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首页> 外文期刊>Applied Surface Science >Condensation of water vapor underneath an inclined hydrophobic textured surface machined by laser and electric discharge
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Condensation of water vapor underneath an inclined hydrophobic textured surface machined by laser and electric discharge

机译:激光和放电加工后的倾斜疏水纹理表面下的水蒸气冷凝

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摘要

Condensation of water vapor on a surface plays an important role in thermal based water purification methods. Appropriate texturing of such surfaces facilitates dropwise condensation with better heat transfer coefficient and water collection. In this context, we explore texturing patterns via laser ablation to achieve lower aspect ratio (10 mu m depth to 100 mu m width) and via wire electric discharge machining process for higher aspect ratio (300 mu m depth to 100 mu m width). The transition from Cassie-Baxter to Wenzel is seen experimentally as well as through the simulations for lower aspect ratio, whereas the transition does not occur for higher aspect ratio. Simulations are also carried out for the sessile as well as pendant drop, which is more relevant to thermal based water purification. However, in the experiments the drop is always in the pendant mode. The condensing surface inclination plays a very significant role in the water collection. In order to have more water production underneath the copper plate, the optimum angle of inclination found is 35 degrees.
机译:在基于热的水净化方法中,水蒸气在表面上的冷凝起着重要作用。对这些表面进行适当的纹理化处理有利于逐滴凝结,并具有更好的传热系数和集水能力。在这种情况下,我们通过激光烧蚀探索纹理图案以实现较低的长宽比(深度为10微米至100微米),并通过电火花线切割加工工艺获得较高的长宽比(深度为300微米至100微米)。从Cassie-Baxter到Wenzel的过渡在实验中以及通过低纵横比的模拟都可以看到,而对于高纵横比则不会发生。还对无柄和悬垂下降进行了模拟,这与基于热的水净化更相关。但是,在实验中,液滴始终处于悬垂模式。冷凝表面的倾斜度在集水中起着非常重要的作用。为了在铜板下面产生更多的水,发现的最佳倾斜角度为35度。

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