Functioning of a chiller
How does it work a chiller, simply employing a thermal transfer cycle through compression, evaporation and a condenser with a refrigerant gas as thermal vector and using heat exchangers.
How does it work a chiller, simply employing a thermal transfer cycle through compression, evaporation and a condenser with a refrigerant gas as thermal vector and using heat exchangers.
Brazed plate heat exchangers in thermoregulating units specifically developed for the recovery and refining of precious metals, working on reactors with pressurized water at a constant temperature of 135° C.
Fluids mixing in plate heat exchangers can only occur if a plate brakes for corrosion or cracking, not due to gaskets breaking, due to double protection and leakage alert they ensure.
Thermoregulation for battery pack and electric engines test bench, the switch from the thermal engine to the electric powertrain in electric cars requires new concepts and systems.
Swapping the primary and secondary circuit and reversing the flows in plate heat exchangers is usually possibile, with some exceptions. So that’s why it’s always better to ask for it in advance.
A refrigerator with a condenser/heater exchanger and an evaporator/cooler exchanger in reversible cycle at season’s change, that’s how a heat pump works providing both heating and conditioning.
Pitting and corrosion by chloride and acids concentrations under high temperatures levels can lead to plates perforation in plate heat exchangers.
Shell and tube exchangers combined with a chiller for biogas dehumidification in the treatment of the gas to be employed in cogeneration plants.
Thermoregulating units in Atex execution for a chemical production plant, with heat recovery on high temperature diathermic oil using special sloped U-design shell and tube heat exchangers.
High construction flexibility T COIL dimple jacket exchangers, customized on any heating and cooling needs of industrial processes, from food, chemical, pharma and further more.