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Determination of Rewetting Velocity During Jet Impingement Cooling of a Hot Surface

机译:热表面射流冷却过程中的再润湿速度的确定

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摘要

An experimental investigation has been carried out to study the cooling of a hot horizontal stainless steel surface of 0.25 mm thickness, which has 800 ± 10℃ initial temperature. A round water jet of 22 ± 1℃ temperature was injected over the hot surface through a straight tubes type nozzle of 2.5 mm diameter and 250 mm length. The experiments were performed for the jet exit to target surface spacing in a range of 4-16 times of jet diameter and jet Reynolds number in a range of 5000-24,000. The rewetting velocity during transient cooling of hot surface was determined with the help of time variant surface temperature data and with the captured thermal images of the hot surface as well. The effect of Reynolds number, Re, jet exit to surface spacing, z/d, on the rewetting velocity has been determined for the different downstream spatial locations. A correlation has also been developed to determine the rewetting velocity, which predicts 75% of experimental data within an error band of ±10%.
机译:已经进行了实验研究,以研究厚度为0.25 mm的热水平不锈钢表面的冷却,该表面的初始温度为800±10℃。通过直径为2.5 mm,长度为250 mm的直管型喷嘴在高温表面上喷射22±1℃的圆形喷水。对射流出口到目标表面的间距在射流直径的4-16倍范围内,射流雷诺数在5000-24,000范围内进行实验。借助时变表面温度数据以及所捕获的热表面热图像,可以确定在热表面瞬态冷却期间的重新润湿速度。对于不同的下游空间位置,已经确定了雷诺数Re,射流出口对表面间距z / d的影响对再润湿速度的影响。还开发了一种相关性来确定再润湿速度,该速度可预测±10%误差范围内的75%实验数据。

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