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首页> 外文期刊>Engineering journal >Comparative Study on Convection and Wall Characteristics of Al 2 O 3 -water Nanofluid Flow inside a Miniature Tube
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Comparative Study on Convection and Wall Characteristics of Al 2 O 3 -water Nanofluid Flow inside a Miniature Tube

机译:微型管内Al 2 O 3-水纳米流体对流和壁特性的比较研究

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摘要

Forced convective heat transfer and wall characteristics of nanofluid flow containing Al2O3 nanoparticles and water inside a miniature tube are studied by means of computational fluid dynamic (CFD) code. Problem is solved by employing finite volume approach and using both single-phase (homogeneous) and dispersion models. In both models, constant and temperature-dependent thermophysical properties are used and obtained results are compared with results of other literature. It can be seen as the Reynolds number increases, the Nusselt number improves, too. However, it is accompanied by higher wall shear stress. Moreover, in the case of temperature-dependent properties, lower values for shear stress were obtained. In comparison with experimental data and available theoretical correlations, dispersion model in both temperature-dependent and constant properties shows good agreement. On the other hand, single-phase model employing constant thermophysical properties underestimates the amount of convective heat transfer. Furthermore, it can be observed by increasing the particle volume concentration, not only the wall temperature decreases, also the rate of thermal enhancement decreases slightly. (66 views)
机译:通过计算流体力学(CFD)代码研究了微型管内含Al2O3纳米颗粒和水的纳米流体的强迫对流换热和壁特性。通过采用有限体积方法并使用单相(均质)模型和色散模型可以解决问题。在这两个模型中,均使用了恒定和随温度变化的热物理性质,并将获得的结果与其他文献的结果进行了比较。可以看出,随着雷诺数的增加,努塞尔数的增加。然而,它伴随着较高的壁剪切应力。此外,在温度依赖性的情况下,获得较低的剪切应力值。与实验数据和可用的理论相关性相比较,温度和恒定特性的色散模型显示出良好的一致性。另一方面,采用恒定热物理性质的单相模型低估了对流传热的量。此外,可以通过增加颗粒体积浓度来观察,不仅壁温降低,而且热增强速率也略微降低。 (66意见)

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