Tunable piezoelectric generator coupled with Shape Memory Alloy (SMA) heat engine as thermal energy harvester

With the ever-growing energy demand and environmental concerns, research on alternative energy is vital for sustainability. Thermal energy harvesting using shape memory alloy (SMA) heat engine is one of the possible methods for power generation from low to high-grade thermal energy but suffers from...

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Main Authors: Hassan, Hamdan, Wahid, Azni Nabela, Abdul Muthalif, Asan Gani
Format: Conference or Workshop Item
Language:English
Published: IET 2022
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Online Access:http://irep.iium.edu.my/101971/1/101971_Tunable%20piezoelectric%20generator%20coupled%20with%20shape%20memory%20alloy.pdf
http://irep.iium.edu.my/101971/
https://ieeexplore.ieee.org/document/9964166
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Institution: Universiti Islam Antarabangsa Malaysia
Language: English
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spelling my.iium.irep.1019712022-12-19T08:26:44Z http://irep.iium.edu.my/101971/ Tunable piezoelectric generator coupled with Shape Memory Alloy (SMA) heat engine as thermal energy harvester Hassan, Hamdan Wahid, Azni Nabela Abdul Muthalif, Asan Gani TJ Mechanical engineering and machinery With the ever-growing energy demand and environmental concerns, research on alternative energy is vital for sustainability. Thermal energy harvesting using shape memory alloy (SMA) heat engine is one of the possible methods for power generation from low to high-grade thermal energy but suffers from low performance; one of the reasons is due to the varying angular velocity input. In this research, a tunable generator coupled with a pulley-type SMA heat engine is designed to produce output voltage at different resonances, matching with the varying frequency input from the heat engine. The generator consists of piezoelectric cantilever beams arranged around a pulley with moving supporting clamps to manipulate their natural frequencies. The generators are mechanically excited by repulsive forces of magnets attached at both rotating SMA heat engine and generator pulleys. Results show that the peak output voltage produced by the tuned piezoelectric generator is higher as compared to untuned where the percentage of improvement is 230.62%, 44.75%, 11.59%, 76% and 96.83%, at 40mm, 45mm, 50mm, 55mm and 60mm effective length, respectively. Results from this study can help to design an SMA heat engine coupled with piezoelectric generators where maximum voltage can be generated consistently for a more efficient thermal energy harvesting. IET 2022-11-28 Conference or Workshop Item PeerReviewed application/pdf en http://irep.iium.edu.my/101971/1/101971_Tunable%20piezoelectric%20generator%20coupled%20with%20shape%20memory%20alloy.pdf Hassan, Hamdan and Wahid, Azni Nabela and Abdul Muthalif, Asan Gani (2022) Tunable piezoelectric generator coupled with Shape Memory Alloy (SMA) heat engine as thermal energy harvester. In: 8th International Conference on Mechatronics Engineering (ICOM 2022), 9th - 10th August 2022, Online Conference, Kuala Lumpur, Malaysia. https://ieeexplore.ieee.org/document/9964166 10.1049/icp.2022.2272
institution Universiti Islam Antarabangsa Malaysia
building IIUM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider International Islamic University Malaysia
content_source IIUM Repository (IREP)
url_provider http://irep.iium.edu.my/
language English
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Hassan, Hamdan
Wahid, Azni Nabela
Abdul Muthalif, Asan Gani
Tunable piezoelectric generator coupled with Shape Memory Alloy (SMA) heat engine as thermal energy harvester
description With the ever-growing energy demand and environmental concerns, research on alternative energy is vital for sustainability. Thermal energy harvesting using shape memory alloy (SMA) heat engine is one of the possible methods for power generation from low to high-grade thermal energy but suffers from low performance; one of the reasons is due to the varying angular velocity input. In this research, a tunable generator coupled with a pulley-type SMA heat engine is designed to produce output voltage at different resonances, matching with the varying frequency input from the heat engine. The generator consists of piezoelectric cantilever beams arranged around a pulley with moving supporting clamps to manipulate their natural frequencies. The generators are mechanically excited by repulsive forces of magnets attached at both rotating SMA heat engine and generator pulleys. Results show that the peak output voltage produced by the tuned piezoelectric generator is higher as compared to untuned where the percentage of improvement is 230.62%, 44.75%, 11.59%, 76% and 96.83%, at 40mm, 45mm, 50mm, 55mm and 60mm effective length, respectively. Results from this study can help to design an SMA heat engine coupled with piezoelectric generators where maximum voltage can be generated consistently for a more efficient thermal energy harvesting.
format Conference or Workshop Item
author Hassan, Hamdan
Wahid, Azni Nabela
Abdul Muthalif, Asan Gani
author_facet Hassan, Hamdan
Wahid, Azni Nabela
Abdul Muthalif, Asan Gani
author_sort Hassan, Hamdan
title Tunable piezoelectric generator coupled with Shape Memory Alloy (SMA) heat engine as thermal energy harvester
title_short Tunable piezoelectric generator coupled with Shape Memory Alloy (SMA) heat engine as thermal energy harvester
title_full Tunable piezoelectric generator coupled with Shape Memory Alloy (SMA) heat engine as thermal energy harvester
title_fullStr Tunable piezoelectric generator coupled with Shape Memory Alloy (SMA) heat engine as thermal energy harvester
title_full_unstemmed Tunable piezoelectric generator coupled with Shape Memory Alloy (SMA) heat engine as thermal energy harvester
title_sort tunable piezoelectric generator coupled with shape memory alloy (sma) heat engine as thermal energy harvester
publisher IET
publishDate 2022
url http://irep.iium.edu.my/101971/1/101971_Tunable%20piezoelectric%20generator%20coupled%20with%20shape%20memory%20alloy.pdf
http://irep.iium.edu.my/101971/
https://ieeexplore.ieee.org/document/9964166
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