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首页> 外文期刊>Journal of thermal analysis and calorimetry >Viscosity, thermal conductivity and density of carbon quantum dots nanofluids: an experimental investigation and development of new correlation function and ANN modeling
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Viscosity, thermal conductivity and density of carbon quantum dots nanofluids: an experimental investigation and development of new correlation function and ANN modeling

机译:碳量子点纳米流体的粘度,导热系数和密度:新相关函数和ANN建模的实验研究和开发

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This paper reports an experimental investigation on the viscosity, thermal conductivity and density of water, ethylene glycol, and water-ethylene glycol mixture (60:40 vol%)-based carbon quantum dots (CQDs) nanofluids. Stable nanofluids were prepared by two-step technique at room temperature, and the thermophysical properties of them were measured at various temperatures and volume fractions (0.2-1 vol%). The presence of CQDs enhances the viscosity and thermal conductivity of nanofluids noticeably. The maximum thermal conductivity enhancement reaches up to 8.2%, 25.1%, and 13.3% for the nanofluid containing 1% CQDs at 50 degrees C in ethylene glycol, water, and water-ethylene glycol mixture (60:40) as base fluids, respectively. In addition, the viscosity of each solution was measured, and the results show that it increases with increasing volume fractions of CQDs nanoparticles and decreased with increasing temperature. Additionally, to correlate viscosity, thermal conductivity, and density of nanofluids, some new empirical equations are derived and compared with experimental data and other theoretical models. Besides, three artificial neural network models are applied to predict the viscosity, thermal conductivity, and density of nanofluids and they are in excellent agreement with experimental data with the AAD = 1.29% andR(2) = 0.99994 for viscosity, AAD = 0.85% andR(2) = 0.99867 for thermal conductivity, and AAD = 0.01% andR(2) = 0.99999 for density of nanofluids.
机译:本文报道了水、乙二醇和水-乙二醇混合物(60:40 vol%)基碳量子点(CQD)纳米流体的粘度、热导率和密度的实验研究。采用两步法在室温下制备了稳定的纳米流体,并在不同温度和体积分数(0.2-1 vol%)下测量了它们的热物理性质。CQD的存在显著提高了纳米流体的粘度和热导率。在50摄氏度下,在乙二醇、水和水-乙二醇混合物(60:40)中,含有1%CQDs的纳米流体作为基础流体,其最大热导率提高分别达到8.2%、25.1%和13.3%。此外,测量了每种溶液的粘度,结果表明,粘度随CQDs纳米颗粒体积分数的增加而增加,随温度的升高而降低。此外,为了关联纳米流体的粘度、热导率和密度,推导了一些新的经验公式,并与实验数据和其他理论模型进行了比较。此外,三种人工神经网络模型用于预测纳米流体的粘度、热导率和密度,它们与实验数据非常吻合,粘度的AAD=1.29%和R(2)=0.99994,热导率的AAD=0.85%和R(2)=0.99867,纳米流体密度的AAD=0.01%和R(2)=0.99999。

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