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| Usage / Application | Industrial |
|---|---|
| Temperature | 8 – 10 °C |
| Tower Material | Fiberglass Reinforced Polyester (FRP) |
| Tower Design | Counter Flow |
| Fills Type | Honeycomb PVC Fills |
| Water Flow | 3 m³/hr to 200 m³/hr |
| Capacity | 5 – 300 TR |
| Cooling Capacity | 200 TR |
| Shape | Round |
Round Shape FRP Cooling Towers, also known as Bottle Shape Cooling Towers, are engineered to deliver high cooling efficiency with minimal maintenance. Built with a robust FRP casing and basin, these towers are designed to withstand severe vibrations, high wind loads, and corrosion in demanding industrial environments.
They feature Honeycomb PVC fills for maximum heat transfer efficiency, along with a directly driven fan and motor ensuring smooth airflow and reduced drift losses. The rotating arm sprinkler system distributes hot water uniformly, enhancing overall cooling performance.
| Usage / Application | Industrial |
|---|---|
| Temperature | 8 – 10 °C |
| Tower Material | Fiberglass Reinforced Polyester (FRP) |
| Tower Design | Counter Flow |
| Water Flow | 3 m³/hr to 200 m³/hr |
| Capacity | 5 – 300 TR |
| Cooling Capacity | 200 TR |
| Shape | Round |
Round Shape (Bottle Type) FRP Cooling Towers maintain ideal temperatures by transferring excess heat to the atmosphere through a circulating coolant. Built with durable FRP and galvanised hardware, they offer long service life and withstand harsh conditions. Using the Induced Draft Counter Flow system with a rotary sprinkler, they ensure uniform water distribution and efficient heat dissipation.
| Usage / Application | Industrial |
|---|---|
| Temperature | 8 – 10 °C |
| Tower Material | Fiberglass Reinforced Polyester (FRP) |
| Water Flow | 3 m³/hr to 200 m³/hr |
| Capacity | 5 – 300 TR |
| Cooling Capacity | 200 TR |
| Shape | Round |
| Available Models | 15 Models – (5 TR to 300 TR) |
We specialize in offering high-performance FRP Round Bottle Cooling Towers designed for efficient industrial cooling. These towers operate on the induced draft counter-flow principle, where a vertical fan pulls air upward against the downward water flow for maximum heat transfer. Hot water is evenly distributed through inlet headers and non-clogging polypropylene spray nozzles, ensuring consistent cooling performance. Durable FRP construction ensures long service life, corrosion resistance, and low maintenance.