The 10kW horizontal axis wind turbine with fiberglass blades stands as a versatile renewable energy solution engineered for both off-grid and grid-connected applications.
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| Start-up wind speed | 2m/s | Working wind speed | 2.5-20m/s |
| Survival wind speed | 45m/s | Rotor diameter | 5.6m |
| Blade | 3pcs reinforced fiber glass | Blade length | 2.75cm |
| Rated voltage | AC 220/240/380v | Tower type | 9m tower |
| Generator type | 3-phase AC PMG | Weight | 270kg |
Its aerodynamic design, featuring high-strength composite blades, maximizes energy capture in diverse wind conditions while integrating seamlessly with solar PV systems to create a balanced renewable energy ecosystem. This hybrid configuration ensures consistent power delivery by leveraging wind resources during nighttime and winter months when solar production declines. With a 20-25 year blade lifespan and robust grid-tie capabilities, this system offers a sustainable energy solution for properties seeking reduced carbon footprint and energy cost savings.

Each turbine is equipped with three precision-engineered fiberglass blades, measuring 2.75 meters in length, that combine lightweight construction with exceptional durability. The material's resistance to corrosion and fatigue ensures reliable performance even in coastal or high-humidity environments. Aerodynamic profiling reduces noise emissions to <55dB at 10m/s wind speed, making the turbine suitable for residential areas.
The system includes an intelligent energy management controller that optimizes power flow between wind generation, solar input, battery storage, and load demand. This hybrid approach increases overall energy availability by 30-40% compared to single-source systems, as wind resources often peak during low solar irradiance periods. The compatible battery system supports 20kWh+ storage capacity, providing backup during extended calm or cloudy conditions.
Designed for flexibility, the turbine operates efficiently in off-grid mode for remote locations while meeting strict grid-connection standards for voltage stability and reactive power control. The grid-tie inverter enables net metering functionality, allowing users to offset electricity costs by feeding excess generation back to the utility network.
Ideal for housing developments or large estates, the system can supply 10-12 average homes with clean electricity when paired with a 5kW solar array. Its low noise profile and aesthetic design minimize visual impact while providing significant energy savings.
Farms and rural properties benefit from reliable power for irrigation pumps, livestock facilities, and grain drying equipment. The wind-solar combination ensures consistent operation through seasonal weather variations, reducing dependency on diesel generators.
Telecommunication towers, research stations, and eco-resorts utilize the system to achieve energy self-sufficiency. The off-grid capability eliminates costly grid extension projects, while grid-connection provides backup security for critical operations.
Solar production peaks during daytime summer months, while wind resources often increase during nighttime and winter, creating a natural balance. This synergy reduces storage requirements by 25-30% compared to single-source systems and ensures 99%+ power availability throughout the year.
Fiberglass blades require minimal upkeep beyond annual visual inspections for cracks or debris accumulation. Their non-biodegradable composite material resists UV degradation and moisture absorption, maintaining optimal performance throughout their 20-25 year service life. Recycling programs are available for end-of-life blades to address environmental concerns.
Yes, the modular design allows for easy scaling by adding additional solar panels, batteries, or even a second turbine. The controller can manage up to 30kW total renewable capacity, making it suitable for growing energy needs or upgraded to include smart home integration features.
