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Refrigerator condensation is achieved with air-cooled, water-cooled or evaporative condensers. The evaporative type is installed above the ice machine, the water-cooled condenser is installed below the ice machine or below the refrigeration system, and the air-cooled condenser is installed with the ice machine according to the actual situation. It can also be installed outdoors. If desired, water-cooled condensers can be used on board or on the coast, using sea water for cooling. Evaporative cooling can be used at ambient air temperatures, but it is not suitable for use in water-cooled or air-cooled refrigeration in terms of efficiency and economy.
Ice picking cycle When the ice reaches the required thickness (the thickness can be arbitrarily selected by the operator/user), the hot air discharged from the compressor is redirected back into the ice collector wall to replace the low temperature liquid refrigerant. In this way, a film of water is formed between the ice and the wall of the evaporation tube. This water film will act as a lubricant when the ice falls freely into the groove below by gravity. The water produced during the ice picking cycle will pass through the porous tank back into the water reservoir, which also prevents the wet ice from being discharged by the machine.
Refrigerator condensation is achieved with air-cooled, water-cooled or evaporative condensers. The evaporative type is installed above the ice machine, the water-cooled condenser is installed below the ice machine or below the refrigeration system, and the air-cooled condenser is installed with the ice machine according to the actual situation. It can also be installed outdoors. If desired, water-cooled condensers can be used on board or on the coast, using sea water for cooling. Evaporative cooling can be used at ambient air temperatures, but it is not suitable for use in water-cooled or air-cooled refrigeration in terms of efficiency and economy.
Ice picking cycle When the ice reaches the required thickness (the thickness can be arbitrarily selected by the operator/user), the hot air discharged from the compressor is redirected back into the ice collector wall to replace the low temperature liquid refrigerant. In this way, a film of water is formed between the ice and the wall of the evaporation tube. This water film will act as a lubricant when the ice falls freely into the groove below by gravity. The water produced during the ice picking cycle will pass through the porous tank back into the water reservoir, which also prevents the wet ice from being discharged by the machine.
Through the replenishing water valve, the water automatically enters a water storage tank, and then the water is pumped through the flow control valve to the diverter head, where the water is evenly sprayed onto the surface of the ice maker, flowing like a curtain of water. On the wall of the ice maker, the water is cooled to the freezing point, and the water that is not frozen by evaporation will flow into the water storage tank through the porous tank, and the cycle will resume.
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