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A theoretical model for nucleate boiling of nanofluids considering the nanoparticle Brownian motion in liquid microlayer

机译:考虑液体微层中纳米粒子布朗运动的纳米流体成核沸腾的理论模型

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摘要

The forming of a porous layer of deposited nanoparticles on the heater surface is one of the unique phenomena in nucleate boiling of nanofluids. As the deposition of nanoparticles is induced by the evaporation of liquid microlayer, the average nanoparticle concentration in the microlayer is much higher than that in the bulk liquid. Therefore, the Brownian motion of nanoparticles in the microlayer may play an important role in dissipating heat from the heater surface. In this study, a new heat flux partitioning (HFP) model was proposed, in which a new heat flux component was incorporated to account for the heat transfer by nanoparticle Brownian motion in the liquid microlayer. The new heat flux component was formulated based on the latest experimental and theoretical research outcomes of microlayer evaporation. Comparison of the numerical results against the experimental data available in the literature proved that the new HFP model performs better than the classic HFP model. This study also demonstrated that the importance of nanoparticle Brownian motion is mainly controlled by the applied heat flux as it directly affects the number density of active sites on the heater surface. Finally, the effects of nanoparticle concentration, size and materials were also analyzed.
机译:加热器表面沉积纳米颗粒的多孔层的形成是纳米流体成核沸腾的独特现象之一。由于通过液体微层的蒸发诱导纳米颗粒的沉积,因此微层中的平均纳米颗粒浓度远高于本体液体中的平均浓度。因此,纳米颗粒在微层中的布朗运动可能在散发加热器表面的热量中起重要作用。在这项研究中,提出了一种新的热通量分配(HFP)模型,其中并入了一个新的热通量分量,以解决液体微层中纳米粒子布朗运动引起的热传递。根据最新的微层蒸发实验和理论研究成果,制定了新的热通量成分。将数值结果与文献中的实验数据进行比较证明,新的HFP模型的性能优于经典的HFP模型。这项研究还表明,纳米粒子布朗运动的重要性主要受所施加的热通量控制,因为它直接影响加热器表面活性部位的数量密度。最后,还分析了纳米粒子浓度,大小和材料的影响。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2015年第12期|467-476|共10页
  • 作者单位

    School of Aerospace, Mechanical and Manufacturing Engineering, RMIT University, PO Box 71, Bundoora, VIC 3083, Australia;

    School of Aerospace, Mechanical and Manufacturing Engineering, RMIT University, PO Box 71, Bundoora, VIC 3083, Australia;

    School of Aerospace, Mechanical and Manufacturing Engineering, RMIT University, PO Box 71, Bundoora, VIC 3083, Australia ,Key Laboratory of Ministry of Education for Advanced Reactor Engineering and Safety, Institute of Nuclear and New Energy Technology, Tsinghua University, PO Box 1021, Beijing 100086, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nanofluids; Nucleate boiling; Heat flux partitioning; Brownian motion; Microlayer;

    机译:纳米流体;核沸腾;热通量分配;布朗运动微层;

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