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Measurement of the thermal conductivity of nanofluids by the multicurrent hot-wire method

机译:多电流热线法测量纳米流体的热导率

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摘要

We present experimental results of the thermal conductivity of several nanofluids prepared by dispersing nanoparticles of SiO(2) and CuO in water and ethylene glycol at various concentrations up to approximate to 5% in mass fraction. The measurements have been performed by the multicurrent hot-wire technique. Good agreement, within 2%, is found in recommended and published thermal conductivities of the pure fluids. Our experimental technique allows a very accurate determination of the enhancement in the thermal conductivity of the fluids due to the presence of dispersed nanoparticles. Measured enhancements compare well with some of the values published so far in the literature. We have compared our results with simple theoretical models that predict the thermal conductivity of solid suspensions and found that in some cases observed enhancements are several times larger than the predicted ones.
机译:我们目前的实验结果是,通过将SiO(2)和CuO的纳米颗粒分散在水和乙二醇中的各种浓度(最高质量分数约为5%)而制备的几种纳米流体的热导率。测量是通过多电流热线技术进行的。在纯流体的推荐和公开的热导率中发现良好的一致性,在2%以内。我们的实验技术可以非常准确地确定由于存在分散的纳米颗粒而导致流体的导热系数提高的情况。测得的增强效果与文献中迄今已发布的某些值相比具有良好的对比。我们将结果与预测固体悬浮物导热系数的简单理论模型进行了比较,发现在某些情况下观察到的增强作用是预测值的几倍。

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