85KW New Energy Water Cooling System for Wind Power and Solar Power Generation
This advanced water cooling system is engineered for precise temperature control in renewable energy applications, providing reliable thermal management for critical power electronics components.
Applications
This water cooling system is specifically designed for New Energy applications requiring precise temperature control. Typical application scenarios include:
- Wind Power inverter and converter cooling
- Solar power generation inverter systems
- New Energy energy storage and power control units
- Grid connected Wind Power and solar substations
- Power electronics cabinets for New Energy systems
With its flexible integration design, the 85KW New Energy Water Cooling System can be deployed in both centralized Wind Power plants and distributed solar power installations worldwide.
Key Features
- Modular design with exhaust and drain valves for easy maintenance
- Comprehensive system includes main circulating pump, electric three-way valve, filter, heater, expansion tank, and air cooler
- Advanced temperature and pressure monitoring with independent operation capability
- Remote control support via terminal and serial port communication
- Constructed with stainless steel, aluminum alloy, and EPDM materials for corrosion resistance
- Designed for harsh environments including cold, wind/sand, and salt fog conditions
- Special corrosion protection solutions for offshore and marine platform applications
Technical Specifications
| Heat dissipation power range |
10-200kW |
| Cooling medium flow range |
3-20m³/h |
| Temperature difference (inlet vs ambient) |
≥5℃ |
| Cooling medium |
Pure water and ethylene glycol antifreeze |
| Antifreeze concentration |
0-55% |
| System static pressure |
0.15MPa |
| Design pressure |
0.8MPa |
Operating Conditions
| Ambient Temperature Range |
Minus 30°C to 55°C |
| Coolant Inlet Temperature |
10°C to 45°C |
| Relative Humidity |
Up to 95% non-condensing |
| Altitude |
Up to 2000 meters above sea level |
| Operating Mode |
Continuous Duty Operation |
Application Overview
Ideal for heat dissipation in frequency converters, inverters, generators, and rectifiers within wind power generation and photovoltaic power generation systems.