Thermoelectric-Based Low-Cost Water Chiller via Peltier-Plates
This study aims to design and build a water-chilling device for strawberry irrigation in low-land areas in Malaysia. Strawberries possess better growth in a chilled environment. On that note, a chilling thermoelectric device known as the Peltier plate has been used in this project, which follows an...
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my.uniten.dspace-270742023-05-29T17:39:18Z Thermoelectric-Based Low-Cost Water Chiller via Peltier-Plates Manap A. Mahalingam S. Rabeya R. Afandi N.M. Nkaita S.B. Om N.I. 57200642155 55434075500 57207761973 57189231851 57962918900 42162023000 This study aims to design and build a water-chilling device for strawberry irrigation in low-land areas in Malaysia. Strawberries possess better growth in a chilled environment. On that note, a chilling thermoelectric device known as the Peltier plate has been used in this project, which follows an open-cycle system. This process is cost-effective and more convenient than the other methods used for strawberry plantation, such as providing an air-conditioner, which is costly, and using a sprinkler, which may rot the strawberries in wet conditions. Therefore, we propose a low-cost chilling device to chill the water with low-temperature water to be applied in strawberry plants. The plant treated with the water chiller showed better growth with 12 cm of height. The thermoelectric effect has been adopted in this study as the source of chilling since it reduces the temperature on one side and increases it on the other side. The heat is to be discharged using two fans to increase the difference in temperature between the two sides of the thermoelectric device. It involved the Peltier effect, which generates the voltage from the power source to heat/temperature differentials. The obtained result revealed a temperature difference of 5.7 �C between the water-in (27 �C) and water-out (21.3 �C), considered the optimum temperature for strawberries to survive well. � 2022, Journal of Advanced Research in Fluid Mechanics and Thermal Sciences. All Rights Reserved. Final 2023-05-29T09:39:18Z 2023-05-29T09:39:18Z 2022 Article 10.37934/arfmts.99.1.123133 2-s2.0-85141768715 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85141768715&doi=10.37934%2farfmts.99.1.123133&partnerID=40&md5=d0f31731836d8727f963fc88dc581bd1 https://irepository.uniten.edu.my/handle/123456789/27074 99 1 123 133 All Open Access, Hybrid Gold Penerbit Akademia Baru Scopus |
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This study aims to design and build a water-chilling device for strawberry irrigation in low-land areas in Malaysia. Strawberries possess better growth in a chilled environment. On that note, a chilling thermoelectric device known as the Peltier plate has been used in this project, which follows an open-cycle system. This process is cost-effective and more convenient than the other methods used for strawberry plantation, such as providing an air-conditioner, which is costly, and using a sprinkler, which may rot the strawberries in wet conditions. Therefore, we propose a low-cost chilling device to chill the water with low-temperature water to be applied in strawberry plants. The plant treated with the water chiller showed better growth with 12 cm of height. The thermoelectric effect has been adopted in this study as the source of chilling since it reduces the temperature on one side and increases it on the other side. The heat is to be discharged using two fans to increase the difference in temperature between the two sides of the thermoelectric device. It involved the Peltier effect, which generates the voltage from the power source to heat/temperature differentials. The obtained result revealed a temperature difference of 5.7 �C between the water-in (27 �C) and water-out (21.3 �C), considered the optimum temperature for strawberries to survive well. � 2022, Journal of Advanced Research in Fluid Mechanics and Thermal Sciences. All Rights Reserved. |
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57200642155 |
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57200642155 Manap A. Mahalingam S. Rabeya R. Afandi N.M. Nkaita S.B. Om N.I. |
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Manap A. Mahalingam S. Rabeya R. Afandi N.M. Nkaita S.B. Om N.I. |
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Manap A. Mahalingam S. Rabeya R. Afandi N.M. Nkaita S.B. Om N.I. Thermoelectric-Based Low-Cost Water Chiller via Peltier-Plates |
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Manap A. |
title |
Thermoelectric-Based Low-Cost Water Chiller via Peltier-Plates |
title_short |
Thermoelectric-Based Low-Cost Water Chiller via Peltier-Plates |
title_full |
Thermoelectric-Based Low-Cost Water Chiller via Peltier-Plates |
title_fullStr |
Thermoelectric-Based Low-Cost Water Chiller via Peltier-Plates |
title_full_unstemmed |
Thermoelectric-Based Low-Cost Water Chiller via Peltier-Plates |
title_sort |
thermoelectric-based low-cost water chiller via peltier-plates |
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Penerbit Akademia Baru |
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2023 |
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