New: R-290 natural refrigerant systems now available for pharmaceutical cold chain deployments

View Systems
Cueron cooling towers
CTI Certified · Field Erected · Package Towers

Engineered Heat Rejection.
Industrial Cooling Tower Systems.

Thermal sizing, fill media selection, water treatment specification, and mechanical servicing i.e., designed as integrated components of the broader thermal system, not as standalone equipment items.

Optimized for Tropical Climates

Cooling towers in high-humidity regions require larger fill volumes and higher air-to-water ratios to maintain performance. Cueron towers are specifically designed for high wet-bulb temperatures (28°C - 30°C) common in industrial zones.

We utilize pultruded FRP (Fiberglass Reinforced Plastic) structural components that are impervious to corrosion, extending asset life to 25+ years compared to standard galvanized steel structures.

System Configurations

Select the Right Heat Rejection Technology

Open Circuit Industrial Towers

Induced Draft Counterflow (FRP/Concrete)

  • Capacity: 50 TR to 2500 TR per cell
  • Approach: Designed for < 4°C approach to WBT
  • Material: pultruded FRP structure (25+ year life)
  • Fan: Ultra-low noise, adjustable pitch FRP blades
  • Fill: PVC headers with honeycomb/film fill pack
Best for: Large ammonia plants, district cooling

Closed Circuit Fluid Coolers

Evaporative Condensers

  • Process fluid remains contaminant-free (closed loop)
  • Coil material: HDG Steel or SS304/316 tubes
  • Reduced fouling scale on heat exchangers
  • Glycol-compatible for sub-zero ambient operation
  • Hybrid mode option (dry/wet) for water savings
Best for: Critical process cooling, data centers

Adiabatic Dry Coolers

Zero Water Consumption Mode

  • No standing water sump (Legionella risk eliminated)
  • V-bank coil configuration for small footprint
  • Pre-cooling pads depress dry bulb temp before coil
  • EC fans with infinite variable speed control
  • Water usage reduced by >80% annually vs. wet towers
Best for: Water-scarce regions, high-maintenance sites

Engineering Parameters

Designed to meet CTI (Cooling Technology Institute) Standard STD-201 performance certification.

Thermal Approach
3°C to 5°C (Standard Design)
Drift Loss
< 0.002% of circulating flow (High-efficiency eliminators)
Noise Level
70-85 dBA @ 10m (Low-noise fans available)
Fan Power
0.04 kW / TR (High efficiency design)
Structural Rating
Wind load 180 km/ph, Seismic Zone IV compatible
Fill Media
UV-stabilized PVC, self-extinguishing
Motor Rating
IP55 / IE3 Premium Efficiency, VFD Duty
Basin Material
FRP (single piece) or RCC (concrete)

Smart Maintenance Ecosystem

Cooling towers are often the most maintenance-intensive utility. Our designs incorporate automation to reduce manual intervention and prevent scaling that degrades heat transfer efficiency.

Water Treatment

Automated conductivity-based bleed-off & chemical dosing to prevent scale/corrosion.

Filtration

Side-stream sand usage filtration removes suspended solids down to 20 microns.

Component Access

External lube lines, oversized access doors, and internal walkways for safe inspection.

VFD Control

Fan speed modulation maintains basin temp setpoint while saving 30-50% fan energy.

Annual Savings Calculator

Typical savings for a 500 TR tower switched from constant speed to VFD control with automated bleed-off.

Fan Energy Savings-45% kWh
Water Consumption-12% Liters
Chemical Usage-20% Liters
Estimated ROI
14 Months

Upgrade Your Heat Rejection System

Get a detailed thermal design proposal including approach temperature calculations, evaporation loss analysis, and lifecycle cost comparison.