Cold water chiller is a device that cools water to a desired temperature, and an air cooler (also known as an evaporative cooler or swamp cooler) is a system that cools air through the evaporation of water. While these two systems are separate, there are scenarios where they could be used together for cooling purposes.
Here's a general concept of how you might use a cold water chiller with an air cooler:
Cold Water Chiller: The water chiller is responsible for cooling water to a specific temperature. It usually consists of a refrigeration system that removes heat from the water, allowing it to reach a lower temperature. The chilled water is then pumped to the air cooler unit.
Air Cooler: The air cooler uses the principle of evaporation to cool the air. Warm air is drawn through water-saturated pads or media, where it is cooled as water evaporates. The cooled air is then blown into the living space.
Combining Cold Water Chiller with Air Cooler: In some setups, a cold water chiller can be integrated into the air cooler system. Chilled water from the chiller is circulated through the air cooler's pads or media. As warm air passes through the cooled pads, the water's evaporation further cools the air, creating a more efficient cooling effect.
Benefits of using a cold water chiller with an air cooler:
Enhanced Cooling Efficiency: The use of chilled water can enhance the cooling effect of the air cooler, especially in hot and dry climates. The cooled pads can provide even lower temperatures to the incoming air.
Precise Temperature Control: With a cold water chiller, you have better control over the temperature of the chilled water, which can result in more consistent and adjustable cooling.
Energy Efficiency: Depending on the specific setup and efficiency of the chiller, using chilled water might be more energy-efficient compared to traditional air conditioning systems.
However, please note that combining a cold water chiller with an air cooler can be a complex and custom installation, and the effectiveness will depend on factors such as the design, capacity, and efficiency of both the water chiller and the air cooler.
It's recommended to consult with HVAC (Heating, Ventilation, and Air Conditioning) professionals or engineers who can assess your specific needs and provide guidance on designing and implementing such a system effectively and safely.
12HP cold water chiller for air cooler datasheet:
|
Item |
Specification / Supplier |
||
|
Cooling capacity |
Model |
AYD-12A |
|
|
kw |
36 |
||
|
Power input |
kw |
11.62 |
|
|
Power Supply |
380V-3N-50HZ |
||
|
Temp Outlet (℃) |
10 |
||
|
refrigerant control |
Expansion valve |
||
|
Refrigeration circle |
two |
||
|
refrigerant |
R407C |
||
|
Dimension(mm)L*W*H |
1550*780*1700 |
||
|
Compressor |
Style |
Scroll |
|
|
Quantity(set) |
2 |
||
|
Compressor Power(kw) |
9.24 |
||
|
Condenser |
Style |
Fin type with copper coil |
|
|
Fan Quantity(set) |
2 |
||
|
Air Volume(m3/h) |
12600 |
||
|
Evaporator |
Style |
Shell and Tubes |
|
|
Cold water flow(m3/h) |
6.2 |
||
|
Pipe size(DN) |
40 |
||
|
Cast-iron Water Pump(kw) |
1.5(7m3/h,2bar) |
||
|
Protector Device |
1.Phase protector 2.Fan overload protector 3.High/low voltage protector 4.overheat protector 5.Anti-freeze protector |
||
|
Unit Weight(kg) |
520 |
||
|
Main Parts |
|||
|
Compressor |
Sanyo |
||
|
Condenser |
Anyda |
||
|
Evaporator |
Jindian |
||
|
Electronic |
LS/ Chnt |
||
|
Expansion Valve |
Emerson |
||
|
Control System |
Punp |
||
Remarks: The cooling capacity is based on ambient temp 30C, inlet/outlet temp 12/7C.
Structure of the cold water chiller:



Qualification:

Packge, delivery and aftersales service:
1. Package: wooden case.
2. Payment:30% as the deposit,70% paid off before delivery.
3. Lead Time:12-15 working days.
4. One-year warranty period. If there is an issue during this time, we could ship you the new parts (less the express price) and offer ongoing technical support.
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