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Laminar mixed convection of large-Prandtl-number in-tube nanofluid flow, Part Ⅱ: Correlations

机译:大量管内纳米流体流动的层流混合对流,第二部分:相关性

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This is the second part of two related papers on mixed convection heat transfer of large-Prandtl-number nanofluids flowing in a horizontal tube. In the preceding experiments, it was observed that nanoparticles can either deteriorate the contribution of natural convection to the overall heat transfer under the same heat flux or enhance it under a given Grashof number. In this part a quantitative analysis of this effect is made to deepen insight of the ambiguous phenomena. First of all, by taking into account the effective thermophysical properties of nanofluids and using transition criterion for the onset of significant natural convection effects, the seemingly irreconcilable contradiction between experimental results has fallen to the power of dynamic viscosity. Furthermore, as the experimental data obtained could not be reconciled with existing correlations, three improved correlations have been derived by using single-phase fluid approach. These correlations fit our data to within ±10% and also agree with the data in literature quite well, regardless of the diameter or the shape of the nanoparticles. Such results verify that nanofluids can be treated as a homogeneous mixture with effective thermophysical properties. Ultimately, the new correlations have grasped the essence of natural convection and can reduce to both normal forced convection and pure natural convection equations at limiting cases.
机译:这是有关在水平管中流动的大量Prandtl数纳米流体混合对流传热的两篇相关论文的第二部分。在前面的实验中,观察到纳米颗粒可以在相同的热通量下恶化自然对流对总传热的贡献,或者在给定的Grashof数下增强自然对流。在此部分中,将对此效果进行定量分析,以加深对歧义现象的了解。首先,通过考虑纳米流体的有效热物理性质,并使用过渡标准来确定明显的自然对流效应,实验结果之间看似不可调和的矛盾已归结为动态粘度的作用。此外,由于获得的实验数据无法与现有的相关性进行调和,因此通过使用单相流体方法可以得出三个改进的相关性。这些相关性使我们的数据符合±10%以内,并且与纳米粒子的直径或形状无关,也与文献中的数据非常吻合。这样的结果证明,纳米流体可以被视为具有有效热物理性质的均匀混合物。最终,新的相关性已经掌握了自然对流的本质,并且在极限情况下可以简化为法向对流方程和纯自然对流方程。

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