... concurrent heating 同时加热 condensation heat transfer 凝结换热 condenser heat 冷凝热量 ...
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Therefore, the gradient surface energy could be capable of eliminating the condensation in time and improve the condensation heat transfer as for horizontal surface or other gravity free state surface.
因此,对于水平放置或者其它失重状态下的梯度能表面,都能够及时排除其表面上的凝结液滴,有效促进滴状凝结换热系数的提高。
参考来源 - 梯度表面能材料上液滴运动及滴状凝结换热The boiling and condensation heat transfer, as one of the most efficient cooling method, have been paid more attention. Therefore, it is a hotspot problem in the world to research and develop the new condensation surface material.
沸腾和凝结换热作为最有效的冷却手段之一已逐步得到了人们的广泛关注,研究开发新型的冷凝表面材料成为当今世界的前沿热点课题。
参考来源 - 梯度表面能材料表面特性及液滴运动机理·2,447,543篇论文数据,部分数据来源于NoteExpress
凝结换热系数随内管径的增大而减小。
The heat transfer coefficient increased with the inner tube diameter decreased.
凝结换热有两种形式:珠状凝结和膜状凝结。
There are two kinds of condensation: dropwise condensation and film condensation.
在有电晕放电的情况下,凝结换热系数增加加快。
And the increase of the condensation heat transfer coefficient became to be larger when corona discharge happened.
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