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The nanoscale Leidenfrost effect

机译:纳米级莱顿弗罗斯特效应

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摘要

Nanoscale evaporation of liquids plays a key role in several applications including cooling, drag reduction and liquid transport. This research investigates the Leidenfrost effect at the nanoscale as a function of substrate material, droplet size and temperature using molecular dynamics models. Water droplets ranging from 4 nm to 20 nm were simulated over gold and silicon substrates at 293 K, 373 K, 473 K, and 573 K. A significant increase in the kinetic energy (>5000 kcal mol(-1)) was observed for molecules in the vicinity of the substrates, indicating the presence of a vapor barrier layer between substrate and liquid. Higher droplet velocities were tracked for hydrophobic gold substrates as compared to hydrophilic silicon substrates indicating the influence of the surface wettability on the Leidenfrost effect. Droplets over silicon substrates had a higher number of fluctuations (peaks and valleys) as compared to gold due to the cyclic behavior of vapor formation. An increase in the interfacial kinetic energies and translatory velocities (>10 m s(-1)) were observed as the droplet sizes reduced confirming the Leidenfrost effect at 373 K. This research provides understanding of the Leidenfrost effect at the nanoscale which can impact several applications in heat transfer and droplet propulsion.
机译:纳米级蒸发的液体中发挥着关键作用在多个应用程序包括冷却、阻力减少和液体运输。调查在莱顿弗罗斯特效应纳米级作为基材的函数,使用分子液滴大小和温度动力学模型。在金和硅20 nm模拟基板在293 K, 373 K, 473 K, 573 K。显著增加的动能(> 5000千卡摩尔(1))是观察到的分子附近的基板,这表示蒸汽屏蔽层之间的存在底物和液体。跟踪了疏水金底吗而亲水性硅基质表明表面的影响润湿性对莱顿弗罗斯特效应。在硅基板有一个更高的数量波动(高峰和低谷)相比黄金由于蒸汽的循环行为形成。能量和平移速度(> 10 m s (1))观察液滴的大小减少了吗证实了在373 K莱顿弗罗斯特效应。研究提供了理解莱顿弗罗斯特效应在纳米尺度上可以多个应用程序在传热和影响液滴推进。

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