Heat and Mass Transfer Characteristics of a Finned-Tube Evaporator Under Frosting Conditions

Y. H. Kim, Y. J. Park, Yong Chan Kim, S. Shim, S. Oh, J. S. Lee
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Abstract

An experimental study was performed to investigate the heat and mass transfer characteristics of a finned-tube evaporator coil utilized in a domestic refrigerator under frosting conditions. Airside heat transfer coefficient was measured as a function of air temperature, humidity ratio, air velocity, and evaporating temperature. In addition, frost thickness was monitored and measured by visualization tests during frosting operation. Based on the experimental results, the degradation of heat transfer performance due to frost formation was explored as a function of operating parameters. The rate of frost formation on the evaporator increases at relatively high humidity, high airflow rate, low inlet air temperature and low refrigerant temperature. As the frost thickness increases, airflow rate gradually decreases, while the capacity increases at the early stage of frost formation and then significantly drops.
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结霜条件下翅片管蒸发器的传热传质特性
对家用冰箱在结霜条件下翅片管式蒸发器盘管的传热传质特性进行了实验研究。空气侧换热系数作为空气温度、湿度比、空气速度和蒸发温度的函数来测量。另外,通过可视化试验对结霜过程中的霜厚进行了监测和测量。基于实验结果,探讨了结霜对传热性能的影响与运行参数的关系。在相对较高的湿度、较大的气流速率、较低的进风温度和较低的制冷剂温度下,蒸发器上的结霜率增加。随着结霜厚度的增加,风量逐渐减小,而风量在结霜初期增加,然后显著下降。
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