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Measurements and correlations of frictional pressure drop of TiO_2/R123 flow boiling inside a horizontal smooth tube

机译:TiO_2 / R123在水平光管内沸腾的摩擦压降的测量与相关性

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Nanorefrigerant is one kind of nanofluids. It is the mixture of nanoparticles with refrigerants. It has better heat transfer performance than traditional refrigerants. Recently, some researches have been done about nanorefrigerants. Most of them are related to thermal conductivity of these fluids. Viscosity also deserves as much consideration as thermal conductivity. Pumping power and pressure drop depend on viscosity. In this paper, the volumetric and temperature effects over viscosity of TiO_2/R123 nanorefrigerants have been studied. Numerical conditions include temperature from 300 to 325 K, nanoparticle concentrations from 0.5% up to 2%, mass fluxes from 150 to 200 kg m~(-2) s~(-1), inlet vapor qualities from 0.2 to 0.7 and diameter of tube from 6 to 10 mm. The effect of pressure drop with the increase of viscosity has also been investigated. Based on the analysis it is found that viscosity of nanorefrigerant increased accordingly with the increase of nanoparticle volume concentrations and decreases with the increment of temperature. Furthermore, pressure drop augmented significantly with the intensification of volume concentrations and vapor quality. Therefore, low volume concentrations of nanorefrigerant are suggested for better performance of a refrigeration system.
机译:纳米制冷剂是一种纳米流体。它是纳米颗粒与制冷剂的混合物。它具有比传统制冷剂更好的传热性能。最近,已经对纳米制冷剂进行了一些研究。它们中的大多数与这些流体的热导率有关。粘度也应像导热系数一样值得考虑。泵送功率和压降取决于粘度。本文研究了TiO_2 / R123纳米制冷剂的体积和温度对粘度的影响。数值条件包括300至325 K的温度,0.5%至2%的纳米粒子浓度,150至200 kg m〜(-2)s〜(-1)的质量通量,0.2至0.7的入口蒸汽质量以及管从6到10毫米。还研究了压降随粘度增加的影响。基于该分析,发现纳米制冷剂的粘度随纳米颗粒体积浓度的增加而相应增加,并随温度的升高而降低。此外,随着体积浓度和蒸气质量的增强,压降显着增加。因此,建议使用低体积浓度的纳米制冷剂以提高制冷系统的性能。

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