Efficiency enhancement of a solar dish collector operating with a novel soybean oil-based-MXene nanofluid and different cavity receivers

The objective of the present research work is to investigate a novel high-efficiency nanofluid in a solar dish concentrator by using the numerical model developed. The working fluids examined consisted of soybean oilbased MXene nanofluid of different concentrations (i.e. 0.025, 0.075 and 0.125 wt%)...

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Main Authors: Aslfattahi, Navid, Loni, Reyhaneh, Bellos, Evangelos, Najafi, Gholamhassan, Kadirgama, K., Harun, W. S. W., Saidur, R.
Format: Article
Published: Elsevier 2021
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Online Access:http://eprints.um.edu.my/28684/
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spelling my.um.eprints.286842022-04-06T04:12:13Z http://eprints.um.edu.my/28684/ Efficiency enhancement of a solar dish collector operating with a novel soybean oil-based-MXene nanofluid and different cavity receivers Aslfattahi, Navid Loni, Reyhaneh Bellos, Evangelos Najafi, Gholamhassan Kadirgama, K. Harun, W. S. W. Saidur, R. GE Environmental Sciences QH426 Genetics TA Engineering (General). Civil engineering (General) The objective of the present research work is to investigate a novel high-efficiency nanofluid in a solar dish concentrator by using the numerical model developed. The working fluids examined consisted of soybean oilbased MXene nanofluid of different concentrations (i.e. 0.025, 0.075 and 0.125 wt%) and pure soybean oil. The studied nanofluids yielded excellent thermal properties such as high thermal conductivity and heat capacity, which were two particular factors rendering them excellent candidates for solar thermal applications. The solar dish collector was evaluated for three different cavity receivers including cubical, hemispherical and cylindrical shapes. Then, thermal analysis was performed with a developed numerical model in steady-state conditions, which was validated by using experimental results. Meanwhile, the thermal properties of the oil-based nanofluid were described after the experiments. The analysis was parametric in nature, thereby studying the system performance on a daily basis. According to the analysis, the hemispherical cavity receiver led to maximum thermal efficiency with the nanofluid used. In particular, the daily mean thermal efficiency with nanofluid of 82.66% and the mean equivalent efficiency of 82.46% were achieved, while the mean enhancement was 0.6%. However, the enhancements were higher with the use of other cavities due to the higher thermal losses shown in such cases. Moreover, the equivalent efficiency proved that the increased pumping work due to the use of nanofluid could not overcome the thermal enhancement, thereby improving the overall performance of the solar collector. Elsevier 2021-10-01 Article PeerReviewed Aslfattahi, Navid and Loni, Reyhaneh and Bellos, Evangelos and Najafi, Gholamhassan and Kadirgama, K. and Harun, W. S. W. and Saidur, R. (2021) Efficiency enhancement of a solar dish collector operating with a novel soybean oil-based-MXene nanofluid and different cavity receivers. Journal of Cleaner Production, 317. ISSN 0959-6526, DOI https://doi.org/10.1016/j.jclepro.2021.128430 <https://doi.org/10.1016/j.jclepro.2021.128430>. 10.1016/j.jclepro.2021.128430
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic GE Environmental Sciences
QH426 Genetics
TA Engineering (General). Civil engineering (General)
spellingShingle GE Environmental Sciences
QH426 Genetics
TA Engineering (General). Civil engineering (General)
Aslfattahi, Navid
Loni, Reyhaneh
Bellos, Evangelos
Najafi, Gholamhassan
Kadirgama, K.
Harun, W. S. W.
Saidur, R.
Efficiency enhancement of a solar dish collector operating with a novel soybean oil-based-MXene nanofluid and different cavity receivers
description The objective of the present research work is to investigate a novel high-efficiency nanofluid in a solar dish concentrator by using the numerical model developed. The working fluids examined consisted of soybean oilbased MXene nanofluid of different concentrations (i.e. 0.025, 0.075 and 0.125 wt%) and pure soybean oil. The studied nanofluids yielded excellent thermal properties such as high thermal conductivity and heat capacity, which were two particular factors rendering them excellent candidates for solar thermal applications. The solar dish collector was evaluated for three different cavity receivers including cubical, hemispherical and cylindrical shapes. Then, thermal analysis was performed with a developed numerical model in steady-state conditions, which was validated by using experimental results. Meanwhile, the thermal properties of the oil-based nanofluid were described after the experiments. The analysis was parametric in nature, thereby studying the system performance on a daily basis. According to the analysis, the hemispherical cavity receiver led to maximum thermal efficiency with the nanofluid used. In particular, the daily mean thermal efficiency with nanofluid of 82.66% and the mean equivalent efficiency of 82.46% were achieved, while the mean enhancement was 0.6%. However, the enhancements were higher with the use of other cavities due to the higher thermal losses shown in such cases. Moreover, the equivalent efficiency proved that the increased pumping work due to the use of nanofluid could not overcome the thermal enhancement, thereby improving the overall performance of the solar collector.
format Article
author Aslfattahi, Navid
Loni, Reyhaneh
Bellos, Evangelos
Najafi, Gholamhassan
Kadirgama, K.
Harun, W. S. W.
Saidur, R.
author_facet Aslfattahi, Navid
Loni, Reyhaneh
Bellos, Evangelos
Najafi, Gholamhassan
Kadirgama, K.
Harun, W. S. W.
Saidur, R.
author_sort Aslfattahi, Navid
title Efficiency enhancement of a solar dish collector operating with a novel soybean oil-based-MXene nanofluid and different cavity receivers
title_short Efficiency enhancement of a solar dish collector operating with a novel soybean oil-based-MXene nanofluid and different cavity receivers
title_full Efficiency enhancement of a solar dish collector operating with a novel soybean oil-based-MXene nanofluid and different cavity receivers
title_fullStr Efficiency enhancement of a solar dish collector operating with a novel soybean oil-based-MXene nanofluid and different cavity receivers
title_full_unstemmed Efficiency enhancement of a solar dish collector operating with a novel soybean oil-based-MXene nanofluid and different cavity receivers
title_sort efficiency enhancement of a solar dish collector operating with a novel soybean oil-based-mxene nanofluid and different cavity receivers
publisher Elsevier
publishDate 2021
url http://eprints.um.edu.my/28684/
_version_ 1735409569879818240
score 13.18916