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STABILITY OF THIN FREE LIQUID FILMS AND THE ONSET CONDITIONS FOR FILM RUPTURE - A MD SIMULATION STUDY

机译:薄液膜的稳定性和膜破裂的起始条件-MD模拟研究

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Free liquid films bounded on two sides by vapor are of particular interest in nucleate boiling process because the merging of bubbles is ultimately associated with the rupture of a liquid film separating the vapor inside the bubbles. The stability and conditions for the free film rupture are therefore of central importance to the merging process because they dictate whether coalescence is likely to occur. Most previous studies of free film stability have focused on a continuum model of wave phenomena at the interfaces of the film. In the investigation summarized here, molecular dynamics (MD) simulation was used to explore the stability of free films of liquid argon surrounded by saturated argon vapor. The MD simulations predict that the wave perturbation or density fluctuation induced by the thermodynamic intrinsic instability can lead to rupture of the liquid film, as its thickness decreases below a critical value. It further predicts that the critical film thickness derived from density fluctuation increases with system temperature. These predictions were also compared with those of conventional interface wave perturbation analysis. The result of this investigation suggests that during bubble merging, thermodynamic instability of the liquid phase may play a role in the onset of film rupture as the liquid film separating the bubbles gets progressively thinner.
机译:在蒸汽的两侧,由蒸汽限制在两侧的自由液膜特别受关注,因为气泡的合并最终与将气泡内部的蒸汽分离的液膜的破裂有关。因此,自由膜破裂的稳定性和条件对于合并过程至关重要,因为它们决定是否可能发生合并。以前有关自由膜稳定性的大多数研究都集中在膜界面处的波动现象的连续模型上。在这里总结的研究中,使用分子动力学(MD)模拟来探索被饱和氩蒸气包围的液态氩自由膜的稳定性。 MD模拟预测,由热力学固有不稳定性引起的波扰动或密度波动会导致液膜破裂,因为液膜的厚度减小到临界值以下。它进一步预测,由密度波动引起的临界膜厚度会随着系统温度的增加而增加。这些预测结果也与常规界面波扰动分析的结果进行了比较。该研究的结果表明,在气泡合并期间,随着分离气泡的液膜逐渐变薄,液相的热力学不稳定性可能在膜破裂的发生中起作用。

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