首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Non-axis-Symmetric Transport Characteristics of an Evaporating Water Droplet Sessile on Heated Horizontal Superhydrophobic Substrates
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Non-axis-Symmetric Transport Characteristics of an Evaporating Water Droplet Sessile on Heated Horizontal Superhydrophobic Substrates

机译:加热水平超疏水基材上蒸发水滴术的非轴对称传输特性

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Evaporation of sessile droplets is an important fundamental problem. The present three-dimensional numerical model considers various effects including vapor diffusion, buoyancy-driven flow, and evaporative cooling, with conjugate heat and mass transfer solved throughout the computational domain. Evaporation of a sessile water droplet with an initial volume of 3 mu L is investigated on heated horizontal superhydrophobic substrates. A non-axis-symmetric rolling flow is presented inside the droplet rather than the axis-symmetric recirculation flow predicted by a two-dimensional axisymmetric model. This is because the axis-symmetric flow is not stable on heated superhydrophobic substrate and sensitive to any perturbations. The evaporative cooling along the droplet interface is observed, but the coolest point appears on the one side of the droplet instead of the droplet top owing to the rolling flow inside the droplet. Influence of relative humidity is also discussed and it indicates a stronger impact on substrates with relatively lower temperature. The present numerical study reveals the important underlying transport characteristics, which provides new insights into evaporation of water droplets resting on heated horizontal superhydrophobic substrates.
机译:蒸发术液滴是一个重要的根本问题。本三维数值模型考虑了各种效果,包括蒸汽扩散,浮力驱动的流动和蒸发冷却,共轭热量和在整个计算结构域中解决的质量传递。在加热的水平超疏水基材上研究了初始体积的初始体积为3μl的术滴灌。非轴对称滚动流量在液滴内呈现而不是由二维轴对称模型预测的轴对称再循环流程。这是因为轴对称流量在加热的超疏水衬底上不稳定,并且对任何扰动敏感。观察沿液滴接口的蒸发冷却,但由于液滴内部的滚动流动,最圆点在液滴的一侧而不是液滴顶部。还讨论了相对湿度的影响,表明对具有相对较低温度的基材的较强的影响。本数值研究揭示了重要的潜在的运输特性,这为在加热水平超疏水基材上蒸发的水滴蒸发提供了新的洞察力。

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