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3D Numerical Study of the Transport Characteristics of an Evaporating Water Droplet Sessile on Heated Superhydrophobic Substrates

机译:蒸发水滴在加热的超疏水基质上的传输特性的3D数值研究

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Evaporation of sessile droplets on superhydrophobic substrates is an important fundamental problem. Classic diffusion-based model only considers vapor diffusion and assumes an isothermal profile along the droplet interface. The diffusion based model extremely overestimates the evaporation rate for droplets evaporating on heated superhydrophobic substrates, and results in a deviation of evaporation lifetime up to 52.5%. The present 3D numerical model considers various effects including vapor diffusion, buoyancy-driven flow and evaporative cooling, etc., with conjugate heat and mass transfer solved throughout the computational domain. Evaporation of a sessile water droplet with an initial volume of 3 μL is investigated on superhydrophobic substrates (contact angle: 160 deg) with heating temperature ranging from 40 °C to 60 °C. The deviation of evaporation lifetime is less than 2% for 40 °C and 50 °C substrates. A single-roll asymmetric vortex is produced inside the droplet rather than the symmetric recirculation flow predicted by 2D axisymmetric simulation. 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 asymmetrical rolling flow inside the droplet. It is seen that the buoyancy-driven convection significantly speeds up the evaporation as the substrate temperature increases. Influence of relative humidity is also discussed and indicates a stronger impact for low substrate temperature. The present model not only precisely predicts the instantaneous evaporation rate and the total evaporation time, but also reveals the important underlying transport characteristics, which provides new insights into evaporation of water droplets resting on heated superhydrophobic substrates.
机译:在超疏水性基底上无蒂液滴的蒸发是一个重要的基本问题。基于经典扩散的模型仅考虑蒸气扩散,并假设沿液滴界面的等温曲线。基于扩散的模型极大地高估了在加热的超疏水性基材上蒸发的液滴的蒸发速率,导致蒸发寿命的偏差高达52.5%。本3D数值模型考虑了各种影响,包括蒸汽扩散,浮力驱动的流动和蒸发冷却等,并在整个计算域中解决了共轭传热和传质问题。在加热温度为40°C至60°C的超疏水性基质(接触角:160度)上研究了初始体积为3μL的无蒂水滴的蒸发。对于40°C和50°C的基板,蒸发寿命的偏差小于2%。液滴内部会产生单辊非对称涡流,而不是二维轴对称模拟所预测的对称再循环流。观察到沿液滴界面的蒸发冷却,但是由于液滴内部的不对称滚动流,最凉的点出现在液滴的一侧而不是液滴顶部。可以看出,随着衬底温度的升高,浮力驱动的对流显着加快了蒸发速度。还讨论了相对湿度的影响,并表明对较低的基板温度有更强的影响。本模型不仅精确地预测了瞬时蒸发速率和总蒸发时间,而且揭示了重要的潜在运输特征,这为停留在加热的超疏水基质上的水滴的蒸发提供了新的见识。

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