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Numerical analysis of nanofluid flow inside a trapezoidal microchannel using different approaches

机译:使用不同方法的梯形微通道内纳米流体流动的数值分析

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In this study, developing laminar forced convection of Al2O3/water nanofluid flow inside a trapezoidal microchannel has been investigated. The numerical simulation is conducted using two different methods which consider the effect of non-uniform nanoparticle distribution: Buongiorno's Two-component non-homogeneous model, and Eulerian-Lagrangian two-phase method. The results are compared to experimental data and also single-phase and dispersion methods. It is shown that the Eulerian-Lagrangian method predicts microchannel Nusselt number more accurately than Buongiorno's model. Particle distribution is not uniform in the cross section of microchannel, and with increasing Reynolds number this nonuniformity is more. Moreover, the effect of different forces on heat transfer is discussed. It is found that the influence of Saffman's lift force is negligible while Brownian and thermophoretic forces affect the heat transfer coefficient slightly. Furthermore, it is shown that the use of experimental correlation for nanoparticle Nusselt number makes the numerical results more accurate, so it is important to take into account the scale effects and use the suitable correlations. (C) 2018 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:在该研究中,研究了在梯形微通道内的Al2O3 /水纳米流体流动的开发层压迫使对流。使用两种不同的方法进行数值模拟,其考虑非均匀纳米粒子分布的影响:Buongiorno的双组分非均匀模型和欧拉维拉格氏多相方法。将结果与实验数据进行比较,以及单相和分散方法。结果表明,Eulerian-Lagrangian方法比Buongiorno的模型更准确地预测微通道篮板号。微通道的横截面中的颗粒分布不均匀,并且随着雷诺数增加这种不均匀性。此外,讨论了不同力对热传递的影响。发现萨夫曼的升力力的影响是可忽略不计的,而布朗和硫化力力略微影响传热系数。此外,表明使用对纳米粒子露珠的实验相关性使得数值结果更准确,因此重要的是考虑尺度效应并使用合适的相关性。 (c)2018年日本粉末科技学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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