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Jet impingement quenching phenomena for hot surfaces well above the limiting temperature for solid-liquid contact

机译:热表面的射流冲击淬火现象远高于固液接触的极限温度

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摘要

Experiments were conducted to understand the phenomena that happen just after a subcooled free-surface circular water jet impinges on a high temperature surface. A 2 mm-water-jet of 5-80 K subcooling and 3-15 m/s velocity was impinged on the flat surface of a cylindrical steel/brass block that was preheated to 500-600 ℃. The transient temperature data were recorded and used to predict the surface temperature by an inverse heat conduction technique. A high-speed video camera was also employed to capture the flow condition. It is found that for a certain period of time the surface temperature remains well above the thermodynamic limiting temperature that allows stable solid liquid contact. What happens during this period and what makes the surface temperature drop to the limiting temperature are important questions whose possible answers are given in this article. The cooling curves at the center of the impinging surface for different experimental conditions are also explained in relation with the limiting temperature and three characteristic regions having different types of flow patterns are identified.
机译:进行实验以了解在过冷的自由表面圆形水射流撞击高温表面后立即发生的现象。在预热至500-600℃的圆柱形钢/黄铜块的平面上撞击2 mm喷水,过冷度为5-80 K,速度为3-15 m / s。记录瞬时温度数据,并通过逆导热技术将其用于预测表面温度。还使用了高速摄像机来捕获流动状况。发现在一定的时间段内,表面温度保持远高于允许稳定的固液接触的热力学极限温度。在此期间发生什么以及使表面温度下降到极限温度的重要问题是本文可能给出的答案。还针对极限实验条件说明了在冲击表面中心的冷却曲线与极限温度的关系,并确定了具有不同流型的三个特征区域。

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