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- W2055087459 abstract "A theoretical and experimental study of liquid film flow and quench front propagation on hot vertical surfaces in the presence of single and two-phase upflows is reported. Experiments in which a water jet was used to cool a single rod set in a transparent tube showed that the downward progress of a quench front was significantly retarded or even stopped by an air or steam upflow. Climbing quench fronts were observed which sometimes coexisted with the falling quench fronts, but at surface temperatures above 900°C and flow rates below 0.9 g/s/cm both quench fronts became stationary. Conventional flooding correlations have been shown to overestimate the upflow necessary to cause flow reversal particularly at high surface temperatures. The analysis of film flow shows that a simple interfacial shear model, although incapable of describing the observed wave dynamics, can be used to correlate trends in the available data on rewetting and downcomer penetration. A preliminary theoretical examination of the wave dynamics at the onset of flow reversal is presented based on the Jeffreys theory of growth of finite-amplitude waves." @default.
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- W2055087459 date "1978-05-01" @default.
- W2055087459 modified "2023-10-14" @default.
- W2055087459 title "The effects of countercurrent single and two-phase flows on the quenching rate of hot surfaces" @default.
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- W2055087459 doi "https://doi.org/10.1016/0301-9322(78)90040-x" @default.
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