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The Impact of the Electric Field on Surface Condensation of Water Vapor: Insight from Molecular Dynamics Simulation

机译:电场对水蒸气表面凝结的影响:分子动力学模拟的启示

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摘要

In this study, molecular dynamics simulations were carried out to study the coupling effect of electric field strength and surface wettability on the condensation process of water vapor. Our results show that an electric field can rotate water molecules upward and restrict condensation. Formed clusters are stretched to become columns above the threshold strength of the field, causing the condensation rate to drop quickly. The enhancement of surface attraction force boosts the rearrangement of water molecules adjacent to the surface and exaggerates the threshold value for shape transformation. In addition, the contact area between clusters and the surface increases with increasing amounts of surface attraction force, which raises the condensation efficiency. Thus, the condensation rate of water vapor on a surface under an electric field is determined by competition between intermolecular forces from the electric field and the surface.
机译:在这项研究中,进行了分子动力学模拟,以研究电场强度和表面润湿性对水蒸气冷凝过程的耦合作用。我们的结果表明,电场可使水分子向上旋转并限制凝结。形成的团簇被拉伸成为高于电场阈值强度的圆柱,从而导致凝结率迅速下降。表面吸引力的增强促进了与表面相邻的水分子的重排,并夸大了形状转换的阈值。另外,簇与表面之间的接触面积随着表面吸引力的增加而增加,这提高了冷凝效率。因此,电场下的表面上的水蒸气的凝结率取决于来自电场的分子间力与表面之间的竞争。

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