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FRP Square Cooling Tower

Usage / Application Industrial
Temperature 8 – 10 °C
Tower Material Fiberglass Reinforced Polyester (FRP)
Water Flow 3 m³/hr to 200 m³/hr
Capacity 5 – 750 TR
Shape Square
Description:

FRP Square Cooling Towers offer high-efficiency, durable, and energy-saving cooling performance for both industrial and commercial applications. Designed for optimal heat transfer and uniform water distribution, these towers ensure reliable cooling across various industries. Constructed from premium Fiber Reinforced Plastic (FRP), they are lightweight, corrosion-resistant, and built to withstand harsh environmental conditions. The square design supports compact installation, improved airflow, and maximum cooling efficiency, making it suitable for small to large cooling requirements.

Key Features:
  • Alternative Design
    Specially developed as an alternative to round models, offering buyers more flexibility in selection.
  • High Cooling Efficiency
    Equipped with honeycomb PVC fills and eliminators designed for maximum economy and performance.
  • Direct Drive System
    Features a directly driven fan and motor to ensure smooth and reliable operation.
  • Spray Nozzles
    Precision-engineered nozzles provide uniform water distribution with minimum drift loss.
  • Durable Hardware
    Constructed with hot-dipped galvanized components for superior corrosion resistance and long life.
  • Rectangular Casing Body
    Elegant rectangular body design combines modern aesthetics with robust strength.
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Single Cell FRP Tower

Usage / Application Industrial
Temperature 8 – 10 °C
Tower Material Fiberglass Reinforced Polyester (FRP)
Water Flow 3 m³/hr to 200 m³/hr
Capacity 5 – 750 TR
Shape Square
Description:

A square-shaped cooling tower designed on the induced draft counter-flow principle, where hot water is evenly distributed through nozzles and flows over heat-exchange fills. As the water forms a thin film and moves downward, it comes in direct contact with upward-moving ambient air, ensuring efficient heat removal and effective cooling performance.

Key Features:
  • Operating Principle
    Performs efficiently under the induced draft counter flow principle for superior cooling performance.
  • Uniform Water Distribution
    Equipped with nozzles that ensure even distribution of hot water across the tower.
  • Efficient Heat Exchange Fills
    Hot water spreads over PVC heat exchange fills as a thin film, maximizing surface contact for better heat transfer.
  • Direct Air–Water Contact
    Enhances cooling efficiency through continuous counter-flow interaction.
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Double Deck Cooling Tower

Usage / Application Industrial
Temperature 8 – 10 °C
Tower Material Fiberglass Reinforced Polyester (FRP)
Water Flow 3 m³/hr to 450 m³/hr
Capacity 5 TR to 750 TR
Multi-Cell Options Available for capacities above 750 TR in any required range
Shape Square
Available Models 18 Models (5 TR to 750 TR)
Description:

A Double Deck Cooling Tower is a compact, high-efficiency system featuring two levels of water distribution and fill media for superior heat transfer. Built with durable FRP and operating on an induced draft cross-flow principle, it ensures powerful cooling in limited space. Hot water is evenly spread over dual-layer fills while air is drawn across for efficient evaporative cooling. Its accessible mechanical components simplify maintenance, making it ideal for industrial and commercial applications requiring reliable, space-optimized cooling.

Key Features:
  • Double Deck Design
    Two layers of fill media increase cooling efficiency within a compact footprint.
  • Induced Draft Cross-Flow Operation
    Air moves horizontally across vertically falling water for enhanced heat exchange.
  • FRP Construction
    Corrosion-resistant, long-lasting, and suitable for harsh environments.
  • Efficient Water Distribution
    Hot water spreads uniformly through nozzles or distribution basins.
  • Simplified Maintenance
    Accessible fan and motor placement for easy servicing.
  • Ideal for Heavy-Duty Applications
    Suitable for industrial processes and large commercial buildings requiring stable cooling performance.
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