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A Comparison of Empirical Correlations of Viscosity and Thermal Conductivity of Water-Ethylene Glycol-Al2O3 Nanofluids

机译:水 - 乙二醇-Al2O3纳米流体粘度和导热率的经验相关性比较

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摘要

Because of their superb thermal conductivity, nanofluids are seen as new generation of cooling mediums in many engineering applications. It is well established that even a small amount of nanoparticles mixed with a base fluid may result in distinct thermal conductivity enhancement. On the other hand, addition of nanoparticles to the base fluid results in its substantial viscosity increase. Therefore, it is very difficult to evaluate the relative importance of viscosity and thermal conductivity of the nanofluid on convective heat transfer performance. In order to estimate such resultant impact properly, it is necessary to develop reliable correlation equations for predictions of these two thermophysical properties of nanofluids. In this paper, the thermal conductivity and dynamic viscosity of five fluids, i.e., pure water, ethylene glycol (EG) and three mixtures of water and EG with volume ratio of 40:60, 50:50 and 60:40 have been experimentally determined. The aforementioned fluids served as base fluids in nanofluids with Al O nanoparticles at the concentration of 0.01%, 0.1% and 1% by weight. A set of 20 correlations for prediction of thermal conductivity and dynamic viscosity of base fluids and corresponding nanofluids has been developed. Moreover, present results have been confronted with literature data and predictions made by use of carefully selected recognized literature correlations.
机译:由于它们的热导率优异,纳米流体被视为许多工程应用中的新一代冷却介质。很好地确定,即使与基础流体混合的少量纳米颗粒也可能导致不同的导热性增强。另一方面,向基础流体中加入纳米颗粒导致其显着粘度增加。因此,很难评估纳米流体对对流传热性能的粘度和导热率的相对重要性。为了适当地估计这种所得的影响,有必要开发可靠的相关方程,以预测纳米流体的这两个热物理性质。本文在实验确定了五种流体,即纯水,乙二醇(例如)和三种水和例如40:60,50:50和60:40的三种混合物和三种混合物的导热率和动态粘度。上述流体用作纳米流体的基础流体,其浓度为纳米颗粒,浓度为0.01%,0.1%和1重量%。已经开发了一组20用于预测基础流体的导热率和动态粘度的20个相关性和相应的纳米流体。此外,目前的结果已经面临文学数据和通过使用仔细选择的认可的文献相关性进行的预测。

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