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Effect of surface property of molten metal pools on triggering of vapor explosions in water droplet impingement

机译:熔融金属熔池表面特性对水滴撞击中蒸气爆炸触发的影响

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摘要

Small-scale experiments have been conducted to investigate the triggering mechanism of vapor explosions. In order to attain good repeatability and visibility, a smooth round water droplet was impinged onto a molten alloy surface. This configuration suppresses pre-mixing events prior to triggering.rnSix molten metal and alloys were used as the pool liquid. The lower limit of the contact temperature in the vapor explosion region closely agrees with the spontaneous bubble nucleation temperature of water. The upper limit of the initial molten alloy temperature decreases when an oxide layer forms on the surface causing an increase of the emissivity of thermal radiation that has a stabilizing effect on the vapor film. When an oxide layer was formed on the surface, a water droplet was occasionally entrapped into a molten alloy dome, since the oxide layer prevents the droplet from evaporating coherently. The vapor explosion region obtained for the mirror surface is a conservative estimate, since that for the oxide surface fell into the internal region of the vapor explosion for the mirror surface.
机译:已经进行了小型实验以研究蒸气爆炸的触发机制。为了获得良好的重复性和可见性,将光滑的圆形水滴撞击到熔融合金表面上。这种配置抑制了触发之前的预混合事件。六种熔融金属和合金被用作混合液。蒸气爆炸区域中接触温度的下限与水的自发气泡成核温度非常一致。当在表面上形成氧化物层时,初始熔融合金温度的上限降低,从而导致对蒸气膜具有稳定作用的热辐射的发射率增加。当在表面上形成氧化物层时,由于氧化物层阻止了液滴的连贯蒸发,因此水滴有时会夹杂在熔融的合金穹顶中。对于镜面获得的蒸气爆炸区域是保守估计,因为氧化物表面的蒸气爆炸区域落入镜面的蒸气爆炸的内部区域。

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