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首页> 外文期刊>Heat Transfer Asian Research >The Study of Laminar Convective Heat Transfer of CuO/Water Nanofluid Through an Equilateral Triangular Duct at Constant Wall Heat Flux
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The Study of Laminar Convective Heat Transfer of CuO/Water Nanofluid Through an Equilateral Triangular Duct at Constant Wall Heat Flux

机译:恒定壁热通量下CuO /水纳米流体通过等边三角形管道的层流对流换热研究

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摘要

The present paper focuses on the heat transfer of an equilateral triangular duct by employing the CuO/water nanofluid in a laminar flow and under constant heat flux condition. The triangular ducts were used due to their ease of creation and high compaction. They have less pressure drop when compared to the circular and non-circular ducts and their other attributes are very useful in industrial applications. These reasons cause their heat transfer characteristics to be very important. In this paper, to improve the heat transfer of an equilateral triangular duct, a CuO/water nanofluid was employed. The nanofluid was conducted through an equilateral triangular duct with a constant wall heat flux. Results show that the experimental heat transfer coefficient of the CuO/water nanofluid is more than that of distilled water. Also, the experimental heat transfer coefficient of a CuO/water nanofluid is greater than the theoretical one. The heat transfer enhancement of the equilateral triangular duct increases with the nanofluid volume concentration as well as the Peclet number. So a 41 % enhancement in the convective heat transfer coefficient for a 0.8% CuO/water nanofluid can be seen when compared to pure water.
机译:本文通过在层流中并在恒定热通量条件下采用CuO /水纳米流体,研究等边三角形导管的传热。使用三角形风管是由于其易于制造和高度压实。与圆形和非圆形管道相比,它们的压降较小,并且它们的其他属性在工业应用中非常有用。这些原因使得它们的传热特性非常重要。在本文中,为了改善等边三角形导管的传热,采用了CuO /水纳米流体。通过具有恒定壁热通量的等边三角形导管引导纳米流体。结果表明,CuO /水纳米流体的实验传热系数大于蒸馏水。而且,CuO /水纳米流体的实验传热系数大于理论值。等边三角形导管的传热增强随着纳米流体体积浓度以及佩克雷特数的增加而增加。因此,与纯水相比,对于0.8%CuO /水纳米流体,对流传热系数提高了41%。

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