When an industrial process generates excess heat, reliable heat rejection is essential for keeping equipment and production systems operating properly. The WST Series FRP Square Cooling Tower is designed for industrial and HVAC applications where efficient water cooling, durable construction and dependable operation are required.
The WST Series uses an induced draft cooling system to move air through the tower while warm circulating water passes through the fill media. Heat is transferred from the water to the air, with a portion of the water evaporating during the process. The cooled water is collected in the basin and returned to the system.
Wet Point Cooling Towers manufactures WST Series cooling towers for applications where cooling capacity, operating conditions, available space and long term service requirements need to be considered together.
The WST Series is a square type FRP cooling tower designed around an induced draft configuration. Its construction combines FRP components with a water distribution system, fill media, drift eliminators, axial fans and other components required for evaporative cooling.
Unlike a cooling tower that simply circulates water, an evaporative cooling tower removes heat through contact between circulating water and moving air. This makes the interaction between the fill, water distribution system and airflow important to overall tower performance.
The WST Series can be considered for applications such as process cooling and HVAC systems where warm water needs to be cooled before being recirculated.
Key Points
In Simple Terms:
WST Series Cooling Towers are square-shaped, high-efficiency cooling systems designed to deliver reliable and uniform performance across a wide range of industrial and HVAC applications. Constructed with durable fiber-reinforced plastic (FRP), these towers offer excellent resistance to corrosion, weather conditions, and long operational life.
The WST series features a fixed header water distribution system equipped with non-clogging spray nozzles, ensuring even water flow over the PVC fill media for maximum heat transfer efficiency. Its modular fill design, efficient drift eliminators, and energy-saving induced draft axial fans contribute to low operating costs and minimal water loss.
The WST Series works through the principle of evaporative cooling. Warm process water enters the tower and is distributed over the fill media. At the same time, the fan draws air through the tower.
As the water comes into contact with the moving air, a small portion of the water evaporates. This evaporation removes heat from the remaining water, lowering its temperature.
The cooled water then collects in the cold water basin and can be pumped back into the industrial or HVAC process.
This simple cycle allows the cooling tower to continuously reject heat from a circulating water system.
Cooling tower selection should be based on operating requirements rather than capacity alone.
Before selecting a WST Series model, the project team should establish:
Parameter | Why It Matters |
Heat load | Determines the amount of heat the tower must reject |
Water flow rate | Determines the required circulation capacity |
Hot water temperature | Establishes the entering water condition |
Cold water temperature | Defines the required cooling result |
Wet bulb temperature | Influences achievable cooling performance |
Range | Difference between entering and leaving water temperature |
Approach | Difference between cold water temperature and ambient wet bulb temperature |
Fan arrangement | Determines how air is moved through the tower |
Available space | Influences tower dimensions and installation |
Water quality | Affects scaling, corrosion and biological control |
For an accurate selection, provide your operating data to the cooling tower manufacturer rather than choosing a model based only on nominal capacity.
A cooling tower should be sized according to the actual process.
1. Determine the Heat Load
Identify how much heat the cooling system needs to reject. This is the starting point for tower selection.
2. Confirm Water Flow
The required circulating water flow helps determine the appropriate tower configuration and capacity.
3. Check Operating Temperatures
Provide the expected hot water temperature, required cold water temperature and site wet bulb temperature.
4. Consider Water Quality
Poor water quality can contribute to scaling, corrosion and biological growth. The cooling tower and water treatment strategy should therefore be considered together.
5. Evaluate Available Space
Check the footprint, tower height, maintenance access, airflow requirements and surrounding structures before finalizing the installation.
6. Consider Maintenance
Fans, motors, fill media, nozzles, drift eliminators and water basins need inspection and maintenance. Easy access to serviceable components can reduce maintenance difficulties.
Even a well designed cooling tower requires regular maintenance. Performance can decline when fill media becomes fouled, water distribution is uneven or mechanical components are not maintained properly.
A practical maintenance program should include:
The maintenance frequency should depend on operating hours, water quality, environmental conditions and the application.
Selecting a cooling tower is not only about purchasing equipment. Industrial buyers also need technical guidance, appropriate sizing and dependable support throughout the equipment lifecycle.
Wet Point Cooling Towers focuses on industrial cooling solutions and provides cooling tower systems for different process and HVAC requirements.
When discussing a WST Series requirement, the selection process should consider your heat load, water flow, operating temperatures, site conditions, water quality and installation requirements.
This approach helps ensure that the selected cooling tower matches the actual application rather than relying on a generic capacity estimate.
The right cooling tower depends on the application rather than simply the tower’s appearance or price. However, an FRP square configuration can offer practical advantages for industrial installations.
Corrosion Resistant Construction
FRP is useful in environments where moisture and exposure to water can create corrosion concerns for conventional materials.
Efficient Air and Water Contact
The combination of fill media, water distribution and induced airflow provides the conditions needed for evaporative cooling.
Practical for Industrial Installations
The square configuration can be suitable for installations where equipment layout, access and available space need to be considered during project planning.
Reduced Water Carryover
Drift eliminators help reduce water droplets leaving the tower with exhaust air.
Serviceable Design
Cooling tower components such as fans, motors, fills, nozzles and drift eliminators require periodic inspection. A serviceable configuration makes routine maintenance easier to plan.
WST Series cooling towers can be used wherever a circulating water system needs to reject process or equipment heat.
Industrial manufacturing processes often generate heat through machinery, production equipment and process systems. A cooling tower can provide continuous cooling water for suitable applications.
Chemical processes may require controlled cooling at different stages of production. Cooling tower selection should consider the process temperature, water quality and operating environment.
Cooling systems are used in pharmaceutical manufacturing for equipment and process applications. Proper water treatment and hygiene requirements should be considered when designing the cooling system.
Food processing facilities may use cooling water for equipment and process heat rejection. The cooling system should be selected according to the plant’s operating conditions.
Textile manufacturing involves several heat generating processes and equipment. Cooling towers can support suitable process cooling requirements.
Industrial equipment operating in high temperature environments may require reliable cooling water to remove excess heat.
Cement manufacturing involves heavy duty equipment and heat generating processes. Cooling systems can be integrated into appropriate plant applications.
Cooling towers are widely used as part of water cooled HVAC systems. They reject heat from the circulating condenser water and support the operation of the connected cooling system.
Depending on the design and operating conditions, WST Series cooling towers may also be considered for automotive, paper, power and general process cooling applications.
The appropriate cooling tower should always be selected based on the actual heat load, water flow, temperatures, wet bulb conditions and site requirements.
The WST Series works through the principle of evaporative cooling. Warm process water enters the tower and is distributed over the fill media. At the same time, the fan draws air through the tower.
As the water comes into contact with the moving air, a small portion of the water evaporates. This evaporation removes heat from the remaining water, lowering its temperature.
The cooled water then collects in the cold water basin and can be pumped back into the industrial or HVAC process.

The tower casing is made of tough fiberglass reinforced plastic (FRP) and has sufficient structural strength to withstand high wind velocities and vibrations. UV-stabilized resin is used with gel coat for longer life. It is resistant to local impact, and even if slight damage occurs, local repairs can be easily done. The portion of casing housing fill and eliminator has a round cross-section in WRT series and square in WST series. The water collection sump (optional), also of FRP, is leak-proof and avoids water spillage.

The fill is rigid Polyvinyl Chloride (PVC) and is of honeycomb design with very large contact surface area. The fill splits air and water into several streams, increasing contact time and improving heat transfer between water and air. The fill is in module form and packed in the tower casing without any curves. Air pressure drop through the fill is negligible. Fills are available with flute heights of 12 mm and 19 mm, with sheet thickness from 0.15 mm to 0.20 mm. Optional trickle fills made of premium quality PP material are also available, offering a combination of: Film fills (for thermal efficiency) Splash fills (for resistance to fouling) These are suitable for applications where water quality is poor with high suspended solids, reducing clogging and fouling.

Specially designed energy-efficient induced draft axial fans with adjustable pitch are used. Materials are non-corrosive such as plastic, FRP, or aluminum alloy.
High-efficiency design ensures low running cost and minimal noise. Fan blades are dynamically balanced.


Special-purpose induction motors used in cooling towers are totally enclosed, flange-mounted with extended shafts. Specifications: 415V 50 Hz 3-phase ‘F’ class insulation High-efficiency motors (IE2 & IE3) are available as optional upgrades.

Specially designed eliminators supported by a galvanized frame to minimize water drift losses.

Fixed header system is made up of non clogging, thick PVC pipes further coated with FRP in WST series requires low pressure to operate and assure uniform water flow with minimal operating head through spray nozzles incorporated in the system which are made from best grade of polypropylene.


Tower supporting structures are fabricated from mild steel angles, channels, rods, and pipes, all hot-dip galvanized for corrosion protection and longer life. Optional: FRP pultruded profile structures can replace MS galvanized structures. These include FRP pultruded angles, channels, and pipes, offering strong, corrosion-proof solutions for cooling tower structures.
Need an FRP Square WST Series Cooling Tower for Your Application?
Choosing a cooling tower is easier when the equipment is matched to the actual process conditions.
If you are planning a new industrial cooling system or replacing an existing tower, share your heat load, water flow rate, hot and cold water temperatures, site conditions and application details with Wet Point Cooling Towers.
The WST Series can then be evaluated against your specific cooling requirements to identify a suitable configuration.
Contact Wet Point Cooling Towers to discuss your industrial cooling requirement and request a product or project consultation.
An FRP square cooling tower is an evaporative cooling tower with a square configuration and fiberglass reinforced plastic construction. It uses circulating water and airflow to reject heat through evaporation.
The WST Series is a square type FRP cooling tower from Wet Point Cooling Towers. It uses an induced draft configuration with components such as PVC fill, axial fans, spray nozzles, drift eliminators and a water distribution system.
An induced draft cooling tower uses a fan positioned to draw air through the tower. Warm water is distributed over the fill while air moves through the tower, allowing heat to transfer from the water to the air.
Cooling tower fill increases the contact area and contact time between water and air. This supports the evaporative heat transfer process.
Drift eliminators reduce the amount of water droplets carried from the tower with the outgoing air. They help control water loss from drift.
WST Series cooling towers can be considered for suitable industrial and HVAC applications, including manufacturing, chemical, pharmaceutical, textile, food processing, steel, cement and other process cooling environments.
Start with the required heat load, water flow, hot water temperature, cold water temperature and site wet bulb temperature. These parameters provide a better basis for selection than capacity alone.
Yes. Regular inspection and maintenance are necessary. Fan and motor condition, fill media, spray nozzles, drift eliminators, basin cleanliness and water quality should be monitored.
Wet Point Aqua Equipments Pvt. Ltd. delivers high-performance cooling tower solutions designed for efficiency, durability, and long-term reliability.
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