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Turbulent forced convection of Cu-water nanofluid: CFD model comparison

机译:铜水纳米流体的湍流强迫对流:CFD模型比较

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摘要

This study compares the predictions of five types of computational fluid dynamics (CFD) models, including two single-phase models (i.e. Newtonian and non-Newtonian) and three two-phase models (Eulerian-Eulerian, mixture and Eulerian-Lagrangian), to investigate turbulent forced convection of Cu-water nanofluid in a tube with a constant heat flux on the tube wall. The Reynolds (Re) number of the flow is taken between 10,000 and 25,000, while the volume fraction of Cu particles used is in the range of 0% to 2%. The results from the CFD models are compared with results of experimental investigations from literature. According to the results of this study, the non-Newtonian single-phase model, in general, does not show a good agreement with Xuan and Li's correlation in the prediction of the Nu number. The Eulerian-Eulerian model gives inaccurate results except for φ = 0.5%. The mixture model gives a maximum error of 15%. The Newtonian single-phase model and Eulerian-Lagrangian model, overall, are the recommended models. This work can be used as a reference for selecting an appropriate model for future investigation. The study also gives a proper insight into the important factors such as the Brownian motion, fluid behavior parameters and effective nanoparticle conductivity which should be considered or changed by each model.
机译:本研究比较了五种类型的计算流体动力学(CFD)模型的预测,包括两个单相模型(即牛顿和非牛顿)和三个两相模型(欧拉-欧拉,混合和欧拉-拉格朗日)。研究在管壁上具有恒定热通量的管中的铜水纳米流体的湍流强迫对流。流的雷诺数(Re)在10,000和25,000之间,而使用的Cu颗粒的体积分数在0%到2%的范围内。将CFD模型的结果与文献中的实验研究结果进行比较。根据这项研究的结果,一般而言,非牛顿单相模型在Nu数的预测中与Xuan和Li的相关性没有很好的一致性。除φ= 0.5%外,欧拉-欧拉模型给出的结果不准确。混合模型给出的最大误差为15%。推荐使用牛顿单相模型和欧拉-拉格朗日模型。这项工作可以作为选择合适模型以供将来调查的参考。该研究还对每个模型都应考虑或更改的重要因素(例如布朗运动,流体行为参数和有效的纳米粒子电导率)提供了适当的见解。

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