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Evaporation Heat Transfer of Thin Liquid Film and Meniscus in Microcapillary and on Substrate with Nanorelief

机译:纳米浮雕上微毛细管和基底上液膜和弯液面的蒸发传热

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摘要

The evaporation, profile, and position of a thin liquid film and meniscus formed in microscale spaces with periodic nanorelief on the wall are investigated. The geometries of interest are capillary tubes and planar channels of micronscale. The effects of substrate nanorelief are theoretically investigated, and the coupling mechanisms of flow and heat transfer are analyzed. The thicknesses of thin liquid film on substrates are measured by an interferometer of relative laser intensity. The results demonstrate that the nanoscale roughness of the surfaces influences the heat transfer, liquid film formation, and dry-out region essentially by affecting the adsorp-tive potential. The measured thicknesses of the thin liquid film agree well with the analytical values.
机译:研究了在具有周期性纳米浮雕的微尺度空间中形成的薄液膜和弯液面的蒸发,轮廓和位置。感兴趣的几何形状是毛细管和微米级的平面通道。从理论上研究了基底纳米浮雕的作用,并分析了流动与传热的耦合机理。通过相对激光强度的干涉仪来测量基板上的液体薄膜的厚度。结果表明,表面的纳米级粗糙度基本上通过影响吸附势来影响热传递,液膜形成和变干区域。液体薄膜的测量厚度与分析值非常吻合。

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