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Experimental investigation of capillary-assisted solution wetting and heat transfer using a micro-scale, porous-layer coating on horizontal-tube, falling-film heat exchanger

机译:在水平管降膜式换热器上使用微米级多孔层涂层进行毛细管辅助溶液润湿和传热的实验研究

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摘要

An experimental study was conducted to investigate the effect of a micro-scale, porous-layer coating on solution wetting and heat transfer of a horizontal-tube, falling-film heat exchanger. A uniform layer of a copper powder was sintered onto plain copper tubes to create a micro-scale, porous coating on the tubes. Distilled water was used as solution and heating fluids. When the solution was dripped onto horizontal tubes, the visual observation confirmed that plain tubes were partially wetted, while the porous-layer coated tubes were completely wetted due to capillary action even at low solution flow rates. The comparison of the heat transfer results for two different tube surfaces (plain and porous-layer coated) clearly showed that the porous-layer coated tubes had twice as high evaporation heat transfer rate due to the complete solution wetting and higher heat transfer coefficient due to the thin spreading of the solution liquid.
机译:进行了一项实验研究,以研究微米级多孔层涂层对水平管降膜式换热器的溶液润湿和传热的影响。将均匀的铜粉层烧结到普通的铜管上,以在管上形成微米级的多孔涂层。蒸馏水用作溶液和加热液。当将溶液滴到水平管上时,目视确认平管被部分润湿,而多孔层涂覆的管由于毛细管作用甚至在低溶液流速下也被完全润湿。比较两个不同管表面(普通管和多孔涂层管)的传热结果,可以清楚地看到,由于完全溶液润湿,多孔层涂层管的蒸发传热速率是原来的两倍,而由于溶液的润湿,传热系数更高。溶液液体的稀薄扩散。

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