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Thermal conductivity and molecular heat transport of nanofluids

机译:纳米流体的导热系和分子热传输

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摘要

Fluid media such as water and ethylene glycol are usually quite poor conductors of heat. Nanoparticles can improve the thermal properties of fluids in a remarkable manner. Despite a plethora of experimental and theoretical studies, the underlying physics of heat transport in nanofluids is not yet well understood. Furthermore, the link between nanoscale energy transport and bulk properties of nanofluids is not fully established. This paper presents a thermal conductivity model, encapsulating solid-liquid interfacial thermal resistance, particle shape factor and the variation of thermal conductivity across a physisorbed fluidic layer on a nanoparticle surface. The developed model for thermal conductivity integrates the interfacial Kapitza resistance, the characteristics of a nanolayer, convective diffusion and surface energy with capillary condensation. In addition, the thickness of the nanolayer is predicted using the Brunauer-Emmett-Teller (BET) isotherms and micro/nano-menisci generated pressures of condensation. Such a comprehensive model for thermal conductivity of nanoparticles and systematic study has not hitherto been reported in the literature. The thermal conductivity model is evaluated using experimental data available in open literature.
机译:诸如水和乙二醇的流体介质通常是相当差的热量。纳米颗粒可以以显着的方式改善流体的热性质。尽管有过多的实验和理论研究,但纳米流体的热输送物理学尚未充分理解。此外,纳米流体的纳米级能量传输与纳米流体的块状性质之间的联系不完全建立。本文呈现了热导率模型,封装了固体液体界面热阻,颗粒形因子,在纳米颗粒表面上的物质吸收流体层上的导热率的变化。用于导热率的开发模型与毛细血管缩合相结合了界面Kapitza电阻,纳米层,对流扩散和表面能的特性。另外,使用Brunauer-Emmett-Teller(BET)等温线和微/纳米纤细的凝结压力来预测纳米层的厚度。这种纳米颗粒的热导率和系统研究的这种综合模型并未在文献中报道。使用开放文献中可用的实验数据评估导热模型。

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  • 来源
    《RSC Advances 》 |2019年第5期| 共9页
  • 作者单位

    Loughborough Univ Wolfson Sch Mech Elect &

    Mfg Engn Loughborough LE11 3TU Leics England;

    Loughborough Univ Wolfson Sch Mech Elect &

    Mfg Engn Loughborough LE11 3TU Leics England;

    Loughborough Univ Wolfson Sch Mech Elect &

    Mfg Engn Loughborough LE11 3TU Leics England;

    Loughborough Univ Wolfson Sch Mech Elect &

    Mfg Engn Loughborough LE11 3TU Leics England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
  • 关键词

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