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Photographic study of high-flux subcooled flow boiling and critical heat flux

机译:高通量过冷流沸腾和临界热通量的摄影研究

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This study examines both high-flux flow boiling and critical heat flux (CHF) under highly subcooled conditions using FC-72 as working fluid. Experiments were performed in a horizontal flow channel that was heated along its bottom wall. High-speed video imaging and photomicrographic techniques were used to capture interfacial features and reveal the sequence of events leading to CHF. At about 80% of CHF, bubbles coalesced into oblong vapor patches while sliding along the heated wall. These patches grew in size with increasing heat flux, eventually evolving into a fairly continuous vapor layer that permitted liquid contact with the wall only in the wave troughs between vapor patches. CHF was triggered when this liquid contact was finally halted. These findings prove that the CHF mechanism for subcooled flow boiling is consistent with the interfacial lift-off mechanism proposed previously for saturated flow boiling.
机译:这项研究在使用FC-72作为工作流体的高度过冷条件下研究了高通量沸腾和临界热通量(CHF)。在沿其底壁加热的水平流道中进行实验。高速视频成像和显微照相技术用于捕获界面特征并揭示导致CHF的事件序列。 CHF约为80%时,气泡沿加热的壁滑动时会聚结成长方形蒸气斑块。这些斑块的大小随着热通量的增加而增加,最终演变为相当连续的蒸汽层,该蒸汽层仅在蒸汽斑块之间的波谷中才允许液体与壁接触。当这种液体接触最终停止时,触发了CHF。这些发现证明过冷沸腾的CHF机理与先前提出的饱和流沸腾的界面剥离机理是一致的。

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