Study of PTC System with Rectangular Cavity Receiver with Different Receiver Tube Shapes Using Oil, Water and Air

Today, application of cavity receivers in solar concentrator systems is suggested as an interesting and novelty research subject for increasing thermal performance. In this research, a parabolic trough concentrator (PTC) with a rectangular cavity receiver was energetically investigated. The cavity r...

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Main Authors: Alireza Rafiei, Reyhaneh Loni, Gholamhassan Najafi, Talal Yusaf
Format: Article
Language:English
Published: MDPI AG 2020-04-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/13/8/2114
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spelling doaj-da824ae3d23747638d9759f7aeac96ce2020-11-25T02:41:29ZengMDPI AGEnergies1996-10732020-04-01132114211410.3390/en13082114Study of PTC System with Rectangular Cavity Receiver with Different Receiver Tube Shapes Using Oil, Water and AirAlireza Rafiei0Reyhaneh Loni1Gholamhassan Najafi2Talal Yusaf3Process Design Development Research Group, Center for Process Systems Engineering, Institute of Autonomous Systems, Universiti Teknologi Petronas, 32610 Seri Iskandar, Perak 300-22-8887, MalaysiaDepartment of Biosystems Engineering, Tarbiat Modares University, Tehran 111-14115, IranDepartment of Biosystems Engineering, Tarbiat Modares University, Tehran 111-14115, IranDepartment of Development, Aviation Australia, Brisbane 4007, AustraliaToday, application of cavity receivers in solar concentrator systems is suggested as an interesting and novelty research subject for increasing thermal performance. In this research, a parabolic trough concentrator (PTC) with a rectangular cavity receiver was energetically investigated. The cavity receiver was studied with smooth and corrugated tubes. Different solar heat transfer fluids were considered, including water, air, and thermal oil. The effect of different operational parameters, as well as structural parameters, was investigated. The results showed that the linear rectangular cavity receiver with corrugated tube showed higher amounts of the absorbed heat and energy performance compared to the smooth tube as the cavity tube. Thermal performance of the rectangular cavity was improved using the application of water as the solar heat transfer fluid, which was followed by thermal oil and, finally, air, as the solar heat transfer fluid. Finally, it could be recommended that the rectangular cavity receiver with smooth tube using air as the solar heat transfer fluid is more appropriate for coupling this system with a Bryton cycle, whereas the rectangular cavity receiver with the corrugated tube using water or oil as the solar heat transfer fluid is recommended for achieving higher outlet temperature of the heat transfer fluid.https://www.mdpi.com/1996-1073/13/8/2114linear cavityparabolic trough concentratorcorrugated tubeheat transfer fluid
collection DOAJ
language English
format Article
sources DOAJ
author Alireza Rafiei
Reyhaneh Loni
Gholamhassan Najafi
Talal Yusaf
spellingShingle Alireza Rafiei
Reyhaneh Loni
Gholamhassan Najafi
Talal Yusaf
Study of PTC System with Rectangular Cavity Receiver with Different Receiver Tube Shapes Using Oil, Water and Air
Energies
linear cavity
parabolic trough concentrator
corrugated tube
heat transfer fluid
author_facet Alireza Rafiei
Reyhaneh Loni
Gholamhassan Najafi
Talal Yusaf
author_sort Alireza Rafiei
title Study of PTC System with Rectangular Cavity Receiver with Different Receiver Tube Shapes Using Oil, Water and Air
title_short Study of PTC System with Rectangular Cavity Receiver with Different Receiver Tube Shapes Using Oil, Water and Air
title_full Study of PTC System with Rectangular Cavity Receiver with Different Receiver Tube Shapes Using Oil, Water and Air
title_fullStr Study of PTC System with Rectangular Cavity Receiver with Different Receiver Tube Shapes Using Oil, Water and Air
title_full_unstemmed Study of PTC System with Rectangular Cavity Receiver with Different Receiver Tube Shapes Using Oil, Water and Air
title_sort study of ptc system with rectangular cavity receiver with different receiver tube shapes using oil, water and air
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2020-04-01
description Today, application of cavity receivers in solar concentrator systems is suggested as an interesting and novelty research subject for increasing thermal performance. In this research, a parabolic trough concentrator (PTC) with a rectangular cavity receiver was energetically investigated. The cavity receiver was studied with smooth and corrugated tubes. Different solar heat transfer fluids were considered, including water, air, and thermal oil. The effect of different operational parameters, as well as structural parameters, was investigated. The results showed that the linear rectangular cavity receiver with corrugated tube showed higher amounts of the absorbed heat and energy performance compared to the smooth tube as the cavity tube. Thermal performance of the rectangular cavity was improved using the application of water as the solar heat transfer fluid, which was followed by thermal oil and, finally, air, as the solar heat transfer fluid. Finally, it could be recommended that the rectangular cavity receiver with smooth tube using air as the solar heat transfer fluid is more appropriate for coupling this system with a Bryton cycle, whereas the rectangular cavity receiver with the corrugated tube using water or oil as the solar heat transfer fluid is recommended for achieving higher outlet temperature of the heat transfer fluid.
topic linear cavity
parabolic trough concentrator
corrugated tube
heat transfer fluid
url https://www.mdpi.com/1996-1073/13/8/2114
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