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An experimental investigation of heat of vaporization of nanofluids

机译:纳米流体汽化热的实验研究

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This paper is devoted to measurement and prediction of the saturated flow boiling of nanofluids. In this regard, pressuretemperature variations at saturation conditions are experimentally investigated for different types of water-based nanofluids with variable volume fractions of nanoparticles. By using measured saturation temperature/pressure data as well as Clasius-Clapeyron equation, latent heat of evaporation (LHE) of nanofluids is determined and compared with that of pure water. Results of this study reveal that addition of nanoparticles to water can increase or decrease LHE depending on the type and concentration of nanoparticles and the saturation temperature. A maximum 48.7% increase in the LHE of water is achieved by adding 0.3 vol% of TiO2 nanoparticles. Based on the experimental data, a correlation for the prediction of LHE of nanofluids is also proposed.
机译:本文致力于测量和预测纳米流体的饱和流沸腾。 在这方面,针对具有纳米颗粒的可变体积分数的不同类型的水基纳米流体实验研究了饱和度条件的压力温度变化。 通过使用测量的饱和温度/压力数据以及Clasius-Clapyyron方程,确定纳米流体的蒸发(LHE)的潜热,并与纯水的蒸发热加热。 该研究的结果表明,根据纳米颗粒的类型和浓度和饱和温度,将纳米颗粒添加到水中可以增加或减少。 通过加入0.3体积%的TiO2纳米颗粒来实现水的最大48.7%。 基于实验数据,还提出了对纳米流体的LHE预测的相关性。

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