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Quantitative analysis of frosting characteristics at ultra-low temperatures under forced convection conditions

机译:在强制对流条件下超低温度下磨砂特性的定量分析

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The quantitative analysis of frosting characteristics was conducted at ultra-low temperatures under forced convection conditions, which may deepen the understanding of frosting mechanism on air source heat pump (ASHP). The frosting experiments were performed under various experimental conditions. The correlations for the frost thickness and density were proposed as functions of Reynolds and Fourier number, absolute humidity, and non-dimensional temperature. The frost layer growth behavior was predicted within 6% of the maximum error when the predicted data of the correlation and the testing data were compared. A parametric study was performed, and the effect of the frosting parameters on the frost layer growth was identified. Consequently, the frosting behavior on the devices that operate at ultra-low temperatures and forced convection conditions can be identified using the correlations proposed in this study. (c) 2021 Elsevier B.V. All rights reserved.
机译:在强制对流条件下的超低温度下进行磨砂特性的定量分析,这可能会加深对空气源热泵(ASHP)的冻结机制的理解。 在各种实验条件下进行糖霜实验。 提出了霜厚度和密度的相关性作为雷诺和傅立叶数,绝对湿度和非尺寸温度的功能。 当比较相关的数据和测试数据的预测数据时,将在最大误差的6%内预测霜层生长行为。 进行了参数研究,鉴定了结霜参数对霜层生长的影响。 因此,可以使用本研究中提出的相关性来识别在超低温度和强制对流条件下操作的装置上的磨砂行为。 (c)2021 elestvier b.v.保留所有权利。

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