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An investigation of layering phenomenon at the liquid-solid interface in Cu and CuO based nanofluids

机译:Cu和CuO基纳米流体在液-固界面处的分层现象研究

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摘要

In this paper a critical investigation of layering phenomenon has been carried out, by means of experimental and numerical analyses, to explain the differences in thermal conductivity between nanofluids based on metal (Cu) and metal oxide (CuO) nanoparticles. Particularly, molecular dynamics simulations have been developed to investigate the adsorption of water molecules surrounding Cu and CuO nanoparticles of various sizes. Furthermore, different volume concentrations of nanoparticles in water have been analyzed. The numerical results revealed two shell-like formations of water molecules (layers) close to the Cu nanoparticle surface, differently from CuO nanoparticle, where no significant layering phenomenon has been observed. This result can explain the higher thermal conductivity of Cu-based nanofluid with respect to CuO-based one, which has been experimentally measured. The numerical and experimental results lead to the conclusion that layers of ordered water molecules surrounding metal nanoparticles play an important role in explaining experimental data of nanofluid thermal conductivity.
机译:本文通过实验和数值分析对分层现象进行了严格的研究,以解释基于金属(Cu)和金属氧化物(CuO)纳米粒子的纳米流体之间的热导率差异。特别地,已经开发了分子动力学模拟以研究各种尺寸的Cu和CuO纳米粒子周围水分子的吸附。此外,已经分析了水中纳米颗粒的不同体积浓度。数值结果表明,与CuO纳米颗粒不同,在Cu纳米颗粒表面附近有两个壳状的水分子(层)形成,没有观察到明显的分层现象。该结果可以解释相对于CuO基纳米流体,Cu基纳米流体具有更高的热导率,这已经通过实验进行了测量。数值和实验结果得出结论:围绕金属纳米粒子的有序水分子层在解释纳米流体导热系数的实验数据中起着重要作用。

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