system. 2013 Thesis https://ir.uitm.edu.my/id/eprint/84882/ https://ir.uitm.edu.my/id/eprint/84882/1/84882.pdf text en public degree Universiti Teknologi MARA (UiTM) Faculty of Electrical Engineering Wan Abdul Munim, Wan Noraishah
institution Universiti Teknologi MARA
collection UiTM Institutional Repository
language English
advisor Wan Abdul Munim, Wan Noraishah
description Heat to electricity energy conversion is one of an alternative green technology used to benefit the waste heat energy dissipated to surrounding air. Thermoelectric generator (TEG) is one of the solutions to fully utilize the waste heat from the vehicle, power plant or any type of source that emit heat. TEG has a capability to convert heat to electricity energy without need a moving part or working fluid. Electricity energy generates when there is temperature different between two sides of TEG on Hot side and Cold side. The voltage generated is 2.4.80V with temperature on Hot side is 145.020°C and Cold side is 94.730°C. Using a sensory system monitoring, the actual performance of the TEG can be recorded live and continuously. In this research, the test result for heat to electricity conversion efficiency is 4.395% near to the 5% of maximum efficiency of HT-12710 TEG capability. Efficiency of 4.395% shows the efficiency of the whole system.
format Thesis
qualification_level Bachelor degree
author Azmi, Abdul Irfan
spellingShingle Azmi, Abdul Irfan
Heat to electrical energy conversion using thermoelectric generation (TEG) HT-12710 TEG / Abdul Irfan Azmi
author_facet Azmi, Abdul Irfan
author_sort Azmi, Abdul Irfan
title Heat to electrical energy conversion using thermoelectric generation (TEG) HT-12710 TEG / Abdul Irfan Azmi
title_short Heat to electrical energy conversion using thermoelectric generation (TEG) HT-12710 TEG / Abdul Irfan Azmi
title_full Heat to electrical energy conversion using thermoelectric generation (TEG) HT-12710 TEG / Abdul Irfan Azmi
title_fullStr Heat to electrical energy conversion using thermoelectric generation (TEG) HT-12710 TEG / Abdul Irfan Azmi
title_full_unstemmed Heat to electrical energy conversion using thermoelectric generation (TEG) HT-12710 TEG / Abdul Irfan Azmi
title_sort heat to electrical energy conversion using thermoelectric generation (teg) ht-12710 teg / abdul irfan azmi
granting_institution Universiti Teknologi MARA (UiTM)
granting_department Faculty of Electrical Engineering
publishDate 2013
url https://ir.uitm.edu.my/id/eprint/84882/1/84882.pdf
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