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An experimental investigation on heat transfer characteristics of graphite- SiO_2/water hybrid nanofluid flow in horizontal tube with various quad- channel twisted tape inserts

机译:带有四通道扭曲带状插入件的水平管中石墨-SiO_2 /水杂化纳米流体流的传热特性的实验研究

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摘要

Turbulent heat transfer characteristics of Graphite-SiO2/Water hybrid nanofluid flow in a horizontal smooth tube with and without quad-channel twisted tape (QCTT) inserts is investigated experimentally. The hybrid nanofluid is obtained using two different nanoparticles: Siliciumdioxid (60%) and Graphite (40%) with pure water as base fluid. Experiments are conducted for two different volume concentrations, 0.5% and 1%, respectively. The length of quad-channel twist tape inserts are between 0 and 42 cm with constant twist ratios of 5. The Reynolds number is varied from 3400 to 11,000. According to the results, Nusselt number of the case with hybrid nanofluid increased with increasing mass flow rate and volume concentration. Also, heat transfer coefficient increased with increasing length of twisted tape insert. Moreover, friction factor increases with increasing volume concentration for increasing Reynolds number whereas and friction factor increases with increasing the length of tape inserts. Pressure drop increases with increasing mass flow rate and increasing volume concentration. Finally, the regression equations are found to be well-matched with the experimental data within the deviation band of +/- 5% for Nusselt number and +/- 10% for friction factor, respectively.
机译:实验研究了在有和没有四通道扭曲带(QCTT)插入物的水平光滑管中石墨-SiO2 /水杂化纳米流体的湍流传热特性。杂化纳米流体是使用两种不同的纳米颗粒获得的:二氧化硅(60%)和石墨(40%),以纯水为基础液。针对两种不同的体积浓度分别进行实验,分别为0.5%和1%。四通道扭曲带插入物的长度在0到42厘米之间,扭曲比恒定为5。雷诺数从3400到11,000不等。根据结果​​,随着质量流率和体积浓度的增加,具有混合纳米流体的情况的Nusselt数增加。而且,传热系数随着扭曲带插入物的长度的增加而增加。而且,摩擦因数随体积浓度的增加而增加,从而增加雷诺数,而摩擦因数随带插入物的长度增加而增加。压降随着质量流量的增加和体积浓度的增加而增加。最后,发现回归方程分别与Nusselt数+/- 5%和摩擦系数+/- 10%的偏差带内的实验数据完全匹配。

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