Flag Turbines’ roof-mounted Vertical Axis Wind Turbines offer a practical solution for generating renewable energy in urban and built-up environments. Designed to capture wind from any direction, including the complex and turbulent airflows often found around buildings, our turbines combine a compact footprint with low rotational speed and low noise. Their modular design is intended to integrate with suitable rooftop structures following site-specific assessment, providing clean, on-site generation that can reduce grid dependency, lower carbon emissions and contribute to building energy targets. This makes roof-mounted Flag Turbines a potential complement to solar and battery storage within modern low-carbon buildings.
Our Land-model Flag Turbines are designed for reliable, decentralized energy generation across a wide range of environments. Their omnidirectional, variable-pitch architecture captures wind from any direction without the need for reorientation, making them particularly well suited to variable and turbulent wind conditions. Depending on blade size, the current Land-model configuration stands approximately 11 to 13 meters to tip. Unlike conventional horizontal-axis turbines, increasing power does not require a proportionate increase in tower height. Flag Turbines scale primarily through rotor width and swept area, allowing higher-output models to remain comparatively low in overall height. This makes them well suited to farms, commercial and industrial sites, community energy projects, coastal locations and other distributed-energy applications. Their modular design also allows multiple units to be deployed together where site conditions and energy demand justify it, providing a flexible route to scalable on-site generation.
Our floating turbines are engineered to efficiently harness offshore wind energy. Deployed in counter-rotating pairs, the turbines are designed so that their opposing high-torque forces neutralize each other, substantially reducing the yawing forces being transferred into the floating platform and improving overall stability. This modular design is scalable, enabling multiple pairs to be deployed in configurations scaled to meet different energy demands. Ideal for deep-water deployment, where wind speeds are stronger and more consistent, our turbines feature a variable pitch mechanism that optimizes lift, torque and drag. Large blades generate high lift forces while maintaining the optimal angle of attack, capturing wind from any direction without the need for repositioning. Their lower profile, compared to traditional propeller-style turbines, also helps reduce visual impact on coastal communities.