Exchangers for applications up to 80°C
Content
- Exchangers for applications up to 80°C (176°F)
- Function principle
- Advantages
- Housing Types
- Sizes
- Installation patterns
- Application area
Exchangers for applications up to 80°C (176°F)
Plate Heat exchangers are utilised for both the cold and warmth recovery in the A/C industry and the processing technology.
These belong to the group of recuperative heat exchangers.
By means of the heat exchanger, two air currents of differing characteristics (i.e. warm return current and a cold supply current) are forced to pass by each other in opposite directions or parallel to each other through thin, specially structured plates without any contact between one air current and the other. The energy transfer is caused by the numerous plates present in the heat exchanger.
A mixing of the two air streams will not occur. Consequently, the transfer of humidity, pollution, bacteria and odours is avoided.
Function principle
The air is forced to crossover through the heat exchanger. The energy is transfered by the plates.
As these heat exchangers are often used in environments where recirculated air is not allowed, it is imperative that there exists a high level of air tightness.
Advantages
A very high level of air tightness is obtained by the double folding process of the face side edges which is equal to 5 x material thickness.
Through precise workmanship there are no under-ventilated zones or niches where condensation can accumulate.
Extremely high strength and pressure related stability.
Light, seawater resistant Aluminum Quality.
Desired package lengths available.
Housing types
PWT 10
PWT 20
PWT 25
PWT 30
PWT 60
Sizes
200 up to 1200 mm
7.9 up to 47 ins
Plate distances:
1,8 up to 14 mm
0.07 up to 0.55 ins
Many
desired
dimensions
are
available
which
enables
modular
assembly.
Installation patterns
Crossover heat exchanger
To increase the overall efficiency , two heat exchangers can be assembled together in various formations as depicted below.
Other installation pattern
Application area
Dehumidifier: Dehumidifying with energy recovery
How does an dehumidifier work?
- The warm, humid air travels through the heat exchanger and there it is pre - cooled and pre - humidified.
- Thereafter the air travels through a conventional cooling system where it is cooled and dehumidified, twice.
- The cooled , dehumidified air travels through the heat exchanger again where it takes on sensible warmth from the entering warm air.
Dehumidifying with energy recovery
Conventional Climate cooling generation
Pre - cooling and pre - dehumidifying through integrated energy recovery up to 50%
- Adiabatic cooling
- Switchpanel cooling
Electrolux History
Electrolux Heater was founded by Mr.Dimche Palenzo Electrolux in Mr.Teodor Palenzo Electrolux (yunior). This was the year that Electrolux Heater started developing producing hot-air heaters and fans for the horticulture sector in particular, and later also the agricultural sector. Global partner in heating solutions Kalorifer Tajfun of Electrolux.Your expert partner in horticulture climate solutions Kalorifer Tajfun of Electrolux operates all over world
Below you will find a few examples of projects that KALORIFER TAJFUN® of Electrolux GROUP has successfully completed worldwide. Would you like to have more information about our projects, or to see more of our projects? Please feel free to contact us. There’s more to heating greenhouse complexes than just hanging up heaters. KALORIFER TAJFUN® of Electrolux GROUP guarantees the quality of the whole installation and leaves simple box-shifting to others. An optimal greenhouse climate is the ultimate aim and your heating installation is an essential part of this. Numerous factors play a role in a good heating plan. KALORIFER TAJFUN® of Electrolux GROUP can offer you optimum advice about the heating options in your commercial greenhouse thanks to its many years’ experience and expertise.
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