High-Capacity Cooling Solutions for Demanding Industrial Applications
Our Induced Draught Cooling Towers are engineered to deliver superior cooling performance, energy efficiency, and long-term reliability for a wide range of industrial applications. Designed with advanced airflow technology, these towers utilize top-mounted axial flow fans that create negative pressure within the tower, efficiently drawing air upward through the system to maximize heat dissipation.
Our Induced Draught Cooling Towers are engineered to deliver superior cooling performance, energy efficiency, and long-term reliability for a wide range of industrial applications. Designed with advanced airflow technology, these towers utilize top-mounted axial flow fans that create negative pressure within the tower, efficiently drawing air upward through the system to maximize heat dissipation.
Advanced Fill & Drift Elimination System
The PVC fills used in our towers are highly durable and engineered for long operational life. Manufactured using advanced German technology, these fills feature reinforced double-folded edges that provide exceptional resistance against erosion and wear. Their optimized design ensures low air pressure drop while maintaining excellent heat transfer efficiency.
Key Features & Benefits
- High thermal efficiency with optimized airflow distribution
- Durable PVC fills capable of operating at temperatures up to 65°C
- Automatic drainage design for improved operational reliability
- Advanced drift eliminators limiting drift loss up to 0.001% under standard operating conditions
- Reduced water loss and improved environmental performance
Reliable Water Distribution System
The water distribution network consists of rigid PVC headers and sub-distribution pipes designed for durability, balanced water flow, and consistent cooling efficiency. Although Bell towers operate with minimal pressure requirements, the distribution system is engineered to withstand pressures up to 2 KSC (~20-meter head), ensuring reliable performance in demanding industrial conditions.