首页> 外文会议>International Conference on Boiling Heat Transfer(ICBHT 2003); 20030504-08; Montego Bay(JM) >AUTOMATED HIGH-SPEED VIDEO ANALYSIS OF THE BUBBLE DYNAMICS IN SUBCOOLED FLOW BOILING
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AUTOMATED HIGH-SPEED VIDEO ANALYSIS OF THE BUBBLE DYNAMICS IN SUBCOOLED FLOW BOILING

机译:过冷沸腾沸腾动力学的高速视频自动分析

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Subcooled flow boiling is a commonly applied technique for achieving efficient heat transfer. In the study, an experimental investigation in the nucleate boiling regime was performed for water circulating in a closed loop at atmospheric pressure. The test-section consists of a rectangular channel with a one side heated copper strip and a very good optical access. For the optical observation of the bubble behaviour the highspeed cinematography is used. Automated image processing and analysis algorithms developed by the authors were applied for a wide range of mass flow rates and heat fluxes in order to extract characteristic length and time scales of the bubbly layer during the boiling process. Using this methodology, a huge number of bubble cycles could be analysed. The structure of the developed algorithms for the detection of the bubble diameter, the bubble lifetime, the lifetime after the detachment process and the waiting time between two bubble cycles is described. Subsequently, the results from using these automated procedures are presented. A remarkable novelty is the presentation of all results as distribution functions. This is of physical importance because the commonly applied spatial and temporal averaging leads to a loss of information and, moreover, to an unjustified deterministic view of the boiling process, which exhibits in reality a very wide spread of bubble sizes and characteristic times. The results show that the mass flux dominates the temporal bubble behaviour. An increase of the liquid mass flux reveals a strong decrease of the bubble life-and waiting time. In contrast, the variation of the heat flux has a much smaller impact. It is shown in addition that the investigation of the bubble history using automated algorithms delivers novel information with respect to the bubble lift-off probability.
机译:过冷沸腾是实现有效传热的常用技术。在这项研究中,对大气压下闭环循环的水进行了成核沸腾实验研究。测试部分包括一个矩形通道,该通道带有一侧加热的铜带和一个非常良好的光学通道。为了对气泡行为进行光学观察,使用了高速摄影。作者开发的自动图像处理和分析算法被应用于各种质量流量和热通量,以提取沸腾过程中气泡层的特征长度和时间尺度。使用这种方法,可以分析大量的气泡循环。描述了用于检测气泡直径,气泡寿命,分离过程后的寿命以及两个气泡循环之间的等待时间的已开发算法的结构。随后,介绍了使用这些自动化过程的结果。一个显着的新颖之处是将所有结果表示为分布函数。这在物理上很重要,因为通常应用的空间和时间平均会导致信息丢失,而且还会导致沸腾过程的不合理的确定性视图,而实际上却显示出气泡尺寸和特征时间分布非常广泛。结果表明,质量通量主导了瞬时气泡行为。液体质量通量的增加表明气泡寿命和等待时间大大降低。相反,热通量的变化具有较小的影响。另外还表明,使用自动算法对气泡历史进行调查,可以提供有关气泡脱离概率的新颖信息。

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