This is a highly efficient wind generator that can operate in low wind conditions. With options for 46/96v, it is compatible with various power systems. Our company has multiple certifications such as CE and ISO9001, as well as multiple intellectual property patents.
| Power: | 2000W |
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| System Type: | Horizontal Wind Turbine |
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| Casting aluminum alloy | Casting aluminum alloy | Working temperature | -20℃ - 60℃ |
| Service life | ≥20 years | Rated RPM | 500r/m |
| Rated Voltage(v) | AC 48/96V | Rated Power(w) | 2kW |
| Rotor diameter | 3.2m | Blade | 3pcs reinforced fiber glass |
| Generator | 3 phase AC permanent magnet synchronous generator | Blade length | 155cm |
The L-type 2kW horizontal axis wind turbine represents a specialized solution for low-wind environments, designed specifically to harness energy from gentle breezes for household and street lighting applications. Its compact L-shaped frame houses a high-efficiency permanent magnet generator that activates at wind speeds as low as 2.5m/s, making it ideal for urban, suburban, and rural areas with moderate wind resources. This turbine bridges the gap between traditional wind generators and small-scale solar solutions, providing reliable off-grid power where other renewable options may fall short. Its lightweight construction and simplified installation process make it accessible for residential use while meeting durability standards for public lighting infrastructure.

The turbine's advanced aerodynamic design, featuring optimized airfoil profiles and low-friction bearings, enables startup at just 2.5m/s – significantly lower than the 3.5m/s average for conventional small turbines. This capability increases annual operating hours by 20-30% in regions with frequent light winds, ensuring consistent energy harvest throughout changing weather conditions.
The unique L-shaped frame reduces overall footprint by 40% compared to traditional horizontal axis turbines, allowing installation in space-constrained locations like rooftops, gardens, and streetlight poles. The 3-blade configuration, with each blade measuring 1.8 meters in length, balances energy capture efficiency with visual discretion, making it suitable for residential neighborhoods.
Pre-configured with a 12V/24V DC output controller, the turbine directly powers LED street lamps and household lighting systems without requiring complex inverters. Optional battery storage (typically 5-10kWh) ensures illumination during wind lulls, with smart charging algorithms preventing over-discharge and extending battery life to 3-5 years.
Urban and rural homes use the turbine to offset lighting, small appliance, and device charging needs, reducing grid electricity consumption by 15-25%. Its low startup wind speed makes it effective in sheltered locations like backyard installations, where taller turbines would be impractical.
Municipalities deploy the system for off-grid street lighting in parks, pathways, and remote road segments. The turbine's ability to operate in light winds ensures consistent illumination without trenching for power lines, reducing installation costs by 50%+ compared to grid-connected alternatives.
Critical infrastructure like remote monitoring stations, rural telecom towers, and disaster response shelters utilize the turbine as part of hybrid backup systems. Its reliable performance during variable wind conditions provides essential power for communication devices and emergency lighting.
A single 2kW turbine can support 8-12 LED street lamps (30W each) or provide primary lighting for a 1500 sq.ft household when paired with appropriate battery storage. Actual capacity depends on average wind speed and daily illumination requirements.
The turbine requires minimal upkeep: quarterly checks of mounting hardware and annual lubrication of moving parts. The sealed generator unit is maintenance-free for 5+ years, while blades should be cleaned annually to remove dust and debris that could reduce efficiency.
Yes, the low startup wind speed (2.5m/s) makes it effective in urban settings where buildings create turbulent but persistent airflow. Mounting the turbine at 8-10 meter height (typically on a telescoping pole) optimizes exposure to available wind resources above rooflines.
