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Experimental Study and Fractal Analysis of Frost Crystals During Frost Formation Process

机译:霜形成过程中霜晶体的实验研究与分形分析

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The frost crystals present needle-like shapes and dendrite growth patterns at the initial period of the frost formation on cold surfaces. They gradually turn into plane-like shapes with time disappear. After frost crystals cover the whole cold surface, the frost formation steps into the frost layer growth period. During this period, as the frost layer becomes thicker, its surface temperature can be high enough to result the frost crystals melt and fall down periodically. It is the growth pattern of the frost crystals that results in a multiple-step ascending tendency of the fractal dimension with time. The physical meaning of the fractal dimension and the volume fraction in describing the frost layer characteristics are also discussed in this paper and it is pointed out that it is necessary to introduce a fractal parameter in modeling frost formation process. The fractal dimension may well define the frost crystal shape and structure features; the volume fraction is directly proportional to the frost layer density, and has a very weak relation with the frost crystal shape and structure features.
机译:霜晶体存在在冷表面上霜形成的初始时期的针状形状和树突生长模式。它们随着时间的推移而逐渐变成平面形状。霜冻晶体覆盖整个冷表面后,将霜形成步骤进入霜层生长期。在此期间,随着霜层变厚,其表面温度可以足够高,以使霜晶体熔化并定期下降。它是霜晶体的生长模式,其导致分形尺寸随时间的多步升趋势。本文还讨论了分形尺寸的物理含义和描述霜层特性的体积分数,并指出需要在建模霜形成过程中引入分形参数。分形尺寸可以很好地限定霜晶体形状和结构特征;体积分数与霜层密度成正比,并且与霜晶体形状和结构特征具有非常弱的关系。

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