On the aerodynamics of variable-geometry oval-trajectory Darrieus wind turbines
A new computational model for the aerodynamics of vertical-axis wind turbines is introduced. It is based on the double-multiple streamtube concept and it incorporates the capacity of dealing with rotors whose blades follow oval-trajectories at variable setting-angles. We applied this model to the study of the aerodynamics of an innovative concept in extra-large wind-power plants: the VGOT (variable-geometry oval-trajectory) Darrieus wind turbine. Due to the especial geometric characteristics of the VGOT Darrieus, it was necessary to propose three new non-dimensional parameters to quantify its performance under different wind-conditions: the equivalent power coefficient, the equivalent solidity coefficient and the trajectory efficiency. We show some numerical results testing several rotor configurations working under different wind scenarios.
Year of publication: |
2007
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Authors: | Ponta, F.L. ; Seminara, J.J. ; Otero, A.D. |
Published in: |
Renewable Energy. - Elsevier, ISSN 0960-1481. - Vol. 32.2007, 1, p. 35-56
|
Publisher: |
Elsevier |
Subject: | Innovative concepts | Vertical-axis wind turbine (VAWT) | VAWT aerodynamics | Darrieus rotors | Double-multiple streamtube model |
Saved in:
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