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Frequency dependent enhancement of heat transport in a nanofluid with ZnO nanoparticles

机译:ZnO纳米颗粒在纳米流体中热传递的频率依赖性增强

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摘要

In this paper we report an observation of an unusual frequency dependent enhancement of the heat transport parameter (C_pК, C_p = heat capacity and К = thermal conductivity) of a nanofluid containing ZnO nanoparticles of an average size of 10 nm (volume fraction<1.5%) in ethanol. The enhancement of C_pК at low frequency is substantial. C_pК becomes frequency independent at low frequency but it shows a strong dependence on the measuring frequency where it decreases as the frequency is increased. The enhancement also depends on the temperature and also scales with the concentration of ZnO. This frequency dependent thermal conductivity of nanofluids cannot be explained by the classical effective medium theory. A new model has to be developed to explain the above phenomenon. We have suggested local aggregation as the likely cause that may give rise to the observed frequency dependence.
机译:在本文中,我们报告观察到一种平均频率为10 nm(体积分数<1.5%)的包含ZnO纳米流体的纳米流体的传热参数(C_pК,C_p =热容量和К=热导率)的非常规频率依赖性增强)在乙醇中。低频C_pК的增强是实质性的。 C_pК在低频时变得与频率无关,但是它对测量频率有很强的依赖性,随着频率的增加它降低。增强量还取决于温度,并且也随ZnO的浓度成比例。纳米流体的这种与频率有关的热导率不能用经典的有效介质理论来解释。必须开发一种新模型来解释上述现象。我们建议局部聚集是可能引起观察到的频率依赖性的可能原因。

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