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ICE AND WATER FILM GROWTH FROM INCOMING SUPERCOOLED DROPLETS

机译:过冷的滴入导致冰和水膜的增长

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摘要

A one-dimensional model for ice growth in the presence of presence of an incoming supercooled fluid is developed by specifying a Stefan problem. A number of assumptions are made, relevant to relatively thin ice and water layers, which allow the thermal problem to be solved exactly in terms of the layer thicknesses and ambient conditions. The ice thickness is then determined by combining the mass balance with the phase change condition to reduce the problem to a single first-order ordinary differential equation, which requires a numerical solution. Quantities such as the water film thickness and temperature profiles in the ice and water can be determined easily once the ice thickness is known. Results are presented showing ice and water growth, subject to various ambient conditions. Qualitative agreement with experiment is also shown and the implications of the results to the physical process discussed.
机译:通过指定Stefan问题,建立了在存在进入的过冷流体的情况下冰生长的一维模型。对于与相对薄的冰层和水层相关的许多假设,可以根据层厚度和环境条件精确地解决热问题。然后通过将质量平衡与相变条件相结合以将问题简化为单个一阶常微分方程,从而确定数值,从而确定冰的厚度。一旦知道冰的厚度,就可以轻松确定诸如水膜厚度以及冰和水中温度曲线等数量。呈现的结果显示了在各种环境条件下冰和水的生长。还显示了与实验的定性一致性,并讨论了结果对物理过程的影响。

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