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首页> 外文期刊>International Journal of Heat and Mass Transfer >An analytical model for predicting growth rate and departure diameter of a bubble in subcooled flow boiling
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An analytical model for predicting growth rate and departure diameter of a bubble in subcooled flow boiling

机译:预测过冷流动沸腾中气泡生长速率和离开直径的解析模型

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Bubble formation in flow boiling undergoes an ebullition cycle in which nucleation is followed by bubble growth, departure and a waiting period. Bubble growth rate plays an important role in bubble dynamics and also affects the whole ebullition cycle. It is difficult to make analytical calculation of bubble growth rate and departure diameter due to involvement of various forces and heat transfer processes on a nucleating bubble. In this paper, an analytical technique is proposed to calculate the growth rate and departure diameter of a nucleating bubble in subcooled flow boiling. Both force and energy balance approaches have been applied to calculate the growth and departure diameter of the bubble. Heat transfer contributions from evaporative microlayer beneath the bubble, superheated liquid surrounding the bubble and condensation from the bubble cap have been considered to calculate the bubble growth rate. In place of using a constant coefficient to represent the fraction of bubble in subcooled bulk liquid by existing analytical models, the present model correlates the coefficient with the operating parameters of flow boiling. An effort has also been made for accurate calculation of temperature distribution in heated surface and flowing liquid. Bubble growth rate and departure diameter have been calculated for different values of coolant mass flux, system pressure, applied heat flux, surface orientation angle and liquid subcooling. The heat transfer contribution from individual layer towards the growth rate of the bubble has been quantified and analyzed. The present analytical model has been validated with a wide range of experimental data and it produces better agreement with the experimental data compared to existing analytical models.
机译:流动沸腾中的气泡形成经历汽化循环,在该循环中成核之后是气泡的生长,离开和等待期。气泡生长速率在气泡动力学中起着重要作用,并且还影响整个沸腾周期。由于各种力和成核气泡上的传热过程的参与,很难对气泡的生长速度和离开直径进行分析计算。本文提出了一种分析技术来计算过冷沸腾中成核气泡的生长速率和离去直径。力平衡和能量平衡两种方法都已用于计算气泡的增长和离开直径。气泡下面的蒸发微层,气泡周围的过热液体以及气泡帽的冷凝产生的传热作用已被考虑来计算气泡的增长率。通过现有的分析模型,代替使用恒定系数来表示过冷的散装液体中气泡的比例,本模型将系数与流动沸腾的操作参数相关联。还已经做出努力以精确计算加热表面和流动液体中的温度分布。对于冷却剂质量通量,系统压力,施加的热通量,表面取向角和液体过冷度的不同值,已经计算出气泡的增长率和偏离直径。从各个层到气泡的生长速率的热传递贡献已经被量化和分析。本分析模型已通过广泛的实验数据进行了验证,与现有分析模型相比,该模型与实验数据具有更好的一致性。

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