Abstract

Under dehumidifying conditions, the condensed water will directly affect the heat transfer and resistance characteristics of a fin-and-tube heat exchanger. The geometrical form of condensed water on fin surfaces of three different fin materials (i.e., copper fin, aluminum fin, and aluminum fin with hydrophilic layer) in a fin-and-circular-tube heat exchanger was experimentally studied in this paper. The effect of the three different fin materials on heat transfer and friction performance of the heat exchanger was researched, too. The results show that the condensation state on the surface of copper fin and aluminum fin are dropwise condensation. The condensation state on the surface of the aluminum fin with the hydrophilic layer is film condensation. For the three different material fins, increasing the air velocity (ua,in) and relative humidity (RHin) of the inlet air can enhance the heat transfer of the heat exchanger. Friction factor (f) of the three different material fins decreases with the increase of ua,in, however, increases with the increase of RHin. At the same ua,in or RHin, Nusselt number (Nu) of the copper fin heat exchanger is the largest and Nu of the aluminum fin with hydrophilic layer is the smallest, f of the aluminum fin heat exchanger is the largest and f of the aluminum fin with hydrophilic layer is the smallest. Under the identical pumping power constrain, the comprehensive heat transfer performance of the copper fin heat exchanger is the best for the studied cases.

Highlights

  • Fin-and-tube heat exchanger (FTHE) is a common structural form of a heat exchanger.The heat transfer between the cold and hot fluid is carried out, the refrigerant is in the tube, and the air is outside the tube

  • When the fin surface temperature of the FTHE is lower than the dew point temperature of the airflow through the heat exchanger, the moisture in the air will be condensed on the fin surface

  • FTHEs with different fin material at τ = 0–300 s under the geometry form movement of condensate droplets on can the aluminum fin surfaces areand shown in◦Figurecharacteristics

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Summary

Experimental Study of the Air Side

Exchanger with Different Fin Material in Dehumidifying Conditions. Key Laboratory of Railway Vehicle Thermal Engineering, Lanzhou Jiaotong University, Ministry of Education of China, Lanzhou 730070, China. Key Laboratory of Yellow River Water Environment in Gansu Province, Lanzhou 730070, China

Introduction
Experimental Apparatus
Method
Geometry
Comparing
Condensate
Effect
10. Effect
12 Cinis Figure given in can be seen from 12a
Findings
Conclusions
Full Text
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