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An analytic study on laminar film condensation along the interior surface of a cave-shaped cavity of a flat plate

机译:平板状洞穴形腔内表面层流膜凝结的解析研究

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摘要

An analytic approach has been employed to study condensate film thickness distribution inside cave-shaped cavity of a flat plate heat pipe. The results indicate that the condensate film thickness largely depends on mass flow rate and local velocity of condensate. The increasing rate of condensate film for circular region reveals about 50% higher value than that of vertical region. The physical properties of working fluid affect significantly the condensate film thickness such as the condensate film thickness for the case of FC-40 are 5 times larger than that of water. In comparison with condensation on a vertical wall, the average heat transfer coefficient in the cave-shaped cavity presented 10~15% lower values due to the fact that the average film thickness formed inside the cave-shaped cavity was larger than that of the vertical wall with an equivalent flow length. A correlation formula which is based on the condensate film analysis for the cave-shaped cavity to predict average heat transfer coefficient is presented. Also the critical minimum fill charge ratio of working fluid based on condensate film analysis has been predicted and the minimum till charee ratios for FC-40 and water are about Ψ{sub}(crit)=3~7%,Ψ{sub}(crit)=0.5~1.3%, respectively, in the range of heat flux q"=5~90kW/m{sup}2.
机译:已经采用一种分析方法来研究平板热管的洞穴形腔内的冷凝液膜厚度分布。结果表明,凝结水的膜厚很大程度上取决于质量流量和凝结水的局部速度。圆形区域冷凝膜的增加速率显示出比垂直区域高约50%的值。工作流体的物理性质会显着影响冷凝膜的厚度,例如FC-40情况下的冷凝膜厚度是水的5倍。与垂直壁上的凝结相比,由于在空腔内形成的平均膜厚大于垂直壁上的平均膜厚,因此在空腔内的平均传热系数降低了10〜15%。墙具有相等的流动长度。提出了基于凝结膜分析的洞穴状腔预测平均传热系数的相关公式。并基于凝结膜分析预测了工作流体的临界最小填充率,FC-40和水的最小耕作比约为about {sub}(crit)= 3〜7%,Ψ{sub}(在热通量q” = 5〜90kW / m {sup} 2的范围内分别为0.5〜1.3%。

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