首页> 外文期刊>Journal of thermal analysis and calorimetry >Experimental study on turbulent convective heat transfer of water-based nanofluids containing alumina, copper oxides and silicon carbide nanoparticles
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Experimental study on turbulent convective heat transfer of water-based nanofluids containing alumina, copper oxides and silicon carbide nanoparticles

机译:含铝,氧化铜和碳化硅纳米粒子水基纳米流体湍流对流传热的实验研究

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摘要

Nanofluids are obtained by suspending metallic or non-metallic nanoparticles in conventional base liquids and can be employed to increase heat transfer rate in various applications. In this study, the effects of adding three types of nanofluids on turbulent convective heat transfer at the entrance region of a constant wall heat flux tube were experimentally studied. The nanofluids were mixtures of aluminium oxide, copper oxide, and silicon carbide at various nanoparticle volume fractions ranging from 0.0002 to 0.002 in water. The convective heat transfer coefficient was measured at different Reynolds numbers of 10,000-50,000. At these concentrations and Reynolds numbers, a maximum of 11-18% of convection heat transfer coefficient was observed as compared to the base fluid, showing a 6-9% increase on average. In this study, it was observed that changes in the nanoparticle type had no considerable effect on heat transfer coefficient increase. According to the model proposed here, the dimensionless thickness of laminar sub-layer is specified as a functional equation of the volume fraction of nanoparticles for each material.
机译:通过悬浮在常规基础液中的金属或非金属纳米颗粒悬浮,可以使用纳米流体来获得各种应用中的传热速率。在该研究中,通过实验研究在恒定壁热通量管的入射区的湍流对流热传递上添加三种类型的纳米流体的效果。纳米流体是氧化铝,氧化铜和碳化硅的混合物,各种纳米颗粒体积级分在水中的0.0002至0.002。对流传热系数在10,000-50,000的不同雷诺数测量。在这些浓度和雷诺数中,与基础流体相比,最多观察到对对流传递系数的11-18%,平均增加6-9%。在该研究中,观察到纳米粒子型变化对传热系数没有相当大的影响。根据此处所提出的模型,层状子层的无量纲厚度被指定为每种材料的纳米颗粒的体积分数的功能方程。

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