首页> 外文期刊>Journal of thermal analysis and calorimetry >Thermal analysis and thermo-hydraulic characteristics of zirconia-water nanofluid under a convective boiling regime
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Thermal analysis and thermo-hydraulic characteristics of zirconia-water nanofluid under a convective boiling regime

机译:对流沸腾制度下氧化锆水纳米流体的热分析和热液压特性

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摘要

In this research, flow boiling heat transfer of zirconia-water nanofluid inside a heat exchanger was experimentally investigated. The system was assessed for heat fluxes ranging from 10 to 150 kW m(-2), inlet temperatures of 323 K to 353 K, mass flow rates of 1-10 kg s(-1) and mass concentrations of mass% = 0.1 to 0.3%. Results showed that the boiling thermal performance and heat transfer coefficient of zirconia nanofluid are plausible and this nanofluid can be utilized as a coolant inside the two-phase heat exchanging systems. However, the pressure drop associated with the use of zirconia nanoparticles suppressed the thermal efficiency of the system. Likewise, particulate fouling was not observed during the experiments and bubble formation was not affected by the deposition of nanoparticles on the boiling surface. At mass% = 0.3, the boiling heat transfer coefficient was improved by 35.8%; however, pressure drop value was also augmented. Likewise, temperature increased the heat transfer coefficient slightly which was attributed to the improvement in the thermo-physical properties of nanofluid such as thermal conductivity.
机译:在该研究中,实验研究了热交换器内氧化锆水纳米流体的流沸热传热。评估系统的热量,范围为10-150 kW m(-2),入口温度为323k至353k,质量流速为1-10kg s(-1),质量浓度为质量%= 0.1 0.3%。结果表明,氧化锆纳米流体的沸腾热性能和传热系数是合理的,并且该纳米流体可以用作两相热交换系统内的冷却剂。然而,与使用氧化锆纳米粒子相关的压降抑制了系统的热效率。同样,在实验期间未观察到颗粒污垢,并且泡沫形成不受纳米颗粒在沸点上的沉积的影响。在质量%= 0.3时,沸腾的传热系数提高了35.8%;但是,压力下降值也增加。同样,温度略微增加了传热系数,这归因于纳米流体的热物理性质如导热率的改善。

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