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Computer modeling of droplets impact on heat transfer during spray cooling under vibration environment

机译:振动环境下喷雾冷却过程中液滴的计算机模拟对传热的影响

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The heat transfer process among droplet, film and bubble is selected as the local characteristic process of spray cooling to build a multiphase flow model. Volume of fluid (VOF) method is employed to simulate the transient process, in which single or multiple droplets impact on a liquid film with a vapor bubble growing, considering the effects of surface tension, gravity and vapor-liquid phase transition. The effect of vibration environment is analyzed by setting vibration boundary condition, and a far broader range of vibration condition is calculated in light spray and dense spray to identify the effect. Heat is mainly removed by strong convection due to the droplet impact. It is significant to form stabilized and intact film during spray cooling. Heat transfer process can be mainly separated into four stages: 1. before the impact; 2. droplet impacts on the surface and forms thinner film on the surface; 3. film extends outwards; 4. film breakage. In dense spray cases, the third stage is barely observed due to continuous impacting of droplets, and mainly all the cases show that vibration has invigorating effect on heat transfer. (C) 2016 Elsevier Ltd. All rights reserved.
机译:选择液滴,薄膜和气泡之间的传热过程作为喷雾冷却的局部特征过程,以建立多相流模型。考虑到表面张力,重力和汽液相变的影响,采用流体体积(VOF)方法来模拟瞬态过程,在该过程中,单个或多个液滴会随着汽泡的增长而撞击到液膜上。通过设置振动边界条件来分析振动环境的影响,并在轻雾和浓雾中计算出更宽的振动条件范围以识别这种影响。由于液滴的撞击,热量主要通过强对流消除。在喷雾冷却过程中形成稳定且完整的薄膜非常重要。传热过程主要可分为四个阶段:1.冲击之前; 2.液滴撞击表面并在表面形成较薄的薄膜; 3.薄膜向外延伸; 4.薄膜破损。在浓密的喷雾情况下,由于液滴的连续撞击,几乎看不到第三阶段,并且主要是所有情况都表明,振动对传热具有促进作用。 (C)2016 Elsevier Ltd.保留所有权利。

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