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An experimental study on the effects of frosting conditions on frost distribution and growth on finned tube heat exchangers

机译:翅片管换热器上结霜条件对结霜分布和结霜影响的实验研究

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Recently, the authors have published a paper which provided the frost distribution and growth along the airflow direction of finned tube heat exchangers (FTHXs), and demonstrated that some frost was accumulated on the edge of windward fins at a given frosting condition. As a follow-up to the work reported in the previous paper, in the current paper, the effects of frosting conditions on frost distribution and growth characteristics of FTHXs with different fin pitches were experimentally investigated. The results showed that the protruded thickness of frost on the edge of windward fins and the ratio of the frost mass on the edge of windward fins to that on the entire FTHX were both increased with the increases in air temperature (T-a) and relative humidity (RHa), but decreased with an increase in initial air face velocity (v(a)). In addition, the effects of RHa on the mass ratio were more significant than those of T-a and v(a). Furthermore, the averaged frost density on the edge of windward fins was increased with an increase in RHa; and that on the surfaces of fins and tubes was increased with an increase in v(a), but decreased with an increase in RHa. (C) 2018 Published by Elsevier Ltd.
机译:最近,作者发表了一篇论文,提供了沿着翅片管换热器(FTHXs)的气流方向的霜分布和增长,并证明了在给定的结霜条件下,某些霜在迎风翅片的边缘上积累。作为前一篇论文的后续工作,本论文通过实验研究了结霜条件对不同翅片节距的FTHX的结霜分布和生长特性的影响。结果表明,随着空气温度(Ta)和相对湿度的增加,迎风鳍边缘的霜冻凸出厚度以及迎风鳍边缘的霜冻质量与整个FTHX的比值均增加。 RHa),但随着初始空气面速度(v(a))的增加而降低。另外,RHa对质量比的影响比T-a和v(a)的影响更大。此外,随着RHa的增加,迎风鳍边缘的平均霜冻密度也增加了;翅片和管子表面的v(a)随v(a)的增加而增加,但随RHa的增加而减小。 (C)2018由Elsevier Ltd.发布

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