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Role of inter-facial surfactant layers in the thermal conductivity of nanofluids

机译:面部内表面活性剂层在纳米流体的导热率中的作用

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Various mechanisms and correlations have been developed for prediction of thermal conductivity of nano-suspensions. However, seldom theoretical researches on thermal conductivity of nanofluids containing surfactant are found. In this work, a thermal conductivity prediction-model of nanofiuid containing surfactants is proposed based on Leong et al.'s model and Langmuir adsorption theory by considering the interfacial surfactant layers. The thickness of the interfacial layer is defined by Langmuir adsorption theory. Compared with the experimental data available in the literature on thermal conductivity of nanofiuid containing surfactants, the calculated values on the proposed model have been verified that the proposed models show reasonably good agreement with the experimental results and give better predictions for the effective thermal conductivity of nanofluids compared to existing classical models.
机译:已经开发了各种机制和相关性以预测纳米悬浮液的导热率。然而,发现,发现含有表面活性剂的纳米流体的导热率的很少理论研究。在这项工作中,基于Leong等人的模型和Langmuir吸附理论提出了纳米硫醚表面活性剂的热导电预测模型。通过考虑界面表面活性剂层。界面层的厚度由Langmuir吸附理论限定。与含纳米硫醚的热导率的文献中可用的实验数据相比,所提出的模型的计算值已经证实,所提出的模型与实验结果表明合理良好的一致性,并为纳米流体的有效导热率提供更好的预测与现有的经典模型相比。

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