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Observations of Early-Stage Frost Formation on a Cold Plate in Atmospheric Air Flow

机译:大气气流中冷板上早期霜形成的观察

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The present study is conducted to investigate the frost formation on a cold plate in atmospheric air flow by means of experimental and theoretical methods. In order to provide observations for the early stage of the frost growth process, a microscopic image system is used to record the pattern and the thickness of the frost layer per five seconds after the onset of frost formation. In this study, a multiple-step ascending frost growth pattern caused by melting of frost crystals at the frost surface has been observed. Effects of velocity, temperature and relative humidity of air (V, T_a, and φ) are studied, and the surface temperature of the cold plate (T_w) is also varied. The considered ranges of these dominant variables are: 2≤V≤13 m/s, 20≤T_a≤35℃, 40 percent ≤φ≤80 percent, and ― 13≤T_w≤― 2℃. The theoretical model presented by Cheng and Cheng for predicting the frost growth rate during the frost layer growth period is verified. Results show that the predictions of frost growth rate by the model agree with the experiment data, especially for the frost layer growth period.
机译:本研究旨在通过实验和理论方法研究大气气流中冷板上的霜冻形成。为了提供霜生长过程的早期阶段的观察结果,使用显微图像系统在霜形成开始后每五秒钟记录霜层的图案和厚度。在这项研究中,已经观察到由于霜表面的霜晶体融化而导致的多步上升霜生长模式。研究了空气的速度,温度和相对湿度(V,T_a和φ)的影响,冷板的表面温度(T_w)也发生了变化。这些主要变量的考虑范围为:2≤V≤13m / s,20≤T_a≤35℃,40%≤φ≤80%和― 13≤T_w≤― 2℃。验证了Cheng和Cheng提出的用于预测霜冻层生长期中霜冻生长速率的理论模型。结果表明,该模型对霜冻生长速率的预测与实验数据吻合较好,特别是对于霜冻层生长期。

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