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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >A molecular dynamics simulation of liquid-vapour-solid system near triple-phase contact line of flow boiling in a microchannel
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A molecular dynamics simulation of liquid-vapour-solid system near triple-phase contact line of flow boiling in a microchannel

机译:微通道内流沸腾三相接触线附近液-气-固系统的分子动力学模拟

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摘要

In this paper, the liquid-vapour-solid system near triple-phase contact line in a microchannel heat sink is studied numerically. Molecular dynamics (MD) method is employed aiming to get a microscopic insight into the complex liquid-vapour-solid system. In the present model, the Lennard-Jones potential is applied to mono-atomic molecules of argon as liquid and vapour, and platinum as solid substrates, to perform a simulation of non-equilibrium molecular dynamics. The results of numerical simulation suggest that for a completely wetting system of mono-atomic fluid and substrates, there is a non-evaporating liquid film with thickness in nanometres existing on the heating solid surface. The film thickness in the triple-phase contact line under different conditions of substrate temperature is predicted. The thickness of such an ultra-thin liquid film varies only slightly with the number of argon molecules but decreases with the increase of heating substrate temperature. The potential energy in the thin liquid film decreases considerably toward the heating wall; this indicates that the interactions of solid and liquid molecules are very strong.
机译:本文对微通道散热器中三相接触线附近的液-气-固体系进行了数值研究。采用分子动力学(MD)方法旨在从微观上洞悉复杂的液-气-固系统。在本模型中,将Lennard-Jones势应用于作为液体和蒸气的氩原子和作为固体基质的铂的单原子分子,以模拟非平衡分子动力学。数值模拟结果表明,对于单原子流体和基底的完全润湿系统,在加热的固体表面上存在厚度为纳米的非蒸发液膜。预测了在基板温度不同的条件下三相接触线的膜厚。这种超薄液膜的厚度仅随着氩分子的数量而略有变化,但是随着加热基板温度的升高而减小。薄液膜中的势能朝着加热壁显着降低。这表明固体和液体分子之间的相互作用非常强。

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