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Microscale wall heat transfer and bubble growth in single bubble subcooled boiling of water

机译:单气泡过冷沸腾中的微尺度壁传热和气泡增长

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A MEMS measurement technique was used to study the mechanisms of wall heat transfer and bubble growth during subcooled boiling of water in the isolated bubble region. The local wall temperature beneath a single bubble in subcooled boiling was measured at a sampling frequency of 50 kHz using a MEMS sensor. The wall and liquid phase heat transfers were quantitatively evaluated by the analysis with the measured local temperature and bubble size extracted from bubble images. The microlayer evaporation provided a significant contribution to the wall heat transfer and the bubble growth, but the rewetting heat transfer during the bubble departure process was insignificant in the wall heat transfer, as with our previous results for saturated boiling. The subcooling of the bulk liquid was found not to have significant influence to the microlayer evaporation. The condensation heat transfer from vapor bubble to bulk subcooled liquid was comparable to the microlayer evaporation heat transfer, and subcooled boiling single bubbles behaved like a heat pipe on the heated wall. The bubble oscillation on the surface was observed in one case. The evaporation of the microlayer which repeatedly reformed in the oscillation process transferred a high heat flux of around 1 MW/m~2. Evaporation and formation characteristics of the microlayer were additionally examined.
机译:MEMS测量技术用于研究隔离气泡区域中水的过冷沸腾过程中壁的传热和气泡生长的机理。使用MEMS传感器以50 kHz的采样频率测量了过冷沸腾中单个气泡下方的局部壁温。通过分析,利用从气泡图像中提取的测得的局部温度和气泡尺寸,定量评估壁和液相的传热。微层蒸发对壁的传热和气泡的生长起了很大的作用,但是在气泡离开过程中,再润湿的传热对壁的传热是微不足道的,正如我们先前对饱和沸腾的结果一样。发现散装液体的过冷对微层蒸发没有显着影响。从蒸气气泡到大块过冷液体的冷凝热传递与微层蒸发热传递相当,并且过冷沸腾的单个气泡在加热壁上的表现像热管。在一种情况下观察到表面上的气泡振荡。在振荡过程中反复重新形成的微层的蒸发传递了大约1 MW / m〜2的高热通量。另外检查了微层的蒸发和形成特性。

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