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首页> 外文期刊>International Journal of Heat and Mass Transfer >Experimental investigation of inner bubble dynamics during water droplet evaporation from heated surfaces with different roughness and wettability levels
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Experimental investigation of inner bubble dynamics during water droplet evaporation from heated surfaces with different roughness and wettability levels

机译:具有不同粗糙度和润湿性水平的加热表面蒸发内部气泡动力学的实验研究

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In this study, sol-gel method and picosecond laser system were used to create surfaces with various roughness and wettability levels. The ranges of contact angle and surface roughness were 0°-125° and 0.121-0.356 μm, respectively. The influence of surface roughness and wettability on bubble dynamics was experimentally investigated by observing droplet evaporation on heated surfaces. The results revealed that not only the surface temperature but also surface characteristics affected bubble behavior and resulted in different evaporation efficiencies. Droplets evaporated most rapidly on the laser-textured copper surface because of its hydrophobicity and enhanced surface roughness, which led to improved liquid-vapor heat transfer in active bubbles behavior. By contrast, silica-coated surfaces exhibited the lowest droplet evaporation efficiency. This evaporation efficiency was attributed to the hydrophilic wetting state and high bubble covering area, which hindered the heat transfer from the heated surface to the liquid droplet. The overall evaporation time on the laser-textured surface was approximately 77% shorter than that on other surfaces for the highest evaluated surface temperature. In addition, the experimental results of the overall evaporation time were compared with the results of the prediction model. With the increase in the temperature of the surface, the hydrophobic wetting state increased, which led to larger differences between the model and experimental results.
机译:在该研究中,溶胶 - 凝胶方法和PICOSecond激光系统用于产生各种粗糙度和润湿性水平的表面。接触角和表面粗糙度的范围分别为0°-125°和0.121-0.356μm。通过观察加热表面上的液滴蒸发实验研究了表面粗糙度和润湿性对泡沫动力学的影响。结果表明,不仅是表面温度,而且表面特征也影响泡沫行为,导致不同的蒸发效率。由于其疏水性和增强的表面粗糙度,液滴最快地蒸发在激光织物铜表面上,这导致了在活性气泡行为中提高了液体蒸汽热传递。相比之下,二氧化硅涂覆的表面表现出最低的液滴蒸发效率。这种蒸发效率归因于亲水性润湿状态和高气泡覆盖面积,其阻碍了从加热表面到液滴的热传递。激光纹理表面上的整体蒸发时间比对最高评估表面温度的其他表面短约77%。此外,将整体蒸发时间的实验结果与预测模型的结果进行比较。随着表面温度的增加,疏水润湿状态增加,导致模型与实验结果之间的差异较大。

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