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Experimental Study of Effect of Nucleation Site Size on Bubble Dynamics during Nucleate Pool Boiling Heat Transfer

机译:成核位点大小对核心池沸腾热传递泡沫动力学影响的实验研究

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In this paper, effect of nucleation site size on bubble dynamics during nucleate pool boiling heat transfer in saturated water is studied experimentally. Single bubble was generated using right angle tip of a hypodermic needle as a nucleation site. The hypodermic needles were used of inner diameters 0.413mm, 0.514mm, and 0.603 mm with a constant depth of 25mm. The bubble dynamics was studied using SONY Cyber-shot DSC-H100 camera operating at 30 frames per second at atmospheric pressure and at a wall superheat of 5K. The results show that, bubble diameter, bubble height and bubble volume increases with increase in diameter of nucleation site. The bubble growth period is found to be dependent on nucleation site size, and it decreases with increase in diameter of nucleation site. This happens because as volume of vapor bubble increases, buoyancy force starts dominates the capillary force and bubble detaches earlier. Effect of nucleation site size on bubble departure diameter and bubble release frequency is also discussed.
机译:本文在实验中研究了核心池沸腾热传递期间核心位点大小对饱和水中核池沸腾热传递期间的血泡动力学的影响。使用皮下针的直角尖作为成核位点产生单一气泡。使用内径为0.413mm,0.514mm,0.603mm的下皮针,恒定深度为25mm。使用SONY的Cyber​​-shot DSC-H100相机操作在大气压下,每秒30帧和在5K的壁过热气泡动力学进行了研究。结果表明,血泡直径,气泡高度和气泡体积随成核位点的直径增加而增加。发现气泡生长期依赖于成核位点,随着成核位点的直径而降低。发生这种情况是因为随着蒸汽泡沫量的增加,浮力力开始尖端毛细管力和泡沫脱落。还讨论了成核位点大小对气泡偏离直径和气泡剥离频率的影响。

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