Round Type Cooling Tower
The Bottle Shape Cooling Tower, constructed from FRP, is designed for superior durability and corrosion resistance. Its unique shape and material make it suitable for environments

Cross Flow Cooling Tower
With its cross-flow design, air moves horizontally across the tower while water flows downward. This arrangement improves heat transfer efficiency, making the cross-flow cooling tower

Wooden Cooling Tower
Wooden cooling towers are particularly designed for handling high TDS (total dissolved solids) water. The system uses specialized nozzles to distribute hot water, ensuring efficient heat dissipation, which is crucial for industries

Evaporative Cooling Tower
Evaporative cooling towers rely on water evaporation to remove excess heat. These towers are widely used in industrial processes, power generation, and HVAC systems, providing a reliable

Dry Cooling Tower
Dry cooling towers use only air to cool processes, providing an ideal solution for areas with limited water availability. They offer an energy-efficient alternative to traditional wet cooling towers, ensuring industrial systems remain at optimal temperatures

Natural Draft Cooling Tower
Natural draft cooling towers leverage the power of natural convection to circulate air and cool water. These towers have a distinct hyperbolic shape, which maximizes air circulation without the need for mechanical fans

RCC Cooling Tower
RCC cooling towers are known for their robustness and are used in applications requiring large-scale heat dissipation. Constructed from reinforced cement concrete, these towers offer durability and long-term reliability in industries

Square Type Cooling Tower
The Square Type Cooling Tower employs an induced draft counterflow method, with a fan that forces vertical airflow upwards. This design improves cooling efficiency by enhancing the interaction

Closed Circuit Cooling Tower
A closed circuit cooling tower combines both cooling and heat exchange in a single unit. Process fluid flows through coils or heat exchangers, making it highly effective at managing heat transfer
