DOE OSTI · 2997461
Variable Curvature Pultruded Vertical Axis Wind Blades
Abstract
XFlow Energy is developing a floating offshore vertical-axis wind turbine (VAWT) enabling a 70% reduction in the levelized cost of energy compared to floating horizontal-axis wind turbines (HAWTs). While the wind industry has historically been successful at lowering the cost of terrestrial wind systems, there are no scalable, economically viable floating wind solutions on the market with the levelized cost of energy (LCOE) of current floating offshore solutions is $200/MWh (Musial 2022). Low-cost blade production is one of the key technologies for realizing this target LCOE reduction. The proposed design uses a constant cross-section blade, enabling the use of pultrusion, a continuous, automated, mold-free production method. By employing blades with variable curvature, XFlow can minimize the bending stresses in the blades, allowing for light-weighting. Constant curvature pultrusion has been demonstrated on hollow sections. Variable curvature pultrusion has been demonstrated on solid sections. This project aims to develop a method of variable curvature pultrusion for hollow sections, as required for mass-optimal VAWT blades.
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Tobin, Jim [Oak Ridge National Laboratory (ORNL), Oak Ridge, TN (United States)], Brownstein, Ian [Xflow Energy Company, Seattle, WA (United States)]. 2025-09-30. Variable Curvature Pultruded Vertical Axis Wind Blades. https://doi.org/10.2172/2997461
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