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首页> 外文期刊>International Journal of Mechanical Sciences >Dependence of wettability of microtextured wall on the heat and mass transfer: Simple estimates for convection and heat transfer
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Dependence of wettability of microtextured wall on the heat and mass transfer: Simple estimates for convection and heat transfer

机译:微直纹壁润湿性对流热量传递的依赖性:对流和传热的简单估计

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摘要

Heat exchange of the evaporating water drop located on the structured wall is investigated experimentally. Heat and mass transfer enhancement by structures in a wide range of cavities' diameters from 50 mu m to 2.2 mm is analyzed. Cavities are created in two ways: mechanical treatment of the wall and laser action. The behavior of the heat flux and heat transfer coefficient on the textured surface is compared with the rough (unstructured) wall. The effect of wettability on heat transfer (transition from superhydrophilic to superhydrophobic wall) is investigated. The most pronounced is the intensification of convection and heat transfer for the largest investigated cavities with a diameter of 2.2 mm, as well as for the textured superhydrophilic wall with a cavity diameter of 50 mu m. Thermal imaging measurements show a non-uniform temperature field in the drop in the presence of cavities. The data obtained are valuable for optimizing heat exchangers with textured surfaces when evaporating sessile droplets increase heat transfer from heated surfaces.
机译:实验研究了位于结构墙上的蒸发水滴的热交换。分析了各种空腔中的结构的热量和传质,从50μm至2.2mm的范围内的结构。空腔采用两种方式创建:机械处理墙壁和激光作用。将纹理表面上的热通量和传热系数的行为与粗糙(非结构化)壁进行比较。研究了对润湿性对传热(从超水转变为超疏水壁的转变)。最明显的是对直径为2.2mm的最大调查腔的对流和传热的强化,以及纹理的超硫基壁,腔直径为50μm。热成像测量显示在存在空腔的下降中的非均匀温度场。当蒸发无柄液滴时,所获得的数据对于优化具有纹理表面的热交换器,可以增加来自加热表面的热传递。

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