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Frost-Air Interface Characterization Under Natural Convection

机译:自然对流下的霜空界面表征

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Surface frosting from atmospheric humidity under natural convection is encountered in conventional refrigeration systems, cryogenic surgery, and cryogenic stress relief of die casting metal forming applications. To advance the predictability of frost initiation and formation processes, this study reports a microscopic analysis of frost growth on a flat surface during the onset period of freezing when subcooled droplets are formed and changed to the ice phase. The onset of freezing is quantified by the mean droplet size and ice particle fractions at a critical time (when water droplet freezing point is reached) with the aid of a video microscope. An early-stage frost formation model with effective parameters is demonstrated to provide the important information for the transition to the steady-growth model. The model results are compared with the measured air-frost surface temperatures at different cooling and ambient boundary conditions, using holographic interferometry. The comparison between the model prediction and experimental results demonstrates the sensitivity of effective parameters in simulating the frost thickness and air-frost interface temperature.
机译:在常规制冷系统,低温手术和压铸金属成形应用中的低温应力消除中,自然对流下的大气湿度会导致表面结霜。为了提高霜冻萌生和形成过程的可预测性,本研究报告了在冷冻开始时形成过冷液滴并转变为冰相时,在平坦表面上霜冻生长的微观分析。借助于视频显微镜,通过在关键时刻(达到水滴凝固点时)的平均液滴尺寸和冰粒分数来量化冻结的开始时间。演示了具有有效参数的早期霜冻形成模型,可为过渡到稳定生长模型提供重要信息。使用全息干涉法,将模型结果与在不同冷却和环境边界条件下测得的气霜表面温度进行比较。模型预测与实验结果的比较表明,有效参数在模拟霜冻厚度和空气-霜冻界面温度方面具有敏感性。

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