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Condensation of Vapor Bubble in Subcooled Pool

机译:过冷池中蒸气泡的凝聚

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We focus on condensation process of vapor bubble exposed to a pooled liquid of subcooled conditions. Two different geometries are employed in the present research; one is the evaporation on the heated surface, that is, subcooled pool boiling, and the other the injection of vapor into the subcooled pool. The test fluid is water, and all series of the experiments are conducted under the atmospheric pressure condition. The degree of subcooling is ranged from 10 to 40 K. Through the boiling experiment, unique phenomenon known as microbubble emission boiling (MEB) is introduced; this phenomenon realizes heat flux about 10 times higher than the critical heat flux. Condensation of the vapor bubble is the key phenomenon to supply ambient cold liquid to the heated surface. In order to understand the condensing process in the MEB, we prepare vapor in the vapor generator instead of the evaporation on the heated surface, and inject the vapor to expose the vapor bubble to the subcooled liquid. Special attention is paid to the dynamics of the vapor bubble detected by the high-speed video camera, and on the enhancement of the heat transfer due to the variation of interface area driven by the condensation.
机译:我们专注于暴露于过冷条件的汇集液体的蒸汽泡的冷凝过程。本研究采用了两种不同的几何形状;一个是加热表面上的蒸发,即脱池煮沸,另一个将蒸汽注入过冷却池中。测试流体是水,并且所有系列实验都在大气压条件下进行。过冷程度范围为10至40k。通过沸腾实验,介绍了称为微泡发射沸腾(MEB)的独特现象;这种现象实现了比临界热通量高约10倍的热通量。蒸汽泡的冷凝是向加热表面供应环境冷液的关键现象。为了理解MEB中的冷凝过程,我们在蒸汽发生器中制备蒸汽而不是加热表面上的蒸发,并注入蒸汽将蒸汽泡暴露于过冷液体中。特别注意由高速摄像机检测到的蒸汽泡沫的动态,以及由于由冷凝驱动的接口区域的变化引起的传热增强。

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