首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Experimental investigation of convective heat transfer and friction factor of Al_2o_3/water nanofluid in helically corrugated tube
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Experimental investigation of convective heat transfer and friction factor of Al_2o_3/water nanofluid in helically corrugated tube

机译:螺旋波纹管中Al_2o_3 /水纳米流体对流换热和摩擦系数的实验研究

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摘要

The effect of nanoparticles and helical corrugation on turbulent heat transfer and dimensionless friction factor were experimentally investigated. Thermal conductivity and viscosity of nanofluids with various volume fractions were experimentally measured at different temperatures. Reynolds number and nanoparticle concentration varied from 5000 to 20,000 and 0% to 1% by volume, respectively. Nusselt number and friction factor of nanofluids were obtained for different concentrations as well as various Reynolds and Prandtl numbers. Results show that the heat transfer and friction factor increase by increasing nanofluid concentrations in plain and helical corrugated tube while its effect are more significant in helical corrugated tubes. The effect of nanoparticles on heat transfer is intensified at higher corrugation height and smaller corrugation pitch. Heat transfer enhancement at same pumping power, heat transfer performance, have been improved by increasing the nanoparticles concentration not as well as by increasing the corrugation height or reducing the corrugation pitch.
机译:实验研究了纳米颗粒和螺旋波纹对湍流传热和无量纲摩擦系数的影响。在不同温度下,通过实验测量了具有不同体积分数的纳米流体的导热系数和粘度。雷诺数和纳米粒子的浓度分别为5000至20,000和0%至1%(体积)。获得了不同浓度以及各种雷诺数和普朗特数的纳米流体的努塞尔数和摩擦系数。结果表明,通过增加平流和螺旋波纹管中纳米流体的浓度,传热和摩擦因数增加,而在螺旋波纹管中,其影响更为显着。在较高的波纹高度和较小的波纹间距下,纳米颗粒对热传递的影响增强。通过增加纳米颗粒的浓度而不是通过增加波纹高度或减小波纹间距来改善在相同泵送功率,传热性能下的传热增强。

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