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Experimental study of heat transfer enhancement using water/ethylene glycol based nanofluids as a new coolant for car radiators

机译:水/乙二醇基纳米流体作为汽车散热器新型冷却剂促进传热的实验研究

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Traditionally forced convection heat transfer in a car radiator is performed to cool circulating fluid which consisted of water or a mixture of water and anti-freezing materials like ethylene glycol (EG). In this paper, the heat transfer performance of pure water and pure EG has been compared with their binary mixtures. Furthermore, different amounts of Al_2O_3 nanoparticle have been added into these base fluids and its effects on the heat transfer performance of the car radiator have been determined experimentally. Liquid flow rate has been changed in the range of 2-61 per minute and the fluid inlet temperature has been changed for all the experiments. The results demonstrate that nanofluids clearly enhance heat transfer compared to their own base fluid. In the best conditions, the heat transfer enhancement of about 40% compared to the base fluids has been recorded.
机译:传统上,在汽车散热器中进行强制对流传热是为了冷却循环流体,该循环流体由水或水与防冻材料(如乙二醇(EG))的混合物组成。在本文中,已经将纯水和纯EG的热传递性能与其二元混合物进行了比较。此外,已经向这些基础流体中添加了不同量的Al_2O_3纳米颗粒,并且已经通过实验确定了其对汽车散热器的传热性能的影响。在所有实验中,液体流速已在每分钟2-61的范围内更改,并且流体入口温度已更改。结果表明,与它们自己的基础流体相比,纳米流体明显增强了热传递。在最佳条件下,与基础流体相比,传热增强了约40%。

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