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Direct-contact heat transfer of single droplets in dispersed flow film boiling: Experiment and model assessment

机译:单滴的直接接触传热在分散流动膜沸腾中的单滴:实验和模型评估

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Direct-contact heat transfer of a single saturated droplet upon colliding with a heated wall in the regime of film boiling was experimentally investigated using high-resolution infrared thermometry technique. This technique provides transient local wall heat flux distributions during the entire collision period. In addition, various physical parameters relevant to the mechanistic modelling of these phenomena can be measured. The obtained results show that when single droplets dynamically collide with a heated surface during film boiling above the Leidenfrost point temperature, typically determined by droplet collision dynamics without considering thermal interactions, small spots of high heat flux due to localized wetting during the collision appear as increasing Wen. A systematic comparison revealed that existing theoretical models do not consider these observed physical phenomena and have lacks in accurately predicting the amount of direct-contact heat transfer. The necessity of developing an improved model to account for the effects of local wetting during the direct-contact heat transfer process is emphasized.
机译:使用高分辨率红外测温技术实验研究了在薄膜沸腾制度中与加热壁碰撞时的单饱和液滴的直接接触热传递。该技术在整个碰撞期间提供瞬态局部壁热通量分布。此外,可以测量与这些现象的机械建模相关的各种物理参数。得到的结果表明,当单液滴在薄膜沸腾期间与加热表面动态碰撞,通常通过液滴碰撞动态确定而不考虑热相互作用,由于碰撞期间由于局部润湿而导致的高热量通量的小斑点出现文。系统的比较显示,现有的理论模型不考虑这些观察到的物理现象,并且缺乏准确预测直接热传递的量。强调了开发改进模型的必要性,以解释在直接接触传热过程中局部润湿过程中的局部润湿的影响。

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