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Motion of self-rewetting drop on a substrate with a constant temperature gradient

机译:具有恒定温度梯度的衬底上自重润湿下降的运动

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We investigate the dynamics of a self-rewetting drop placed on a substrate with a constant temperature gradient via three-dimensional numerical simulations using a conservative level-set approach to track the interface of the drop. The surface tension of a so-called self-rewetting fluid exhibits a parabolic dependence on temperature with a well-defined minimum. Two distinct drop behaviours, namely deformation and elongation, are observed when it is placed at the location of the minimum surface tension. The drop spreads slightly and reaches a pseudo-steady state in the deformation regime, while it continuously spreads until breakup in the elongation regime. Theoretical models based on the forces exerted on the drop have been developed to predict the critical condition at which the drop undergoes the transition between the two regimes, and the predictions are in good agreement with the numerical results. We also investigate the effect of the initial position of the drop with respect to the location of the minimum surface tension on the spreading and migration dynamics. It is found that, at early times, the migration of the drop obeys an exponential function with time, but it diverges at the later stage due to an increase in the drop deformation.
机译:我们通过三维数值模拟研究了放置在具有恒定温度梯度的衬底上的自增湿液滴的动力学,采用保守水平集方法跟踪液滴的界面。所谓的自增湿流体的表面张力表现出对温度的抛物线依赖性,具有明确定义的最小值。当放置在最小表面张力位置时,观察到两种不同的跌落行为,即变形和伸长。在变形区,液滴轻微扩展并达到伪稳态,而在伸长区,液滴持续扩展直至破裂。建立了基于液滴受力的理论模型,预测了液滴在两种状态之间发生转变的临界条件,预测结果与数值结果吻合良好。我们还研究了液滴初始位置相对于最小表面张力位置对扩散和迁移动力学的影响。研究发现,在早期,液滴的迁移随时间服从指数函数,但在后期,由于液滴变形的增加,它会发生发散。

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