首页> 外文期刊>Journal of Heat Transfer >Experimental Investigation of Turbulent Convective Heat Transfer and Pressure Loss of Alumina/Water and Zirconia/Water Nanoparticle Colloids (Nanofluids) in Horizontal Tubes
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Experimental Investigation of Turbulent Convective Heat Transfer and Pressure Loss of Alumina/Water and Zirconia/Water Nanoparticle Colloids (Nanofluids) in Horizontal Tubes

机译:水平管中氧化铝/水和氧化锆/水纳米颗粒胶体(纳米流体)的湍流对流换热和压力损失的实验研究

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摘要

The turbulent convective heat transfer behavior of alumina (Al_2O_3) and zirconia (ZrO_2) nanoparticle dispersions in water is investigated experimentally in a flow loop with a horizontal tube test section at various flow rates (9000 < Re < 63,000), temperatures (21-76℃), heat fluxes (up to ~190kW/m~2), and particle concentrations (0.9-3.6 vol % and 0.2-0.9 vol % for Al_2O_3 and ZrO_2, respectively). The experimental data are compared to predictions made using the traditional single-phase convective heat transfer and viscous pressure loss correlations for fully developed turbulent flow, Dittus-Boelter, and Blasius/MacAdams, respectively. It is shown that if the measured temperature- and loading-dependent thermal conductivities and viscosities of the nanofluids are used in calculating the Reynolds, Prandtl, and Nusselt numbers, the existing correlations accurately reproduce the convective heat transfer and viscous pressure loss behavior in tubes. Therefore, no abnormal heat transfer enhancement was observed in this study.
机译:在带有水平管测试段的流动回路中,在各种流速(9000

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