首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Experimental investigation of forced convective heat transfer coefficient in nanofluids of Al2O3/EG and CuO/EG in a double pipe and plate heat exchangers under turbulent flow
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Experimental investigation of forced convective heat transfer coefficient in nanofluids of Al2O3/EG and CuO/EG in a double pipe and plate heat exchangers under turbulent flow

机译:湍流双管板式换热器中Al2O3 / EG和CuO / EG纳米流体强迫对流换热系数的实验研究。

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Nanofluid is the term applied to a suspension of solid, nanometer-sized particles in conventional fluids; the most prominent features of such fluids include enhanced heat characteristics, such as convective heat transfer coefficient, in comparison to the base fluid without considerable alterations in physical and chemical properties. In this study, nanofluids of aluminum oxide and copper oxide were prepared in ethylene glycol separately. The effect of forced convective heat transfer coefficient in turbulent flow was calculated using a double pipe and plate heat exchangers. Furthermore, we calculated the forced convective heat transfer coefficient of the nanofluids using theoretical correlations in order to compare the results with the experimental data. We also evaluated the effects of particle concentration and operating temperature on the forced convective heat transfer coefficient of the nanofluids. The findings indicate considerable enhancement in convective heat transfer coefficient of the nanofluids as compared to the base fluid, ranging from 2% to 50%. Moreover, the results indicate that with increasing nanoparticles concentration and nanofluid temperature, the convective heat transfer coefficient of nanofluid increases. Our experiments revealed that in lower temperatures, the theoretical and experimental findings coincide; however, in higher temperatures and with increased concentrations of the nanoparticles in ethylene glycol, the two set of results tend to have growing discrepancies.
机译:纳米流体是一个术语,适用于常规流体中固体纳米大小的颗粒的悬浮液;与基础流体相比,这种流体最显着的特征包括增强的热特性,例如对流传热系数,而在物理和化学性质上没有显着改变。在这项研究中,分别在乙二醇中制备了氧化铝和氧化铜的纳米流体。使用双管板式换热器计算了强制对流换热系数对湍流的影响。此外,我们使用理论相关性计算了纳米流体的强制对流换热系数,以便将结果与实验数据进行比较。我们还评估了颗粒浓度和操作温度对纳米流体强迫对流传热系数的影响。该发现表明与基础流体相比,纳米流体的对流传热系数显着提高,范围为2%至50%。而且,结果表明,随着纳米颗粒浓度和纳米流体温度的增加,纳米流体的对流传热系数增加。我们的实验表明,在较低的温度下,理论和实验结果是一致的。然而,在更高的温度下以及随着乙二醇中纳米颗粒浓度的增加,两组结果之间的差异趋于增加。

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