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Our advanced Evaporative Condenser integrates cutting-edge Quadruple Heat Exchange Technology to deliver unmatched cooling efficiency for industrial applications. By combining spray water films with forced air convection and hybrid evaporation, the system optimizes heat dissipation through an intelligent environmental adaptation mechanism, ensuring stable performance across a wide temperature spectrum from -30℃ to 50℃.
Engineered for high-demand environments, this system leverages AI-optimized modes to automatically switch between Winter Mist-Free and Summer Cooling configurations. Whether deployed in chemical plants, data centers, or food cold chains, our evaporative condensers significantly reduce compressor power consumption and water waste, providing a sustainable and cost-effective thermal management solution for modern manufacturing.
| Condensing Range | -30℃ ~ 50℃ | Compatible Refrigerants | NH3, R22/R134a |
|---|---|---|---|
| Construction Material | Hot-dip Galvanized Steel / 316L | Noise Level (1m) | ≤65dB (≤55dB Night Mode) |
| Energy Efficiency | EER 4.5-5.8 (+30% vs Traditional) | Water Drift Loss | Below 0.001% |
| Galvanizing Temp | 430℃ Hot-dip Process | Housing Material | Food-grade ABS / Galvanized Steel |
| Operational Life | 15+ Years (Corrosion Resistant) | Cooling Capacity | Up to 20kW/rack (Data Center spec) |
Seamless oval steel coils with 430℃ hot-dip galvanizing ensure superior corrosion resistance for over 15 years of service.
Reduces compressor power by 10-30% by maintaining a condensation temperature 3-5℃ lower than water-cooled systems.
Utilizes only 1/10 of the water required by traditional systems, saving 5,000+ tons annually for 3000m³/h systems.
Humidity sensors enable automatic switching between Summer and Winter modes to maximize efficiency in any climate.
Integrated IoT system provides live data on water quality, energy consumption, and overall equipment health.
Designed for parallel operation, allowing maintenance and upgrades without needing a total system shutdown.
Real-time monitoring of mineral buildup and purity to prevent scaling in condenser coils.
Comprehensive dashboards tracking kWh usage and identifying power-saving opportunities.
Instant notifications for sensor anomalies, filter replacements, or system malfunctions.
Automated adjustments based on ambient temperature and humidity for peak efficiency.
Individual monitoring of parallel units to ensure balanced load distribution.
Cloud-based troubleshooting allowing engineers to resolve issues without on-site visits.
| Metric | Traditional Water-Cooled | Our Evaporative System |
|---|---|---|
| Power Consumption | Baseline (100%) | Reduced by 10-30% |
| Annual Water Use | High Consumption | 1/10th of Traditional |
| Condensation Temp | Standard | 3-5℃ Lower |
| Maintenance Frequency | Frequent Scaling Clean | Low (IoT Monitored) |
| ROI Period | Long-term | Within 2 Years |
FRP (Fiber Reinforced Plastic) provides exceptional corrosion resistance and high strength-to-weight ratios, making it perfect for the moist, chemically aggressive environments found in industrial cooling.
The system utilizes humidity sensors to activate "Winter Mist-Free" mode, preventing ice buildup and ensuring operational stability down to -30℃.
Yes, our condensers are specifically engineered to support NH3, R22, and R134a, with materials like 316L steel to resist ammonia corrosion.
For a typical 3000m³/h system, our technology can save over 5,000 tons of water annually due to high-efficiency recycling and low drift loss.
The modular approach allows for parallel operation, meaning individual units can be serviced or replaced without shutting down the entire cooling process.
Absolutely. Our systems can help data centers achieve a PUE of 1.3 with cooling capacities up to 20kW per rack.





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20 Xingyuan South Street, Zaoqiang County, Hengshui City, Hebei Province, China