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Eco friendly high efficiency electric air cooler heat exchanger pupms
AW09/B-QPNHS, HISEER high efficiency air source heat pump. ASHPs
supply more energy than they consume. By extracting heat from the
surrounding air, the heat energy released can be up to 4 times the
energy required to power the equipment.
AW09/B-QPNHS, stainless steel cabinet, with internal Wilo water
pump and electric heater. It is heating & cooling unit, single
phase, R410a refrigeration, designed and tested by EN14511,
approved by TUV china branch, adopt the following world famous
parts:
* SWEP or GEA plate type heat exchanger
* Siemens controller
* Daikin scroll compressor
* Schneider A/C contactor
* Emersion thermal expansion valve
* Emersion dry filter
*Soft start is standard part
Air-source heat pumps, often used in moderate climates, use the
difference between outdoor air temperatures and indoor air
temperatures to cool and heat your home, at the same time to supply
domestic hot water.
How does a air source heat pump work?
An air source heat pump is made up of three main components - an
evaporator coil, a compressor, and a heat exchanger.
The evaporator coil is fitted to the outside of an external wall.
It absorbs heat from the outside air. The compressor pushes the
refrigerant gas through the system compressing it until it is at
the desired temperature (typically up to 35-40 degrees Celcius).
The hot refrigerant then passes through the heat exchanger where
the heat from the refrigerant is transferred to water or air.
the operation of a heat pump can be reversed and used to cool down
the air in a building by radiating it outside - behaving in exactly
the same way as a refrigerator.
Coefficient of performance
Heat pumps are measured by their coefficient of performance (COP). The COP for air source heat pumps is very similar to that for ground source heat pumps at approximately 2-3. With a COP for instance of 3, 3 units of heat are produced for every 1 unit of electricity consumed. (The two free units of heating were extracted from the outside air). Even with ambient air temperatures of -10 to -15 degrees Celsius, an air source heat pump can extract useful heat (i.e. > 1 unit of heat generated per unit of electricity consumed).
AW09/B-QPNHS technical data
AIR TO WATER HEAT PUMP | AW09/B-QPNHS | |
Heat output/Power consumption at 7/35℃ | kW | 9.5/2.6 |
Heat output/Power consumption at 7/45℃ | kW | 9.1/3.0 |
Heat output/Power consumption at 7/55℃ | kW | 8.8/3.8 |
Heat output/Power consumption at 2/35℃ | kW | 8.2/2.5 |
Heat output/Power consumption at 2/45℃ | kW | 7.9/3.0 |
Heat output/Power consumption at -7/35℃ | kW | 6.2/2.5 |
Heat output/Power consumption at -7/45℃ | kW | 6.1/3.0 |
Cool output/Power consumption at 35/7℃ | KW | 7.8/2.9 |
Starting current | A | 30 |
Soft-start relay |
| Include as standard |
Power |
| 220-240V/1PH/50Hz |
Compressor |
| DAIKIN Scrol |
Condenser |
| Brazed late heat exchanger |
Nominal flow heating medium | l/s | 0.45 |
Internal pressure drop at nominal flow | kPa | 18 |
Air flow | m3/h | 3000 |
Nominal output fan | W | 220 |
Max outgoing hating medium temperature | ℃ | 55℃ |
Dimensions(HxWxD) | mm | 1050x1050x45 |
Pipe connector |
| DN2 |
Weight | kg | 125 |
The above data is tested by EN14511 |