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首页> 外文期刊>International Journal of Heat and Mass Transfer >Laminar film condensation inside and outside vertical diverging/converging small channels: A theoretical study
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Laminar film condensation inside and outside vertical diverging/converging small channels: A theoretical study

机译:垂直扩散/会聚小通道内部和外部的层流膜凝结:理论研究

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A theoretical study is conducted on laminar film condensation inside and outside the diverging/converging channels. An exact solution together with two approximate solutions are developed and compared. The rate of increment of the dimensionless film thickness is found to increase as the diverging angle increases near the inlet condensing region. A flooding effect exists due to the constricting channel diameter for condensation on converging channels. This leads to the rate of increment of the dimension-less film thickness to increase significantly near the outlet condensing region. However, the curvature effect dominates the flooding effect such that the local heat transfer coefficient increases near the outlet condensing region. A bending effect exists in the diverging/converging channels such that the linear relationship of log(h_x) and log(x) fails to hold. The condensation heat transfer coefficient decreases with the increase in the diverging angle. The condensation heat transfer coefficient on both inside and outside channels can be substantially enhanced by using the converging channels. However, it deteriorates significantly when diverging channels are utilized. The surface tension and the liquid subcooling effects are also investigated. It is found that the effect of liquid subcooling is generally insignificant on condensation heat transfer. The effect of surface tension is also small in most of the cases. However, when the diverging angle approaches the critical angle, its influence becomes significant.
机译:对发散/会聚通道内部和外部的层流膜冷凝进行了理论研究。开发并比较了精确解和两个近似解。发现在入口冷凝区域附近,随着发散角的增加,无因次膜厚度的增加速率增加。由于缩径的通道直径使会聚通道上发生冷凝,因此会产生溢流效果。这导致无量纲的膜厚度的增加速率在出口冷凝区域附近显着增加。然而,曲率效应主导了溢流效应,使得局部传热系数在出口冷凝区域附近增加。在发散/会聚通道中存在弯曲效应,使得log(h_x)和log(x)的线性关系无法保持。冷凝传热系数随着发散角的增加而减小。通过使用会聚通道,可以大大提高内部和外部通道上的冷凝传热系数。但是,当使用分支通道时,它会严重恶化。还研究了表面张力和液体过冷效果。已经发现,液体过冷对冷凝传热的影响通常很小。在大多数情况下,表面张力的影响也很小。但是,当发散角接近临界角时,其影响变得显着。

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