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Energetic Liquid Droplet Boiling on High-Temperature Metal Surfaces

机译:高温金属表面上的高能液滴沸腾

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Experimental studies of thermal interactions of cold liquid droplets impinging on metal surfaces have been performed and the result of these studies are summarized in this paper. In these experiments rapid, energetic (explosive) breakup of the liquid drops were observed using high-speed video camera recordings. These energetic interactions occurred over a range of high temperatures of the metal surfaces and varied with the type of metal employed. Three metals were used in the study, namely, copper, brass, and stainless steel. The test sections included curved-plate (sections machined from metal cylinders) and flat-plate geometries. The choice of metals was determined by the objective of establishing the influence of thermal diffusivity of the hot material on the thermal interaction between the cold liquid droplet and the hot metal surface, and the two metal surface geometries were used to study the influence of droplet spreading behavior after impact with the hot metal surface. Metal surface temperatures ranged from 30 degrees C to 700 degrees C and controlled single water droplets at a temperature of 25 degrees C were released from a specially designed rig employing a small fast-opening/closing solenoid valve. Experimental results are presented in this paper that demonstrate the processes that occur during the interaction of the droplet with the hot metal surface during a time frame of 1 to 20 ms.
机译:进行了冷液滴撞击在金属表面上的热相互作用的实验研究,并总结了这些研究的结果。在这些实验中,使用高速视频摄像机记录可以观察到液滴的快速,高能(爆炸性)破裂。这些能量相互作用在金属表面的高温范围内发生,并随所用金属的类型而变化。研究中使用了三种金属,即铜,黄铜和不锈钢。测试部分包括弯曲板(由金属圆柱体加工而成的部分)和平板几何形状。确定金属的选择的目的是确定热材料的热扩散率对冷液滴与热金属表面之间的热相互作用的影响,并使用两种金属表面几何形状研究液滴散布的影响与铁水表面碰撞后的行为。金属表面温度从30摄氏度到700摄氏度不等,温度从25摄氏度下降到受控的单个水滴是从专门设计的装置中释放出来的,该装置使用小型快速打开/关闭电磁阀。本文提供了实验结果,这些实验结果演示了在1到20 ms的时间范围内,液滴与铁水表面相互作用期间发生的过程。

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