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An Experimental Determination of Thermal Conductivity and Viscosity of BioGlycol/water based TiO2 Nanofluids

机译:生物乙二醇/水基TiO2纳米流体导热系数和粘度的实验测定

摘要

Nanofluid as a new brand of cooling fluid consisting of nanometer-sized particles dispersed in base fluid. In this study, nanofluids have been prepared by dispersing TiO2 nanoparticles in different base fluids such as 20:80% and 30:70% by volume of BioGlycol (BG)/water (W) mixtures. Thermal conductivity and viscosity experiments have been conducted in temperatures between 30 °C and 80 °C and in volume concentrations between 0.5% and 2.0%. Results show that thermal conductivity of nanofluids increases with increase of volume concentrations and temperatures. Similarly, viscosity of nanofluid increases with increase of volume concentrations but decreases with increase of temperatures. The maximum thermal conductivity enhancement among all the nanofluids was observed for 20:80% BG:W nanofluid about 12.6% in the volume concentration of 2.0% at a temperature of 80 °C. Correspondingly among all the nanofluids maximum viscosity enhancement was observed for 30:70% BG:W nanofluid about 1.53-times in the volume concentration of 2.0% at a temperature of 70 °C. The classical models and semi-empirical correlations failed to predict the thermal conductivity and viscosity of nanofluids with effect of volume concentration and temperatures. Therefore, a nonlinear correlation has been proposed with 5% maximum deviation for the estimation of thermal conductivity and viscosity of nanofluids.
机译:纳米流体是一种新的冷却液品牌,它由分散在基础液中的纳米级颗粒组成。在这项研究中,通过将TiO2纳米颗粒分散在不同的基础流体(例如20:80%和30:70%体积的BioGlycol(BG)/水(W)混合物)中来制备纳米流体。已经在30°C至80°C的温度和0.5%至2.0%的体积浓度下进行了热导率和粘度实验。结果表明,纳米流体的热导率随着体积浓度和温度的增加而增加。类似地,纳米流体的粘度随体积浓度的增加而增加,但随温度的增加而降低。在80°C的温度下,体积浓度为2.0%的20:80%BG:W纳米流体中,所有纳米流体中的最大导热率均得到提高。相应地,在70℃的温度下,在2.0%的体积浓度中,对于30:70%的BG:W纳米流体,在所有纳米流体中观察到最大粘度提高约1.53倍。经典模型和半经验相关性无法预测纳米流体的热导率和粘度随体积浓度和温度的影响。因此,已经提出了具有5%最大偏差的非线性相关性,用于估算纳米流体的导热率和粘度。

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