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Experimental and numerical study of frost formation by natural convection over a cold horizontal circular cylinder

机译:水平冷圆柱上自然对流形成霜的实验和数值研究

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摘要

Frost growth over a cold horizontal circular cylinder by natural convection has been investigated experimentally and numerically. Ambient air relative humidity, temperature and the cold surface temperature have been varied between 30% and 60%, 20 and 35 ℃ and -10 and -4 ℃ respectively. For detail analysis a mathematical model is used to simulate numerically frost formation process. For the first time, multistage modeling and supersaturation assumption is taken into account in the modeling of frost formation under natural convection condition. Comparisons are performed among the results of numerical model and experimental measurements and it is shown that the present model can be used more efficiently to determine frost growth and its properties. Based on the results, new correlations are developed for frost properties.
机译:已经通过实验和数值研究了自然对流作用下冷卧式圆柱体上的霜冻生长。环境空气相对湿度,温度和冷表面温度分别在30%和60%,20和35℃以及-10和-4℃之间变化。为了进行详细分析,使用数学模型来模拟霜的形成过程。在自然对流条件下霜冻的建模中,首次考虑了多阶段建模和过饱和假设。在数值模型和实验测量结果之间进行了比较,结果表明本模型可以更有效地用于确定霜冻的生长及其特性。根据结果​​,为霜冻特性开发了新的相关性。

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