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Refrigerant condensing temperatures

Technical information Industrial Condensing Temperature

Condensing Temperature

To ensure continuous refrigeration effect in the evaporator, the refrigerant vapor should be condensed in the condenser at the same speed that is created in the evaporator. In other words, the heat must leave the boundaries of the system in the capacitor at the same rate that it is absorbed by the refrigerant when he passes through the evaporator, the suction line of the compressor I. Thus, any increase in the rate of evaporation will require similar increase in the rate of heat removal in the condenser.

Speed dissipation of heat from the condenser to the condensed medium is a function of three factors: the size of the surface heat transfer coefficient of the conductivity of the surface of the condenser and the temperature difference between the refrigerant vapor and condensed medium. For this capacitor, with a surface area of the condensation coefficient of the conductivity are recorded its design. Thus, the rate of heat removal through the walls die capacitor becomes a function of the temperature difference between the refrigerant vapor and die secondary condensation.

Since the condensation temperature is always equal to the temperature of condensation average plus the temperature difference across the heat transfer surfaces, it follows that the condensing temperature is directly dependent on the temperature of condensation average. Therefore, the temperature of condensation of the environment increases, as it will be in hot summer days the temperature of condensation of the refrigerant vapor is also increasing. Conversely, a low average temperature of condensation produces high underside temperatures...

 
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