Sensitivity analysis of a parabolic trough concentrator with linear V‐shape cavity

Abstract In the present investigation, a solar parabolic trough concentrator (PTC) with a linear cavity was examined by using a developed numerical model. More specifically, a V‐shape cavity receiver was studied in this work as a new and alternative design. The use of a cavity in a PTC is a very pro...

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Main Authors: Alireza Rafiei, Reyhaneh Loni, Mohammad Hossein Ahmadi, Gholamhassan Najafi, Evangelos Bellos, Fatemeh Rajaee, Ezzatollah Askari Asli‐Ardeh
Format: Article
Language:English
Published: Wiley 2020-10-01
Series:Energy Science & Engineering
Subjects:
Online Access:https://doi.org/10.1002/ese3.763
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spelling doaj-82e5fccfae094051b96411b06f79a69b2020-11-25T02:46:28ZengWileyEnergy Science & Engineering2050-05052020-10-018103544356010.1002/ese3.763Sensitivity analysis of a parabolic trough concentrator with linear V‐shape cavityAlireza Rafiei0Reyhaneh Loni1Mohammad Hossein Ahmadi2Gholamhassan Najafi3Evangelos Bellos4Fatemeh Rajaee5Ezzatollah Askari Asli‐Ardeh6Process Design Development Research Group Center for Process Systems Engineering Institute of Autonomous Systems Universiti Teknologi PETRONAS Seri Iskandar MalaysiaDepartment of Biosystems Engineering Tarbiat Modares University Tehran IranFaculty of Mechanical Engineering Shahrood University of Technology Shahrood IranDepartment of Biosystems Engineering Tarbiat Modares University Tehran IranThermal Department School of Mechanical Engineering National Technical University of Athens Athens GreeceRenewable Energies and Environment Department Faculty of New Sciences and Technologies University of Tehran Tehran IranDepartment of Biosystems Engineering University of Mohaghegh Ardabibi Ardabil IranAbstract In the present investigation, a solar parabolic trough concentrator (PTC) with a linear cavity was examined by using a developed numerical model. More specifically, a V‐shape cavity receiver was studied in this work as a new and alternative design. The use of a cavity in a PTC is a very promising idea because it leads to high efficiency and to low investment cost. Up today, the emphasis in the use of cavities is given in dish concentrators and so there is a need for investigation of cavities also in linear concentrators. Different dimensional and operational parameters of the PTC with a V‐shape cavity were considered. More specifically, the position, aperture area, and the tube diameter of the V‐shape cavity, solar irradiance, inlet temperature level, and mass flow rate were evaluated based on sensitivity analysis. The results revealed that the highest optical performance was attained when the cavity was placed at the PTC focal line. Moreover, it is found that there is an optimum cavity aperture area to determine the greatest thermal efficiency. For the optical errors of 5, 10, 15, 20, and 35 mrad, the optimum cavity aperture wide was calculated at 5, 5, 6, 7, and 8 cm, respectively, with the tracking error to be 0°. The highest thermal performance has found when the collector operates with low inlet temperature, high flow rate, high solar irradiation level, and small cavity tube diameter.https://doi.org/10.1002/ese3.763linear V‐shape cavityparabolic trough concentratorsensitivity analysisthermal analysisthermal oil
collection DOAJ
language English
format Article
sources DOAJ
author Alireza Rafiei
Reyhaneh Loni
Mohammad Hossein Ahmadi
Gholamhassan Najafi
Evangelos Bellos
Fatemeh Rajaee
Ezzatollah Askari Asli‐Ardeh
spellingShingle Alireza Rafiei
Reyhaneh Loni
Mohammad Hossein Ahmadi
Gholamhassan Najafi
Evangelos Bellos
Fatemeh Rajaee
Ezzatollah Askari Asli‐Ardeh
Sensitivity analysis of a parabolic trough concentrator with linear V‐shape cavity
Energy Science & Engineering
linear V‐shape cavity
parabolic trough concentrator
sensitivity analysis
thermal analysis
thermal oil
author_facet Alireza Rafiei
Reyhaneh Loni
Mohammad Hossein Ahmadi
Gholamhassan Najafi
Evangelos Bellos
Fatemeh Rajaee
Ezzatollah Askari Asli‐Ardeh
author_sort Alireza Rafiei
title Sensitivity analysis of a parabolic trough concentrator with linear V‐shape cavity
title_short Sensitivity analysis of a parabolic trough concentrator with linear V‐shape cavity
title_full Sensitivity analysis of a parabolic trough concentrator with linear V‐shape cavity
title_fullStr Sensitivity analysis of a parabolic trough concentrator with linear V‐shape cavity
title_full_unstemmed Sensitivity analysis of a parabolic trough concentrator with linear V‐shape cavity
title_sort sensitivity analysis of a parabolic trough concentrator with linear v‐shape cavity
publisher Wiley
series Energy Science & Engineering
issn 2050-0505
publishDate 2020-10-01
description Abstract In the present investigation, a solar parabolic trough concentrator (PTC) with a linear cavity was examined by using a developed numerical model. More specifically, a V‐shape cavity receiver was studied in this work as a new and alternative design. The use of a cavity in a PTC is a very promising idea because it leads to high efficiency and to low investment cost. Up today, the emphasis in the use of cavities is given in dish concentrators and so there is a need for investigation of cavities also in linear concentrators. Different dimensional and operational parameters of the PTC with a V‐shape cavity were considered. More specifically, the position, aperture area, and the tube diameter of the V‐shape cavity, solar irradiance, inlet temperature level, and mass flow rate were evaluated based on sensitivity analysis. The results revealed that the highest optical performance was attained when the cavity was placed at the PTC focal line. Moreover, it is found that there is an optimum cavity aperture area to determine the greatest thermal efficiency. For the optical errors of 5, 10, 15, 20, and 35 mrad, the optimum cavity aperture wide was calculated at 5, 5, 6, 7, and 8 cm, respectively, with the tracking error to be 0°. The highest thermal performance has found when the collector operates with low inlet temperature, high flow rate, high solar irradiation level, and small cavity tube diameter.
topic linear V‐shape cavity
parabolic trough concentrator
sensitivity analysis
thermal analysis
thermal oil
url https://doi.org/10.1002/ese3.763
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