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An updated review on application of nanofluids in flat tubes radiators for improving cooling performance

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  • Arora, Neeti
  • Gupta, Munish

Abstract

Engineers and scientists are constantly engaged in improving the cooling performance of vehicle engine radiators to achieve the sustainable and efficient use of energy and resources. In this whole exercise, efficient tube geometry and coolant plays the crucial role for enhancing the heat exchange in the way of betterment of radiator efficiency. Owing to greater surface-to-cross-section flow area ratio of flat tubes compared to circular tubes, enhances the rate of heat transfer and also compacts the dimensions of heat exchanger. Nanofluids are the suitable coolants, contribute towards high heat transfer in radiators because of good thermal properties. This article opens with the overview of nanofluid synthesis methods, mechanisms involved in heat transfer intensification through nanofluids and reviews on nanofluids in vehicle engine cooling systems. Further, the thermo-hydraulic performance of nanofluids in flat tubes automobile radiators is discussed. The effect of nanoparticle concentration, nanofluid flow rate (or Reynolds number), nanofluid temperature and tube geometry on heat and flow characteristics is critically analysed. Nanoparticles could directly affect researchers' health and work place surroundings. Thus, it is vital to understand the impact of nanoparticles on environment and human health which is also discussed in this paper. Significant results from studied literature are summarized for ready reference. Authors endeavor to recognize some challenges and provide guidelines for essential assessment in the performance of radiators.

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  • Arora, Neeti & Gupta, Munish, 2020. "An updated review on application of nanofluids in flat tubes radiators for improving cooling performance," Renewable and Sustainable Energy Reviews, Elsevier, vol. 134(C).
  • Handle: RePEc:eee:rensus:v:134:y:2020:i:c:s1364032120305311
    DOI: 10.1016/j.rser.2020.110242
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    References listed on IDEAS

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    1. Ali, Hafiz Muhammad & Ali, Hassan & Liaquat, Hassan & Bin Maqsood, Hafiz Talha & Nadir, Malik Ahmed, 2015. "Experimental investigation of convective heat transfer augmentation for car radiator using ZnO–water nanofluids," Energy, Elsevier, vol. 84(C), pages 317-324.
    2. Ahmadi, Mohammad Hossein & Ghazvini, Mahyar & Maddah, Heydar & Kahani, Mostafa & Pourfarhang, Samira & Pourfarhang, Amin & Heris, Saeed Zeinali, 2020. "Prediction of the pressure drop for CuO/(Ethylene glycol-water) nanofluid flows in the car radiator by means of Artificial Neural Networks analysis integrated with genetic algorithm," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 546(C).
    3. Taghizadeh-Tabari, Zohre & Zeinali Heris, Saeed & Moradi, Maryam & Kahani, Mostafa, 2016. "The study on application of TiO2/water nanofluid in plate heat exchanger of milk pasteurization industries," Renewable and Sustainable Energy Reviews, Elsevier, vol. 58(C), pages 1318-1326.
    4. Zhao, Ningbo & Li, Shuying & Yang, Jialong, 2016. "A review on nanofluids: Data-driven modeling of thermalphysical properties and the application in automotive radiator," Renewable and Sustainable Energy Reviews, Elsevier, vol. 66(C), pages 596-616.
    5. Gupta, Munish & Singh, Vinay & Kumar, Rajesh & Said, Z., 2017. "A review on thermophysical properties of nanofluids and heat transfer applications," Renewable and Sustainable Energy Reviews, Elsevier, vol. 74(C), pages 638-670.
    6. Bigdeli, Masoud Bozorg & Fasano, Matteo & Cardellini, Annalisa & Chiavazzo, Eliodoro & Asinari, Pietro, 2016. "A review on the heat and mass transfer phenomena in nanofluid coolants with special focus on automotive applications," Renewable and Sustainable Energy Reviews, Elsevier, vol. 60(C), pages 1615-1633.
    7. Che Sidik, Nor Azwadi & Witri Mohd Yazid, Muhammad Noor Afiq & Mamat, Rizalman, 2017. "Recent advancement of nanofluids in engine cooling system," Renewable and Sustainable Energy Reviews, Elsevier, vol. 75(C), pages 137-144.
    8. Said, Zafar & El Haj Assad, M. & Hachicha, Ahmed Amine & Bellos, Evangelos & Abdelkareem, Mohammad Ali & Alazaizeh, Duha Zeyad & Yousef, Bashria A.A., 2019. "Enhancing the performance of automotive radiators using nanofluids," Renewable and Sustainable Energy Reviews, Elsevier, vol. 112(C), pages 183-194.
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