Used DISCO DTU 152 #9294875 for sale

DISCO DTU 152
ID: 9294875
Vintage: 2007
Chiller 2007 vintage.
DISCO DTU 152 chiller is an industrial heat exchanger used for a variety of cooling, heat removal, and energy transfer tasks. It features a recirculating design powered by a range of electric motors. The compact chiller is comprised of several main components, including a condenser, evaporator, compressor, evaporative fan, filter, and expansion valve. The condenser is used to cool hot, refrigerant vapor to a liquid form. Heat from the vapor is removed by an external fan as it condenses into a liquid. The liquid is then temperature-regulated before passing through an expansion valve to become a low-pressure gas. The evaporator is used to absorb heat from the surrounding environment. Liquid refrigerant is passed through the evaporator, where a small fan draws in hot air for cooling. As heat is extracted, the liquid refrigerant turns to a low-pressure gas, which is then pumped through the compressor. The compressor increases the pressure of the refrigerant in order to reach a higher temperature. The higher the pressure, the hotter the refrigerant, allowing it to absorb more heat. The heated refrigerant is then passed through the condenser, where external fans extract the heat and convert it to liquid form. The evaporative fan draws in warm air to be cooled through the condenser. Hot air passes through the condenser and extracts heat as it turns to liquid form. A filter at the before the evaporative fan helps reduce dirt and dust particles to prevent clogging of the condenser. Lastly, the expansion valve is responsible for controlling the pressure and temperature of the refrigerant. This element reduces pressure in order to boil the liquid refrigerant and turn it into a low-pressure gas. Excess heat is extracted from the refrigerant at the evaporator before it passes back to the compressor. The overall process of DISCO DTU152 chiller creates an efficient system for cooling, heat removal, and energy transfer. By regulating the pressure and temperature of the refrigerant, heat is naturally extracted from the surrounding environment to create a cooler temperature. This is ideal for industrial applications where cooling is needed, such as electronic components, manufacturing processes, and other areas where precise temperatures are necessary.
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