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Numerical simulation of dip-coating in the evaporative regime

机译:蒸发状态下浸涂的数值模拟

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A hydrodynamic model is used for numerical simulations of a polymer solution in a dip-coating-like experiment. We focus on the regime of small capillary numbers where the liquid flow is driven by evaporation, in contrast to the well-known Landau-Levich regime dominated by viscous forces. Lubrication approximation is used to describe the flow in the liquid phase. Evaporation in stagnant air is considered (diffusion-limited evaporation), which results in a coupling between liquid and gas phases. Self-patterning due to the solutal Marangoni effect is observed for some ranges of the control parameters. We first investigate the effect of evaporation rate on the deposit morphology. Then the role of the spatial variations in the evaporative flux on the wavelength and mean thickness of the dried deposit is ascertained, by comparing the 2D and 1D diffusion models for the gas phase. Finally, for the very low substrate velocities, we discuss the relative importance of diffusive and advective components of the polymer flux, and consequences on the choice of the boundary conditions.
机译:在类似浸涂的实验中,将流体力学模型用于聚合物溶液的数值模拟。与以粘性力为主的著名的Landau-Levich体制相反,我们关注的是小毛细管数的体制,在这种体制下,液体的流动是由蒸发驱动的。润滑近似用于描述液相中的流量。考虑了停滞空气中的蒸发(扩散受限的蒸发),这导致液相和气相之间的耦合。在某些范围的控制参数中,观察到由于溶解的马兰戈尼效应引起的自构图。我们首先研究蒸发速率对沉积物形态的影响。然后,通过比较气相的2D和1D扩散模型,确定蒸发通量的空间变化对干燥沉积物的波长和平均厚度的作用。最后,对于极低的底物速度,我们讨论了聚合物助熔剂中扩散和对流成分的相对重要性,以及对边界条件选择的影响。

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