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Effects of depositional nanoparticle wettability on explosive boiling heat transfer: A molecular dynamics study

机译:沉积纳米颗粒润湿性对爆炸沸腾传热的影响:分子动力学研究

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摘要

The depositional nanoparticles have a significant effect on the solid/liquid interaction, which affects the heat transfer rate across the interface. In this paper, molecular dynamics simulations are employed to investigate the explosive boiling behaviors of nanofluids with the depositional nanoparticles, and the varied nanoparticle wettability is analyzed to reveal the mechanism through which depositional nanoparticles affect explosive boiling characteristics. Results show that heat transfer of explosive boiling is enhanced by the depositional nanoparticles, and the improvement in heat transfer increases with the increasing nanoparticle wettability. One of the enhancement mechanism of heat transfer is the increased solid/liquid interaction induced by the depositional nanoparticle, which provides more favorable conditions for heat transfer. Another enhancement mechanism is that the thermal resistance at the solid/liquid interface decreases, resulting in more energy transfer across the solid/liquid interface. Furthermore, the enhancement of heat transfer on the hydrophobic surface is more remarkable than that on the hydrophilic surface.
机译:沉积的纳米颗粒对固/液相互作用具有显着影响,这会影响跨界面的传热速率。本文利用分子动力学模拟研究了沉积纳米颗粒对纳米流体的爆炸沸腾行为,并分析了纳米颗粒的不同润湿性,揭示了沉积纳米颗粒影响爆炸沸腾特性的机理。结果表明,沉积纳米颗粒增强了爆炸沸腾的传热,并且随着纳米颗粒润湿性的提高,传热的改善也随之增加。传热的增强机制之一是由沉积纳米颗粒引起的固/液相互作用的增加,这为传热提供了更有利的条件。另一个增强机制是固/液界面处的热阻降低,从而导致更多的能量通过固/液界面传递。此外,疏水表面上的热传递增强比亲水表面上的热传递更显着。

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