Performance of Polycrystalline Photovoltaic and Thermal Collector (PVT) on Serpentine-Parallel Absor
This paper presents the performance of an unglazed polycrystalline photovoltaic-thermal PVT on 0.045 kg/s mass flow rate. PVT combine photovoltaic modules and solar thermal collectors, forming a single device that receive solar radiation and produces heat and electricity simultaneously. The coll...
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Format: | Article |
Language: | English |
Published: |
Hasanuddin University
2015-10-01
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Series: | International Journal on Smart Material and Mechatronics |
Subjects: | |
Online Access: | http://siaka.unhas.ac.id/ijsmm/library/index.php?kategori=vol2no2&download=6398-98-ijsmm-vol2-no2-2015.pdf |
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author | Mustofa Yusnaini Arifin Ramang Magga Rustan Hatib |
author_facet | Mustofa Yusnaini Arifin Ramang Magga Rustan Hatib |
author_sort | Mustofa |
collection | DOAJ |
description | This paper presents the performance of an unglazed
polycrystalline photovoltaic-thermal PVT on 0.045 kg/s mass
flow rate. PVT combine photovoltaic modules and solar thermal
collectors, forming a single device that receive solar radiation
and produces heat and electricity simultaneously. The collector
figures out serpentine-parallel tubes that can prolong fluid heat
conductivity from morning till afternoon. During testing, cell
PV, inlet and outlet fluid temperatures were recorded by
thermocouple digital LM35 Arduino Mega 2560. Panel voltage
and electric current were also noted in which they were
connected to computer and presented each second data recorded.
But, in this performance only shows in the certain significant
time data. This because the electric current was only noted by
multimeter device not the digital one. Based on these testing data,
average cell efficiency was about 19%, while thermal efficiency of
above 50% and correspondent cell efficiency of 11%,
respectively. |
first_indexed | 2024-12-11T22:38:50Z |
format | Article |
id | doaj.art-93c76334ed514fce8caf53bf2ce6c0a1 |
institution | Directory Open Access Journal |
issn | 2356-5314 |
language | English |
last_indexed | 2024-12-11T22:38:50Z |
publishDate | 2015-10-01 |
publisher | Hasanuddin University |
record_format | Article |
series | International Journal on Smart Material and Mechatronics |
spelling | doaj.art-93c76334ed514fce8caf53bf2ce6c0a12022-12-22T00:47:53ZengHasanuddin UniversityInternational Journal on Smart Material and Mechatronics2356-53142015-10-012298101Performance of Polycrystalline Photovoltaic and Thermal Collector (PVT) on Serpentine-Parallel AbsorMustofa0Yusnaini Arifin1Ramang Magga2Rustan Hatib3Tadulako University, IndonesiaTadulako University, IndonesiaTadulako University, IndonesiaTadulako University, IndonesiaThis paper presents the performance of an unglazed polycrystalline photovoltaic-thermal PVT on 0.045 kg/s mass flow rate. PVT combine photovoltaic modules and solar thermal collectors, forming a single device that receive solar radiation and produces heat and electricity simultaneously. The collector figures out serpentine-parallel tubes that can prolong fluid heat conductivity from morning till afternoon. During testing, cell PV, inlet and outlet fluid temperatures were recorded by thermocouple digital LM35 Arduino Mega 2560. Panel voltage and electric current were also noted in which they were connected to computer and presented each second data recorded. But, in this performance only shows in the certain significant time data. This because the electric current was only noted by multimeter device not the digital one. Based on these testing data, average cell efficiency was about 19%, while thermal efficiency of above 50% and correspondent cell efficiency of 11%, respectively.http://siaka.unhas.ac.id/ijsmm/library/index.php?kategori=vol2no2&download=6398-98-ijsmm-vol2-no2-2015.pdfpolycrystallineunglazed PVTArduino Mega 2560 |
spellingShingle | Mustofa Yusnaini Arifin Ramang Magga Rustan Hatib Performance of Polycrystalline Photovoltaic and Thermal Collector (PVT) on Serpentine-Parallel Absor International Journal on Smart Material and Mechatronics polycrystalline unglazed PVT Arduino Mega 2560 |
title | Performance of Polycrystalline Photovoltaic and Thermal Collector (PVT) on Serpentine-Parallel Absor |
title_full | Performance of Polycrystalline Photovoltaic and Thermal Collector (PVT) on Serpentine-Parallel Absor |
title_fullStr | Performance of Polycrystalline Photovoltaic and Thermal Collector (PVT) on Serpentine-Parallel Absor |
title_full_unstemmed | Performance of Polycrystalline Photovoltaic and Thermal Collector (PVT) on Serpentine-Parallel Absor |
title_short | Performance of Polycrystalline Photovoltaic and Thermal Collector (PVT) on Serpentine-Parallel Absor |
title_sort | performance of polycrystalline photovoltaic and thermal collector pvt on serpentine parallel absor |
topic | polycrystalline unglazed PVT Arduino Mega 2560 |
url | http://siaka.unhas.ac.id/ijsmm/library/index.php?kategori=vol2no2&download=6398-98-ijsmm-vol2-no2-2015.pdf |
work_keys_str_mv | AT mustofa performanceofpolycrystallinephotovoltaicandthermalcollectorpvtonserpentineparallelabsor AT yusnainiarifin performanceofpolycrystallinephotovoltaicandthermalcollectorpvtonserpentineparallelabsor AT ramangmagga performanceofpolycrystallinephotovoltaicandthermalcollectorpvtonserpentineparallelabsor AT rustanhatib performanceofpolycrystallinephotovoltaicandthermalcollectorpvtonserpentineparallelabsor |