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首页> 外文期刊>Journal of thermal analysis and calorimetry >Determination of rewetting velocity during jet impingement cooling of hot vertical rod
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Determination of rewetting velocity during jet impingement cooling of hot vertical rod

机译:热立杆射流冷却过程中的再润湿速度的确定

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摘要

A vertical hot rod of 12 mm diameter at 800 +/- A 10 A degrees C initial temperature has been quenched by sub-cooled round water jet. The water jet of 2.5 and 3.5 mm diameter, at jet Reynolds number of 5000-24,000, impinges normal to the test section of SS-316. An infrared camera is used to determine the wetting front velocity on the hot test surface. The investigations are made up to 40 mm downstream locations in both upper and down sides of the stagnation point. It has been observed that during transient cooling, the wetting front velocity increases with the rise in jet Reynolds number and jet diameter. However, rewetting velocity reduces drastically for the extreme downstream locations away from the stagnation point. The reduction in the wetting front progression for the upper side downstream locations is higher as compared to corresponding bottom side locations. The correlation proposed for the dimensionless rewetting velocity predicts the experimental data of upper and bottom side downstream locations in the error band of +30 to -20 %.
机译:初始温度为800 +/- A 10 A℃的直径为12 mm的垂直热棒已通过过冷的圆形喷水淬火。雷诺数为5000-24,000的直径为2.5和3.5毫米的水射流撞击SS-316的测试部分。红外摄像机用于确定热测试表面上的润湿前沿速度。研究是在停滞点的上,下两边最多40毫米的下游位置进行的。已经观察到,在瞬态冷却期间,润湿前沿速度随着射流雷诺数和射流直径的增加而增加。然而,对于远离停滞点的极端下游位置,再润湿速度急剧降低。与对应的底侧位置相比,上侧下游位置的润湿前沿进展的减少更高。为无量纲的再润湿速度提出的相关性预测在误差带为+ 30%到-20%的上下游侧位置的实验数据。

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