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Experimental Investigation on Heat Transfer Performance of TiO2 Nanofluids in Water-Ethylene Glycol Mixture

机译:TiO2纳米流体在水-乙二醇混合物中传热性能的实验研究

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摘要

The use of nanofluids is essential in heat transfer study due to its effective performance. The performance of nanofluids in mixture based fluids is yet to be explored hence; the study was carried out to provide a widerudknowledge and information on heat transfer performance of TiO2 nanofluids. The forced convection heat transfer is conducted at Reynolds number of 3000 to 24,000 under constant heat flux boundary conditions. The TiO2 nanofluid is prepared at 0.5 to 1.5% volume concentration and the thermal conductivity and dynamic viscosityudwere measured for 30 to 70 °C. The heat transfer performance was evaluated at three different bulk temperatures for its heat transfer coefficient and friction factor; 30, 50 and 70 °C. The thermal conductivity and viscosity enhanced with the increase in volume concentration. The heat transfer performance for temperature at 30 °C experienced low enhancement compared to the base fluid when the nanofluid concentration was less than 1.2%. However, at temperatures of 50 and 70 °C for all volume concentrations, the heat transfer performance improved with a value of h′ greater than 1. As the working temperature increased, the enhancement became more noticeable for higher concentrations. The friction factor of TiO2 nanofluids is slightly increased with the increase of concentration at approximately 1.1 times of base fluid. The performance factor, h′ of the TiO2 nanofluids is significantly influenced by the thermal properties, concentration, temperature, and Reynolds number.
机译:由于纳米流体的有效性能,因此在传热研究中必不可少。因此,基于混合物的流体中纳米流体的性能尚待探索。进行该研究以提供更广泛的知识和有关TiO2纳米流体传热性能的信息。强制对流换热在恒定的热通量边界条件下以3000至24,000的雷诺数进行。 TiO2纳米流体的制备浓度为0.5至1.5%,并在30至70°C下测量了热导率和动态粘度。在三种不同的体温条件下,评估了其传热系数和摩擦因数的传热性能。 30、50和70°C。随着体积浓度的增加,热导率和粘度增加。当纳米流体浓度小于1.2%时,与基础流体相比,温度在30°C时的传热性能会降低。但是,对于所有体积浓度,在50和70°C的温度下,h'值大于1时,传热性能都会提高。随着工作温度的升高,浓度越高,传热性能越明显。 TiO2纳米流体的摩擦因数随浓度的增加而略有增加,约为基础流体的1.1倍。 TiO2纳米流体的性能因子h'受热性能,浓度,温度和雷诺数的影响很大。

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