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Effect of nanostructured surface configuration on evaporation and condensation characteristics of thin film liquid argon in a nano-scale confinement

机译:纳米结构化表面构造对纳米凝固中薄膜液体氩气蒸发和冷凝特性的影响

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Molecular dynamics simulation has been carried out to go through the evaporation and condensation characteristics of thin liquid argon film in nanoscale confinement having nanostructured boundary. Nanoscale confinement under consideration consists of hot and cold parallel platinum plates at the bottom and top end of a model cuboid inside which the fluid domain comprised of liquid argon film at the bottom plate and vapor argon in between liquid argon and upper plate of the confinement. Three different confinement configurations have been considered here: (i) Both platinum plates are flat, (ii) Upper plate consisting of transverse slots and (iii) Both plates consisting of transverse slots. The height of the slots is 1.5 nm. Considering hydrophilic nature of top and bottom plates, two different high temperatures of the hot wall was set and an observation was made. For all the structures, equilibrium molecular dynamics (EMD) was performed to reach equilibrium state at 90 K. Then the lower wall is set to two different temperatures like 110 K and 250 K for all three models to perform non-equilibrium molecular dynamics (NEMD). Various system characteristics such as atomic distribution, wall heat flux, evaporative mass flux etc. have been obtained and discussed to have a clear understanding of the effect of nanotextured surface on phase change phenomena.
机译:已经进行了分子动力学模拟,以通过具有纳米结构边界的纳米尺度限制中薄液体氩膜的蒸发和冷凝特性。所考虑的纳米级限制由在其中流体域在底板和蒸气氩在液体氩和约束的上板之间由液体氩膜的模型长方体内的底部和顶部端冷热平行铂板。这里考虑了三种不同的限制配置:(i)铂板两者是平板,(ii)由横向槽组成的(iii)由横槽组成的两个板组成。插槽的高度为1.5 nm。考虑到顶板和底板的亲水性,设定了热壁的两个不同的高温,并进行了观察。对于所有的结构中,平衡分子动力学(EMD)的混合物在90 K.然后下壁被设置为两个不同的温度像110 K和250 K中所有三个模型来执行非平衡分子动力学(NEMD进行达到平衡状态)。已经获得了各种系统特性,例如原子分布,壁热通量,蒸发质量磁通量等,并讨论以清楚地了解纳米纹理表面对相变现象的影响。

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