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IMPACT OF MICRO-DROPLETS ON SUPERHYDROPHOBIC AND HYDROPHILIC SURFACES

机译:微液滴对超疏水性和亲水性表面的影响

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Ice accretion is a major threat to all exposed structures such as wind turbines, overhead power cables, offshore structures and aircrafts. Such deposition starts by an impact of water droplets of different sizes on the surface of the exposed structure. This work aims to shed more light on the difference in the dynamics occurring upon the impact of microdroplets on substrates with various wettabilities, hydrophilic (aluminum) and Superhydrophobic (Aluminum + WX2100) surfaces. Experiments are conducted on a wide range of diameters, between cloud sized droplets with diameters ranging down to 20μm, and 10 times larger droplets with a diameter of 250 μm. A comparison in the impact (through deformation) results is made all through the wide range and explained using the two extremes. This is done experimentally by analyzing the maximum spread diameter on the hydrophillic surface and superhydrophobic surface and maximum height as a function of time on the hydrophillic surface. Both parameters are visualized experimentally, simulated numerically for the same impact velocities and then results are compared for verification.
机译:IceCuretion是对所有暴露结构的主要威胁,如风力涡轮机,架空电力电缆,海上结构和飞机。这种沉积在暴露结构表面上的不同尺寸的水滴的影响开始。这项工作旨在更轻的差异,在具有各种湿润,亲水(铝)和超疏水(铝+ WX2100)表面上的微型电池对底物上发生的动力学的差异。实验在宽范围的直径范围内进行,在直径下降至20μm的云尺寸液滴之间,并且直径为250μm的液滴的10倍。影响(通过变形)结果的比较全部通过宽范围进行,并使用两个极端解释。这是通过分析所述最大传播直径亲水表面和超疏水性表面和最大高度上的作为时间的亲水性表面上的功能实验完成。两种参数都是通过实验观察的,用于数值上模拟相同的冲击速度,然后比较结果进行验证。

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