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TASHIKA SCREW CHILLER

A SCREW CHILLER GETS ITS NAME FROM ITS KEY COMPONENT, THE SCREW COMPRESSOR. IN THE REFRIGERATION PROCESS, THE GAS REFRIGERANT FROM THE EVAPORATOR UNDERGOES ADIABATIC COMPRESSION BY THE SCREW COMPRESSOR, BECOMING HIGH TEMPERATURE AND HIGH PRESSURE. THIS COMPRESSED GAS REFRIGERANT IS THEN COOLED AND CONDENSED AT CONSTANT PRESSURE IN THE CONDENSER. AFTER CONDENSATION, IT TRANSFORMS INTO LIQUID REFRIGERANT, WHICH SUBSEQUENTLY EXPANDS TO LOW PRESSURE THROUGH THE THROTTLE VALVE, BECOMING A GAS-LIQUID MIXTURE. THE LIQUID REFRIGERANT, NOW AT LOW TEMPERATURE AND LOW PRESSURE, ABSORBS THE HEAT OF THE COOLED MATERIAL IN THE EVAPORATOR AND REVERTS TO GASEOUS REFRIGERANT. THE GASEOUS REFRIGERANT RE-ENTERS THE COMPRESSOR THROUGH THE PIPELINE, INITIATING A NEW CYCLE. THESE FOUR PROCESSES CONSTITUTE THE REFRIGERATION CYCLE AND FORM THE CORE WORKING PRINCIPLES OF THE SCREW CHILLER.A SCREW CHILLER GETS ITS NAME FROM ITS KEY COMPONENT, THE SCREW COMPRESSOR. IN THE REFRIGERATION PROCESS, THE GAS REFRIGERANT FROM THE EVAPORATOR UNDERGOES ADIABATIC COMPRESSION BY THE SCREW COMPRESSOR, BECOMING HIGH TEMPERATURE AND HIGH PRESSURE. THIS COMPRESSED GAS REFRIGERANT IS THEN COOLED AND CONDENSED AT CONSTANT PRESSURE IN THE CONDENSER. AFTER CONDENSATION, IT TRANSFORMS INTO LIQUID REFRIGERANT, WHICH SUBSEQUENTLY EXPANDS TO LOW PRESSURE THROUGH THE THROTTLE VALVE, BECOMING A GAS-LIQUID MIXTURE. THE LIQUID REFRIGERANT, NOW AT LOW TEMPERATURE AND LOW PRESSURE, ABSORBS THE HEAT OF THE COOLED MATERIAL IN THE EVAPORATOR AND REVERTS TO GASEOUS REFRIGERANT. THE GASEOUS REFRIGERANT RE-ENTERS THE COMPRESSOR THROUGH THE PIPELINE, INITIATING A NEW CYCLE. THESE FOUR PROCESSES CONSTITUTE THE REFRIGERATION CYCLE AND FORM THE CORE WORKING PRINCIPLES OF THE SCREW CHILLER.


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