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A model for droplet evaporation near Leidenfrost point

机译:莱顿弗罗斯特点附近的液滴蒸发模型

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The droplet evaporation process after impinging on a solid wall near Leidenfrost point is theoretically analyzed. Considering the change of heat transfer effective in the evaporation process, it is divided into recoil stage and spherical stage, and the heat transfer models in these two stages are built, respectively. The effect of initial Weber number, initial droplet diameter, solid surface superheat and wett-bility are included in the models. A correlation for predicting evaporation lifetime is obtained based on the theoretical analysis and experimental results. By comparing analysis results with experimental data, it is concluded that the evaporation process can be predicted by present model. The results imply that Leidenfrost point may be not the turning point of heat transfer mechanism. The effect of drop size and Weber number are also analyzed.
机译:从理论上分析了撞击莱顿弗罗斯特点附近的固体壁后的液滴蒸发过程。考虑到蒸发过程中有效传热的变化,将其分为反冲阶段和球形阶段,分别建立了这两个阶段的传热模型。模型中包括初始韦伯数,初始液滴直径,固体表面过热和润湿性的影响。基于理论分析和实验结果,获得了预测蒸发寿命的相关性。通过将分析结果与实验数据进行比较,得出可以用本模型预测蒸发过程的结论。结果表明莱顿弗罗斯特点可能不是传热机制的转折点。还分析了墨滴大小和韦伯数的影响。

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