Heat conversion design using peltier thermoelectrics with greenhouse effect heating system and mobile nitrogen cooler following the sun position

A solar thermal-to-electricity conversion system that optimizes the temperature difference between hot and cold sources has been designed using Peltier thermoelectric. The system consists of three main components, namely the heating system, cooler, and drive to position the prototype following the d...

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Main Authors: Septianissa Azzahra, Septianissa Azzahra, Yahya, Azli, Eko Supriyanto, Eko Supriyanto, Samsurizal, Samsurizal, Arifin, Zainal, Yana Agustianingsih, Yana Agustianingsih
Format: Conference or Workshop Item
Published: 2023
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Online Access:http://eprints.utm.my/108379/
http://dx.doi.org/10.1109/IConNECT56593.2023.10326734
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Institution: Universiti Teknologi Malaysia
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spelling my.utm.1083792024-10-28T10:02:43Z http://eprints.utm.my/108379/ Heat conversion design using peltier thermoelectrics with greenhouse effect heating system and mobile nitrogen cooler following the sun position Septianissa Azzahra, Septianissa Azzahra Yahya, Azli Eko Supriyanto, Eko Supriyanto Samsurizal, Samsurizal Arifin, Zainal Yana Agustianingsih, Yana Agustianingsih TK Electrical engineering. Electronics Nuclear engineering A solar thermal-to-electricity conversion system that optimizes the temperature difference between hot and cold sources has been designed using Peltier thermoelectric. The system consists of three main components, namely the heating system, cooler, and drive to position the prototype following the direction of motion of the sun. With a greenhouse effect concept, the heating system at the top keeps the temperature in the acrylic room warm. The hot side of the Peltier is placed with an aluminum plate and andesite stone as heat conductors and storage. The cooling system uses a metal-wrapped fluid as a source of cold temperature equipped with temperature-reducing aluminum foil and nitrogen gas to keep the fluid at a low temperature. Finally, the drive system uses a hydraulic to move the design module following the direction of motion of the sun, whose light will be focused by a convex lens to concentrate. The Peltier is assembled in series and step-up to increase the output voltage to produce maximum results. This prototype design can hopefully contribute to the development of renewable energy. 2023-11-27 Conference or Workshop Item PeerReviewed Septianissa Azzahra, Septianissa Azzahra and Yahya, Azli and Eko Supriyanto, Eko Supriyanto and Samsurizal, Samsurizal and Arifin, Zainal and Yana Agustianingsih, Yana Agustianingsih (2023) Heat conversion design using peltier thermoelectrics with greenhouse effect heating system and mobile nitrogen cooler following the sun position. In: International Conference on Networking, Electrical Engineering, Computer Science, and Technology, IConNECT 2023, 25 August 2023 - 26 August 2023, Hybrid, Lampung, Indonesia. http://dx.doi.org/10.1109/IConNECT56593.2023.10326734
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 TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Septianissa Azzahra, Septianissa Azzahra
Yahya, Azli
Eko Supriyanto, Eko Supriyanto
Samsurizal, Samsurizal
Arifin, Zainal
Yana Agustianingsih, Yana Agustianingsih
Heat conversion design using peltier thermoelectrics with greenhouse effect heating system and mobile nitrogen cooler following the sun position
description A solar thermal-to-electricity conversion system that optimizes the temperature difference between hot and cold sources has been designed using Peltier thermoelectric. The system consists of three main components, namely the heating system, cooler, and drive to position the prototype following the direction of motion of the sun. With a greenhouse effect concept, the heating system at the top keeps the temperature in the acrylic room warm. The hot side of the Peltier is placed with an aluminum plate and andesite stone as heat conductors and storage. The cooling system uses a metal-wrapped fluid as a source of cold temperature equipped with temperature-reducing aluminum foil and nitrogen gas to keep the fluid at a low temperature. Finally, the drive system uses a hydraulic to move the design module following the direction of motion of the sun, whose light will be focused by a convex lens to concentrate. The Peltier is assembled in series and step-up to increase the output voltage to produce maximum results. This prototype design can hopefully contribute to the development of renewable energy.
format Conference or Workshop Item
author Septianissa Azzahra, Septianissa Azzahra
Yahya, Azli
Eko Supriyanto, Eko Supriyanto
Samsurizal, Samsurizal
Arifin, Zainal
Yana Agustianingsih, Yana Agustianingsih
author_facet Septianissa Azzahra, Septianissa Azzahra
Yahya, Azli
Eko Supriyanto, Eko Supriyanto
Samsurizal, Samsurizal
Arifin, Zainal
Yana Agustianingsih, Yana Agustianingsih
author_sort Septianissa Azzahra, Septianissa Azzahra
title Heat conversion design using peltier thermoelectrics with greenhouse effect heating system and mobile nitrogen cooler following the sun position
title_short Heat conversion design using peltier thermoelectrics with greenhouse effect heating system and mobile nitrogen cooler following the sun position
title_full Heat conversion design using peltier thermoelectrics with greenhouse effect heating system and mobile nitrogen cooler following the sun position
title_fullStr Heat conversion design using peltier thermoelectrics with greenhouse effect heating system and mobile nitrogen cooler following the sun position
title_full_unstemmed Heat conversion design using peltier thermoelectrics with greenhouse effect heating system and mobile nitrogen cooler following the sun position
title_sort heat conversion design using peltier thermoelectrics with greenhouse effect heating system and mobile nitrogen cooler following the sun position
publishDate 2023
url http://eprints.utm.my/108379/
http://dx.doi.org/10.1109/IConNECT56593.2023.10326734
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