Heat Recovery Unit
50 products found
The heat recovery process channels the refrigerant to a heat exchanger.
Compared with oil-fired boilers, waste heat recovery hot-water units have noise-free and pollution-free qualities.
Very low noise levels – essential as MVHR systems are constant-running
The vapor compression cycle is the basic design of a HVAC system.
Heat recovery ventilation unit for through the wall installation
Standard solution for the management of compact Air Handling Units and active/passive Heat Recovery Units
They are connected by a hydraulic circuit, suitably insulated, in which thermal vector flows by means of a pump.
A coil is placed near a hot spring while the other is near the user zone.
he system consist of two or more finned coils with the function of providing a double thermal exchange.
Exhaust air transfers heat to a thermal-vector fluid, water or refrigerant mixture, which will transport it to the user zone.
Another way to recover heat is the “run-around coil” system.
ygroscopic and non-hygroscopic or for recovering and transferring heat and possibly moisture from the exhaust air to supply air
These enthalpy rotors are ideal where there is a need for high total recovery
Enthalpy rotors with Silica Gel used on aluminum substrate for high performance.
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ensure exclusion of contaminates in the air stream whilst transferring water vapor molecules.
Enthalpy rotors with 4A Molecular Sieve used on aluminum substrate to limit the cross contamination to absolute minimum
he lateral cover plates are removable so that both the motor side and the rotor are easily accessible.
The frame as well as the covers are made of aluminum.
They absorb, during their rotation, heat from the outgoing air that they release again during the rotating.
simThis system comprises slowly rotating storage structures as honeycomb devices that rotate between the heat exchanging media.
simple cleaning and effective collection of condensate.
Plate heat exchanger is made out of aluminum, or optionally stainless steel or polycarbonate, plates and turbulence channels.
Special sealing maintains separated supply flow and exhaust flow.
Plates constituting the heat exchanger can have different spacing according the type of application.
t permits a very low energy consumption, but efficiency is not more than 60%.
Heat is transferred directly from a hot air flow to a cold air flow and air movement takes place in a Cross Flow configuration.
Air to air heat recovery is a Plate Exchanger or a system of Plate Exchangers without parts in motion
As mentioned earlier, there are numerous applications that benefit from employing heat recovery technology.