Square cooling tower
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Gravity Cooling Tower Series
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Square cooling tower
The square cooling tower uses two-sided air intake. The fan at the top draws air through the packing on both sides of the tower, where it exchanges heat with the hot water. The wet, hot air is then discharged outside the tower. The packing uses point wave plates with protrusions on both sides. These plates are bonded together by mounting heads to increase rigidity. The protrusions on both sides also prevent direct dripping, thus improving the water film formation capability. Water collection measures are provided at the end of the packing.
Square cooling towers are widely used in the large-scale circulating systems of petroleum, chemical, metallurgical, and power enterprises. Suitable for the cold northern regions of China, they effectively solve the problem of louver freezing in winter. They use variable torque, variable pole motors, making them a leading domestic and international level in terms of thermal performance, power consumption, tower stability, and noise.
The square cooling tower has the following structural characteristics:
Unique water collection structure of the square cooling tower: Using high-quality PVC material thermoforming, it is at the leading level in the domestic industry, effectively separating the water vapor in the wet hot air and returning it to the tower, greatly reducing water drift loss and reducing the amount of make-up water. The water drift loss rate of the cooling tower is less than 0.001%.
Variable diameter, graded nozzles of the square cooling tower: The water distribution system uses nozzles produced using the latest technology from the United States as its main components. These nozzles are made of high-quality modified P.P. injection molding, with no moving parts inside, and are corrosion and aging resistant. During operation, they have low energy consumption, a large diameter that is not easily blocked or scaled, and are easy to disassemble, install, and maintain. The unique variable diameter design ensures continuous and uniform water distribution, forming a reliable "hollow-free" umbrella-shaped "solid cone" water distribution pattern, with no dead angles in water distribution. Hot water is evenly sprayed onto the packing surface, effectively improving heat exchange efficiency. The inner round and outer square design prevents clogging and requires no cleaning, reducing maintenance workload.
Square Cooling Tower
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