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Intriguingly high thermal conductivity increment for CuO nanowires contained nanofluids with low viscosity

机译:有趣的是CuO纳米线的高导热率增量包含低粘度的纳米流体

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摘要

Nanofluids offer the exciting new possibilities to enhance heat transfer performance. In this paper, experimental and theoretical investigations have been conducted to determine the effect of CuO nanowires on the thermal conductivity and viscosity of dimethicone based nanofluids. The CuO nanowires were prepared through a thermal oxidation method, and the analysis indicated that the as-prepared CuO nanowires had high purity, monocrystalline with a monoclinic structure and large aspect ratio compared to CuO nanospheres. The experimental data show that the thermal conductivity of the nanofluids increases with the volume fraction of CuO nanowires or nanospheres, with a nearly linear relationship. For the nanofluid with the addition of 0.75 vol.% CuO nanowires, the thermal conductivity enhancement is up to 60.78%, which is much higher than that with spherical CuO nanoparticles. The nanofluids exhibit typical Newtonian behavior, and the measured viscosity of CuO nanowires contained nanofluids were found only 6.41% increment at the volume fraction of 0.75%. It is attractive in enhanced heat transfer for application. The thermal conductivity and viscosity of CuO nanofluids were further calculated and discussed by comparing our experimental results with the classic theoretical models. The mechanisms of thermal conductivity and viscosity about nanofluids were also discussed in detail.
机译:纳米流体为增强传热性能提供了令人兴奋的新可能性。在本文中,进行了实验和理论研究,以确定CuO纳米线对聚二甲基硅氧烷基纳米流体的热导率和粘度的影响。通过热氧化法制备了CuO纳米线,分析表明,与CuO纳米球相比,所制备的CuO纳米线具有高纯度,单晶,单斜晶结构和大长径比。实验数据表明,纳米流体的热导率随CuO纳米线或纳米球的体积分数的增加而增加,并呈线性关系。对于添加了0.75 vol。%CuO纳米线的纳米流体,其导热系数提高了60.78%,远远高于球形CuO纳米粒子。纳米流体表现出典型的牛顿行为,并且在0.75%的体积分数下,测得的包含纳米流体的CuO纳米线的粘度仅增加了6.41%。它在增强热传递方面很有吸引力。通过将我们的实验结果与经典理论模型进行比较,进一步计算和讨论了CuO纳米流体的热导率和粘度。还详细讨论了纳米流体的导热率和粘度机理。

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