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Visualized Experiment of Bubble Behaviors in a Vertical Narrow Rectangular Channel Under Natural Circulation Condition

机译:自然循环条件下垂直窄矩形通道内气泡行为的可视化实验

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The characteristics of bubble behavior have been in particular interest for decades due to its significant contribution to understanding the mechanism of heat transfer. In the present work, visualized experiment is conducted to study the bubble characteristics in subcooled flow boiling of a narrow rectangular channel under natural circulation. The experiments were performed at pressures of 0.2 MPa, with inlet subcooling ranging from 20 to 60 K and heat flux ranging from 100 kW/m2 to 300 kW/m2. A high-speed digital camera is used to capture the pictures of bubble behaviors. A sequence of image processing algorithms is used deal with the original bubble images to get relevant bubble parameters. We observe the whole process of a single sliding bubble lifetime and found most of bubbles slide along the heating surface after detaching the nucleation sites. Five typical sliding bubble growth paths are observed in the present experimental conditions. According to the analysis of the experimental data, it can be found that the liquid subcooling and wall superheat are the main factors that affect the bubble size during sliding in narrow rectangular channel under natural circulation condition. Due to the difference of driving force, the sliding velocity of bubble in forced circulation is always larger than that in natural circulation. At the same time, the bubble velocity changes significantly at different heat flux and shooting location.
机译:由于气泡行为对理解传热机理的重大贡献,气泡行为的特性已经引起人们数十年的兴趣。在目前的工作中,进行可视化实验以研究自然循环下窄矩形通道过冷沸腾过程中的气泡特性。实验在0.2 MPa的压力下进行,入口过冷度为20至60 K,热通量为100 kW / m2至300 kW / m2。高速数码相机用于捕获气泡行为的图片。使用一系列图像处理算法来处理原始气泡图像,以获得相关的气泡参数。我们观察到单个滑动气泡寿命的整个过程,发现大多数气泡在分离成核位置后沿着加热表面滑动。在当前的实验条件下,观察到五个典型的滑动气泡生长路径。通过对实验数据的分析,可以发现在自然循环条件下,液体过冷和壁过热是影响窄矩形通道内滑动过程中气泡尺寸的主要因素。由于驱动力的差异,在强制循环中气泡的滑动速度始终大于自然循环中的气泡滑动速度。同时,在不同的热通量和射击位置,气泡速度发生显着变化。

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