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The effective thermal conductivity of nanofluids based on the nanolayer and the aggregation of nanoparticles

机译:基于纳米层的纳米流体的有效导热率和纳米颗粒的聚集

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摘要

Nanofluids, which are produced by dispersing nanoparticles into conventional fluids, exhibit anomalously high thermal conductivity. Most experiments demonstrated that the nanolayer surrounding the solid particles and the clusters formed by nanoparticles' aggregation may play an important role in the enhancement of thermal conductivity of nanofluids. By taking into account the nanolayer and nanoparticles' aggregation, a new model for the effective thermal conductivities of nanofluids is proposed. This model is expressed as a function of the thickness of the nanolayer, the nanoparticle size, the nanoparticle volume fraction and the thermal conductivities of suspended nanoparticles and base fluid. The theoretical predictions on the effective thermal conductivities of nanofluids are shown to be in good agreement with the available experimental data.
机译:通过将纳米颗粒分散到常规流体中产生的纳米流体表现出异常高的热导率。大多数实验表明,围绕固体颗粒的纳米层以及由纳米颗粒聚集形成的簇可能在增强纳米流体的导热性中起重要作用。通过考虑纳米层和纳米粒子的聚集,提出了一种有效的纳米流体导热系数的新模型。该模型表示为纳米层的厚度,纳米颗粒尺寸,纳米颗粒体积分数以及悬浮的纳米颗粒和基础流体的热导率的函数。纳米流体的有效热导率的理论预测与现有的实验数据非常吻合。

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