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      Performance of a domestic refrigerator in varying ambient temperatures, concentrations of TiO 2 nanolubricants and R600a refrigerant charges

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          Abstract

          This study investigates the effect of varying test conditions including ambient temperature (19, 22, and 25 °C), mass charges of R600a refrigerant (40, 50, 60, and 70 g), and concentrations of TiO 2 nanolubricant (0, 0.2 and 0.4 g/L) on the performance of a slightly modified 100g R134a domestic refrigeration system. The investigated parameters include evaporator air temperature, energy consumption, coefficient of performance, and second law efficiency of the system. The results showed that the performance of the refrigeration system at 0.2 and 0.4 g/L concentrations of TiO 2 nanolubricant, improved at optimum ambient temperature and R600a mass charge conditions. At optimum conditions, the evaporator air temperature and energy consumption reduced within the range 5.26 to 26.32 %, and 0.13 to 14.09 % respectively, while the coefficient of performance and second law efficiency increased within the range 0.05 to 16.32 %, and 2.8 to 16 %, respectively. However, at other conditions (non-optimum), the energy consumption and evaporator air temperature were higher and within the range 0.28 to 8.26 %, and 5 to 40 % respectively, while the coefficient of performance and second law efficiency reduced within the range 2.99 to 10.94 %, and 0.55 to 13.43 % respectively. In conclusion, we observed variations in the performance of the refrigerator with varying test conditions.

          Abstract

          R600a, Refrigerator, TiO 2 nanoparticle, ambient temperature.

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          Most cited references33

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          The next generation of refrigerants – Historical review, considerations, and outlook

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            Potential of nanorefrigerant and nanolubricant on energy saving in refrigeration system – A review

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              Hydrocarbons and their mixtures as alternatives to environmental unfriendly halogenated refrigerants: An updated overview

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                Author and article information

                Contributors
                Journal
                Heliyon
                Heliyon
                Heliyon
                Elsevier
                2405-8440
                10 February 2021
                February 2021
                10 February 2021
                : 7
                : 2
                : e06156
                Affiliations
                [a ]The Energy and Environment Research Group (TEERG), Mechanical Engineering Department, Covenant University, Ogun State, Nigeria
                [b ]Senior Research Associate, Faculty of Engineering & the Built Environment, University of Johannesburg, South Africa
                [c ]Department of Production Engineering, University of Benin, Nigeria
                [d ]Department of Mechanical Engineering, Ph.D. Research Scholar, IKGPTU, Kapurthala, Punjab, India
                [e ]Department of Physical and Chemical Sciences, Elizade University, Ilara Mokin, Nigeria
                [f ]IoT-Enabled Smart and Connected Communities (SmartCU) Research Cluster, Department of Electrical and Information Engineering, Covenant University, Ota, Nigeria
                Author notes
                Article
                S2405-8440(21)00261-9 e06156
                10.1016/j.heliyon.2021.e06156
                7892924
                96663d56-8881-4776-a24a-76836d7a9d68
                © 2021 The Author(s)

                This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).

                History
                : 13 October 2020
                : 3 January 2021
                : 27 January 2021
                Categories
                Research Article

                r600a,refrigerator,tio2 nanoparticle,ambient temperature

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