High temperature water source heat pump with air source integral option for heat recovery
Dual source high temperature heat pump that maximises efficiencies by using either water source when available or air source as a back up . Produce high temperature 90°C heating in a single pass provides cooling while making hot water maiming heat recovery
Technical features as per page 2
Dual mode Revere™ AWW can provide both chilled water and hot water.
1. Chilled water is generated using the watersource when process cooling or cooling is required.
2. When cooling water is not required, Revere™ AWW generates hot water using the air as its heat source.
3. If ground bore water is used as a heat source, Revere™ AWW can operate using the air source in summer and water source in winter.
Model | CHP125AWW | CHP160AWW | ||
Heating Condition 1 | Heating Capacity | kW | 120 | 166 |
Hot water capacity | L/H | 2292 | 3171 | |
Heating power input | kW | 26.6 | 36.1 | |
COP | W/W | 4.5 | 4.6 | |
Heating Condition 2 | Heating Capacity | kW | 95 | 153 |
Hot water capacity | L/H | 1602 | 2579 | |
Heating power input | kW | 24.3 | 37.3 | |
COP | W/W | 3.9 | 4.1 | |
Heating Condition 3 | Heating Capacity | kW | 78 | 112 |
Hot water capacity | L/H | 1315 | 1888 | |
Heating power input | kW | 26 | 35 | |
COP | W/W | 3 | 3.2 | |
Cooling Condition 4 | Heating Capacity | kW | 77 | 100 |
Heating power input | kW | 24 | 32.2 | |
COP | W/W | 3.2 | 3.1 | |
Water flow | m3/h | 13 | 17 | |
Power supply | V/Ph/Hz | 380/3/50 | ||
Heating type | Direct | |||
Inlet water temperature | ºC | 5~50 | ||
Output water temperature | ºC | 45~90 | ||
Work ambient temperature | ºC | -25~43 | ||
Compressor | Type | DORIN OR BITZER | ||
Circulation water pump | kw | 0.55 | 0.75 | |
Defrosting type | Bypass | |||
Water connection pipe size (Hot water) | mm | DN25 | ||
Water connection pipe size (Cold water) | mm | DN40 | DN50 | |
Water side heat exchanger | Type | Plate type SUS316 | ||
Air side heat exchanger | Type | High efficiency copper tube (Interior Screw) nested in aluminium fin | ||
Refrigerant | Type | R744 | ||
Controller | Brand | CAREL (Italy) | ||
Dimensions | Length | mm | 2470 | 3855 |
Width | mm | 1340 | 1123 | |
Height | mm | 2505 | 2108 | |
Unit noise level | dB(A) | 65 | 70 | |
Net weight | kg | 1350 | 2200 |
1 Ambient temperature 20ºC/15ºC,Water temperature: inlet 15ºC,outlet 60ºC
2 Ambient temperature 7ºC/6ºC,Water temperature: inlet 9ºC,outlet 60ºC
3 Ambient temperature -7ºC/-8ºC,Water temperature: inlet 9ºC,outlet 60ºC
4 Water cooled side inlet 30ºC,outlet 32ºC,cooling side inlet water temperature 12ºC,outlet 7ºC
Using proven technology and ground-breaking design, the Revere™ CO₂ Heat Pump system is powered by electricity and utilizes heat extracted from the air to produce heat energy to make hot water.
The unique capacity of the Revere™ CO₂ Heat Pump to produce 90°C hot water makes it suitable for use in a wide range of industrial, commercial and residential projects, including food processing plants, dairies, shopping centres, apartments, hotels, restaurants, hospitals, aged care, recreational and educational facilities. Revere™ CO₂ Heat Pumps can also be adopted with a high level of safety as the absence of combustion reduces the risk of fire.
Instead of the more conventional ammonia or haloalkane (R134A) refrigerant gases, Revere™ CO₂ Heat Pumps use supercritical carbon dioxide as the refrigerant. The technology offers a means of energy conservation and reduces the emission of greenhouse gas. From the energy output side, the operational characteristics of the heat pump are different to conventional systems (such as electric/gas/oil boilers or electric heaters). With conventional systems, 1kW input of energy provides less than 1 kW of output energy or heat. With a CO₂ heat pump system, every 1kW of input energy consumed produces an average of 3.9 x the input as output energy or heat by extracting heat from the outside air.
