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A Study of Subcooled Pool Boiling of Water: Contact Area of Boiling Bubbles with a Heating Surface During a Heating Process

机译:过冷水池沸腾的研究:加热过程中沸腾气泡与受热面的接触面积

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The contact area of bubbles with a transparent heating surface was optically measured (luring subcooled pool boiling of water on the ground. In the experiments, boiling bubbles were attached to the heating surface with a bubble holder and nearly reproduced the bubble behavior observed in low gravity. DC power was applied to the ITO heater and increased until the heater surface burned out. In quick heating, that is about 20 second until burnout and equal to the heating time during the low gravity period, the contact area was smaller than that for long time heating at the same heat flux. The experimental results suggest the reason why the critical heat flux in pool boiling is higher than the widely accepted predictions in microgravity. In a drop shaft experiment with constant heating, the contact area increased dramatically at the start of microgravity and became constant. Boiling bubbles coalesced and remained just over the heating surface.
机译:光学测量了气泡与透明加热表面的接触面积(将过冷的水池沸腾在地面上注水。在实验中,沸腾的气泡通过气泡保持器附着在加热表面上,几乎再现了在低重力下观察到的气泡行为)在ITO加热器上施加直流功率,并增加直到加热器表面烧毁;在快速加热中,直到烧坏为止大约20秒,并且等于在低重力时期的加热时间,接触面积要小于长时间在相同的热通量下进行时间加热实验结果表明了为什么池沸腾的临界热通量高于普遍接受的微重力预测的原因;在恒定加热的落井实验中,接触面积在开始时会急剧增加。微重力并保持恒定,沸腾的气泡聚结并保留在加热表面上方。

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