As an efficient heat exchange device, the evaluation of the heat exchange efficiency of inclined double-layer tube aluminum tube fin evaporator is crucial to optimizing the performance of the refrigeration system.
As an efficient heat exchange device, the evaluation of the heat exchange efficiency of inclined double-layer tube aluminum tube fin evaporator is crucial to optimizing the performance of the refrigeration system.
Under low temperature and high humidity conditions, when the evaporator surface temperature is lower than the air dew point temperature, the water vapor in the air will quickly condense and form frost on the fins and aluminum tube surfaces.
In a four-layer pipe aluminum tube fin evaporator, there is a close and complex relationship between the fin spacing and the air circulation resistance, which profoundly affects the overall performance of the evaporator.
The internal space layout of cold chain logistics equipment is diverse and compact, and the structural characteristics of the oblique double-layer tube aluminum tube fin evaporator have unique adaptability.