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Nusselt number prediction for oil and water in solar tubular cavity receivers

Loni, Reyhaneh and Najafi, Gholamhassan and Mamat, Rizalman and Ghazali, Mohd. Fairusham and Che Sidik, Nor Azwadi (2022) Nusselt number prediction for oil and water in solar tubular cavity receivers. Journal of Advanced Research in Fluid Mechanics and Thermal Sciences, 97 (2). pp. 157-174. ISSN 2289-7879

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Official URL: http://dx.doi.org/10.37934/arfmts.97.2.157174

Abstract

In this study, a numerical model was developed for prediction of Nusselt number in solar cavity receivers. Thermal oil and water were used as the working fluid. A dish concentrator with different shapes of the cavity receiver, including hemispherical, cylindrical, and cubical, was investigated. The different shapes of cavity receiver were studied under the same operating conditions for prediction of the internal heat transfer coefficient correlation for each cavity receiver. The system is investigated under the variation of solar radiation, flow rate, and inlet temperature of solar working fluids. The developed thermal model is validated based on the experimental data for the cylindrical cavity receiver using thermal oil. The results reveal that the hemispherical cavity receiver had the highest cavity heat gain, heat transfer coefficient, and Nusselt number values compared to two other cavity receivers. It could be concluded that the cavity heat gain, and heat transfer coefficient, and Nusselt number amounts had improved with increasing solar radiation, increasing flow rate, and decreasing inlet temperature of the working fluid. Some equations were suggested for prediction of Nusselt number with the variation of solar radiation, flow rate of the working fluid, and inlet temperature of working. It was concluded that application of thermal oil had resulted in higher Nusselt numbers than the use of water as the solar working fluid. Consequently, the application of oil is suggested for high-temperature systems.

Item Type:Article
Uncontrolled Keywords:Nusselt number prediction, solar cavity receivers, thermal oil
Subjects:T Technology > T Technology (General)
Divisions:Malaysia-Japan International Institute of Technology
ID Code:102810
Deposited By: Narimah Nawil
Deposited On:20 Sep 2023 04:32
Last Modified:20 Sep 2023 04:32

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