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A photographic study on the near-wall bubble behavior in subcooled flow boiling

机译:过冷沸腾中近壁气泡行为的摄影研究

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摘要

The behavior of near-wall bubbles in subcooled flow boiling has been investigated photographically for water flow in vertical, one-side heated, rectangular channels at mass fluxes of 500, 1500, 2000 kg·m{sup}(-2)·s{sup}(-1) under atmospheric pressure. Primary attention was given to the bubble coalescence phenomenon and the structure of the near-wall bubble layer. The number of near-wall bubbles increased with the increase in the heat flux. At sufficiently high heat fluxes (>60-70% CHF), three characteristic layers were observed in the heated channel: (a) a superheated liquid layer with small bubbles attached on the heated wall, (b) a flowing bubble layer consisting of large coalesced bubbles over the superheated liquid layer, and (c) the liquid core over the flowing bubble layer. In addition, the existence of a liquid sublayer under coalesced bubbles was identified photographically. According to visualization, the CHF mechanism for the present experimental condition could be related to the formation of large vapor clots resulting from coalescences of bubbles and the evaporation of the superheated liquid layer beneath those clots.
机译:已经对水在垂直,一侧加热的矩形通道中以500、1500、2000 kg·m {sup}(-2)·s { sup}(-1)在大气压下。主要关注气泡聚结现象和近壁气泡层的结构。随着热通量的增加,近壁气泡的数量增加。在足够高的热通量(> 60-70%CHF)下,在加热通道中观察到三个特征层:(a)过热液体层,在加热壁上附着了小气泡;(b)由大气泡组成的流动气泡层在过热液体层上聚结气泡,(c)在流动的气泡层上聚结液芯。另外,通过照相确定在聚结的气泡下存在液体亚层。根据可视化,当前实验条件的CHF机理可能与气泡凝结和这些凝块下面的过热液体层蒸发所导致的大蒸汽凝块形成有关。

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