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BUBBLE DYNAMICS FROM ARTIFICIAL NUCLEATION SITES DURING SUBCOOLED POOL BOILING

机译:过冷池沸腾过程中人工晶核产生的气泡动力学

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The bubble dynamics of ethanol vapor bubbles growing, coalescing and condensing in a subcooled ethanol liquid pool were investigated experimentally and numerically for a range of subcoolings and heating rates. The bubbles were generated from an artificial pair of nucleation sites made of microscale tubes mounted flush with the bottom surface of the liquid pool with the vapor supplied by a vapor generator. Observations of the bubble generation with a high speed camera show the various coalescence modes with no coalescence at low heating rates and high subcoolings and horizontal and/or vertical coalescence depending on the heating rate and subcooling. At very low subcoolings, the bubbles grew quite large with various types of coalescence. The numerical results using solutions of the Navier-Stokes equations with the VOF model and using a simplified one dimensional model also describe the bubble dynamics and the conditions for coalescence. The numerical results suggest that the condensation rate at the interface is probably much higher than predicted by the model due to significant convection in the liquid pool or due to significant disturbance of the interface by the vapor jet entering the bubble.
机译:实验,在数值上进行实验,在数值上进行实验和数值进行乙醇蒸汽气泡生长,聚结和冷凝的泡沫动力学,用于一系列过脱机和加热速率。从用蒸汽发生器供应的蒸气,从安装与液体池的底表面齐平的微米管制成的人造对成核位点产生气泡。具有高速摄像机的气泡产生的观察显示,根据加热速率和过过冷却,具有低加热速率和高级过冷却和水平和/或垂直聚结的各种聚结模式。在非常低的过脱机处,气泡很大程度很大,各种聚结。使用具有VOF模型的Navier-Stokes方程的解决方案和使用简化的一维模型的数值结果也描述了气泡动力学和聚结的条件。数值结果表明,由于液体池中的显着对流,界面处的冷凝率可能远高于模型的预测,或者由于蒸汽喷射进入气泡的近界面的显着干扰。

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