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LUMPED HEAT AND MASS TRANSFER MODEL OF THE FROST FORMATION PROCESS

机译:冻融形成过程的总热量和传质模型

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An important problem in the refrigeration industry is the formation of frost layers on sub-freezing surfaces of air coolers. The frost growth process is described by a set of partial differential equations that combines both the latent and sensible heat and mass transfer. A direct method to predict the heat transfer coefficient from the frosted surface would be desirable for system design engineers. We present a framework to determine the heat transfer coefficient from a frosted surface. The sensible and latent heat transfer coefficients are lumped into a single term, which is convenient for calculating the total heat transfer from the surface. The sensible portion of the heat transfer is calculated from common heat transfer correlation for flow over a surface, while the latent heat term is proportional to the growth in frost thickness. Any frost thickness growth model can be used with the described method, which has the added benefit of calculating the ratio of sensible to latent heat transfer. The results of the model are compared to measurement and show excellent agreement.
机译:制冷工业中的一个重要问题是空气冷却器冻结表面上的霜层的形成。霜生长过程由一组偏微分方程描述,该部分微分方程结合了潜伏和明智的热量和传质。用于预测来自磨砂表面的传热系数的直接方法是理想的,对于系统设计工程师来说是期望的。我们提出了一种框架,用于确定从磨砂表面的传热系数。可明智的和潜热传递系数被簇被混在一期,这方便计算从表面的总热传递。传热的明智部分是根据表面流动的常见传热相关的,而潜伏术语与霜厚度的生长成比例。任何霜厚度生长模型都可以与所描述的方法一起使用,这具有计算比率与潜热传递的比率的额外益处。将模型的结果与测量结果进行比较,表现出良好的一致性。

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