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Bubble dynamics at boiling incipience in subcooled upward flow boiling

机译:过冷向上流沸腾中沸腾开始时的气泡动力学

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Bubble dynamics in water subcooled flow boiling was investigated through visualization using a highspeed camera. The test section was a vertical rectangular channel, and a copper surface of low contact angle was used as a heated surface. Main experimental parameters were the pressure, mass flux and liquid subcooling. Although all the experiments were conducted under low void fraction conditions close to the onset of nucleate boiling, no bubbles stayed at the nucleation sites at which they were formed. Depending on the experimental conditions, the following two types of bubble behavior were observed after nucleation: (1) lift-off from the heated surface followed by collapsing rapidly in subcooled bulk liquid due to condensation, and (2) sliding along the vertical heated surface for a long distance. Since the bubble lift-off was observed only when the wall superheat was high, the boundary between the lift-off and the sliding could be determined in terms of the Jakob number. Based on the present experimental results, discussion was made for the possible mechanisms governing the bubble dynamics.
机译:使用高速摄像机通过可视化研究了水过冷流动沸腾中的气泡动力学。测试部分是垂直的矩形通道,低接触角的铜表面用作加热表面。主要实验参数为压力,质量通量和液体过冷。尽管所有实验都是在接近核沸腾开始的低空隙率条件下进行的,但没有气泡留在形成核的位置。取决于实验条件,成核后观察到以下两种类型的气泡行为:(1)从加热表面剥离,然后由于冷凝而在过冷的大块液体中迅速塌陷;(2)沿垂直加热表面滑动很长一段距离。由于仅在壁过热较高时才观察到气泡剥离,因此可以根据雅各布数确定剥离和滑动之间的边界。基于目前的实验结果,讨论了控制气泡动力学的可能机制。

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