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首页> 外文期刊>AIChE Journal >Effects of Bubble Coalescence Dynamics on Heat Flux Distributions Under Bubbles
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Effects of Bubble Coalescence Dynamics on Heat Flux Distributions Under Bubbles

机译:气泡聚结动力学对气泡下热流分布的影响

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摘要

Bubble coalescence events and single bubble nucleation, growth, and departure were observed with a charge-coupled device (CCD) camera synchronized with a high-speed data acquisition system measuring the heat fluxes at different positions underneath the bubble. Four different kinds of coalescence events took place with characteristic heat flux signatures for each type of event. The heat transfer measurements under four typical heaters representing different positions under the bubble showed very different heat flux characteristics during each ebullition cycle. The results show that transient conduction due to the movement of the contact line during bubble interactions, sliding, stretching, and oscillating is the main mechanism resulting in the high heat transfer rates during coalescence. Fast evaporation of the liquid layer trapped between the two bubbles and higher heat fluxes near the contact line as the microlayer evaporated also generate high heat flux spikes but have less influence due to their short duration and small influence area.
机译:用与高速数据采集系统同步的电荷耦合器件(CCD)摄像头观察气泡聚结事件以及单个气泡成核,生长和脱离,并测量气泡下方不同位置的热通量。发生了四种不同类型的合并事件,每种事件类型都有特征性的热通量签名。在代表气泡下不同位置的四个典型加热器下的传热测量结果显示,在每个沸腾周期中,热通量特性都非常不同。结果表明,在气泡相互作用,滑动,拉伸和振荡过程中,由于接触线的移动而引起的瞬态传导是导致聚结过程中高传热率的主要机理。截留在两个气泡之间的液体层的快速蒸发,以及随着微层蒸发而在接触线附近产生较高的热通量,也会产生较高的热通量尖峰,但由于其持续时间短且影响面积小,因此影响较小。

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