
refrigeration dryer , Iran
Refrigerated air dryers utilize a closed refrigeration circuit with R134a or R410a refrigerant. Their nominal capacity ranges from 10 to 5000 liters per second under standard conditions. The pressure dew point at the outlet is set at a constant 3±°C at 7 bar pressure. Energy efficiency is rated between 0.8 to 1.2 kW per 100 liters per second. Condensers and evaporators are copper tube and aluminum fin coils with 14 fins per inch. Screw or scroll compressors with IE4 motors and IP55 protection ensure reliable operation. A digital PID controller manages evaporator temperature with 0.5°C accuracy.
The dryer structure includes a cyclone separator with 99% efficiency for bulk moisture removal. Air-to-air heat exchangers with 85% efficiency reduce the systems thermal load. Activated carbon filters adsorb particles down to 0.01 microns in size. Modular solenoid valves with under 2-second response enable precise flow control. The housing is constructed from galvanized sheet steel with an 80-micron epoxy coating. Operating sound pressure level is maintained below 65 dB at one meter. An intelligent alarm system monitors filter differential pressure and abnormal temperatures. Optimal performance is typically within an ambient temperature range of 5 to 45°C.You can order and buy refrigeration dryer from Iran by contacting us through whatsaap and email.
WEBSITE: refrigeration dryer Iran
Operating Principles of a Refrigerated Air Dryer
A refrigerated air dryer removes moisture from compressed air using a refrigeration cycle. First, the warm compressed air enters an air-to-air heat exchanger and is partially cooled. Then, the air flows into the evaporator, where it comes into contact with a cold refrigerant. At this stage, the air temperature is reduced to the desired pressure dew point, typically +3 to +10 degrees Celsius. Consequently, the water vapor in the air condenses and separates as water droplets. These droplets are collected by a moisture separator and drained from the system. The dry, cold air exiting the evaporator passes back through the primary heat exchanger, exchanging heat with the incoming warm air. This process reheats the dry air and improves energy efficiency. Finally, the dry air at a suitable temperature is delivered to the consumption system.

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