Attribute | Value |
---|---|
Cooling type | Counter flow |
Warranty | 1 year |
Power | Customized |
Core components | Pump, motor |
Machinery test report | Provided |
Material | Metal |
Key selling points | Energy saving |
Price | Cost-effective |
Service life | More than 10 years |
Our closed cooling tower (also known as evaporative air cooler, sealed cooling tower, or enclosed cooling tower) features a tubular heat exchanger within the tower structure. The cooling effect is achieved through efficient heat exchange between circulating air, spray water outside the tubes, and circulating water within the tubes.
The closed-loop design ensures water quality remains uncontaminated, protecting your main equipment and extending its service life. During colder temperatures, the spray water system can be deactivated to conserve water. With increasing focus on energy conservation and water resource management, our closed cooling towers are widely used in steel/metallurgy, power electronics, machining, and HVAC systems.
Voltage | 3 phase 380V, 50/60HZ |
Cooling capacity | 60000Kcal/h |
Cooling circulation water flow | 8m³/h |
Water inlet pipe diameter | DN63mm |
Water outlet pipe diameter | DN63mm |
Water supplement interface pipe diameter | DN20mm |
Waterspout diameter | DN20mm |
Fan motor power | 0.37kw |
Spray pump power | 0.75KW |
Spray pump water flow | 12m3/h |
Circulation pump power | 1.5KW |
Circulation pump head | 25m |
Circulation pump water flow | 10m3/h |
Tower body guard | Aluminium zinc plate |
Condenser material | 304 stainless steel tube Φ19*0.8 |
Dimension (L*W*H) | 2300*1000*2250mm |
Weight | 550kg |
Our cooling tower consists of:
All components in contact with circulating medium (water outlet pipe, water inlet pipe, cooler) are constructed from 304 or 316 stainless steel. The shell is made of magnesium-aluminum-zinc or 304 stainless steel.
The circulating medium flows through a closed pipeline system, with cooling achieved through heat exchange between air spray water flowing externally and efficient heat dissipation via the fan system.
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