IP Library Granted Patent US 8,047,801
Granted Patent B2
US 8,047,801 · App. 12/821,725 · Granted Nov 1, 2011

Wind turbine blades with aerodynamic vortex elements

Assignee: General Electric Company
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Quick Facts
Patent No.
US 8,047,801
App. No.
12/821,725
Granted
Nov 1, 2011
Kind
B2
Abstract

A wind turbine blade had a suction side surface and a pressure side surface. A plurality of vortex elements are formed on at least one of the suction side or the pressure side surfaces. The vortex elements have an upwardly inclined wind face and a downwardly inclined slip face, with the wind face and slip face meeting at a generally open-ended U-shaped ridge that defines side horns. The side horns decrease in height from a forward most portion of the ridge to the suction side surface or pressure side surface.

Claims (21)

1. A wind turbine blade, said blade comprising:

a suction side surface and a pressure side surface;

a plurality of vortex elements configured on at least one of said suction side or said pressure side surfaces; and,

said vortex elements having an upwardly inclined wind face and a downwardly inclined slip face, said wind face and said slip face meeting at a generally open-ended U-shaped ridge that defines side horns, said side horns decreasing in height from a forward most portion of said ridge to said suction side surface or said pressure side surface, said side horns further having a cross-sectional profile that decreases in width from said forward most portion of said ridge to said suction side surface or said pressure side surface, said vortex elements have a semi-hemispherical crescent shape with a convex wind face and a concave slip face, said U-shaped ridge comprising a continuously curved arc shape.

2. The wind turbine blade as in claim 1 , wherein said wind face and said slip face are formed by flat walls disposed at constant angles.

3. The wind turbine blade as in claim 2 , wherein said wind face comprises a flat front wall and flat side walls, and said slip face comprises a flat front wall and flat side walls.

4. The wind turbine blade as in claim 1 , wherein said vortex elements are defined on said suction side surface at a chord length of between about 15% to about 65%.

5. The wind turbine blade as in claim 1 , wherein said vortex elements are closer to a root portion of said blade as compared to a tip portion.

6. The wind turbine blade as in claim 1 , wherein said vortex elements are closer to a tip portion of said blade as compared to a root portion.

7. The wind turbine blade as in claim 1 , further comprising a plurality of vortex generators configured on at least one of said pressure side surface or said suction side surface in combination with said vortex elements.

8. The wind turbine blade as in claim 1 , wherein said vortex elements are formed on said suction side surface and said pressure side surface.

9. A wind turbine, said wind turbine comprising a plurality of turbine blades, at least one of said turbine blades comprising:

a suction side surface and a pressure side surface;

a plurality of vortex elements configured on at least one of said suction side surface or said pressure side surface; and,

said vortex elements having an upwardly inclined wind face and a downwardly inclined slip face, said wind face and said slip face meeting at a generally open-ended U-shaped ridge that defines side horns, said side horns decreasing in height from a forward most portion of said ridge to said suction side surface or said pressure side surface, said side horns having a cross-sectional profile that decreases in width from said forward most portion of said ridge to said suction side surface or said pressure side surface, said vortex elements have a semi-hemispherical crescent shape with a convex wind face and a concave slip face, said U-shaped ridge comprising a continuously curved arc shape.

10. The wind turbine as in claim 9 , wherein said wind face and said slip face are formed by flat walls disposed at constant angles.

11. The wind turbine as in claim 9 , wherein said vortex elements are defined on said suction side surface at a chord length of between about 15% to about 65%.

12. The wind turbine as in claim 9 , wherein said vortex elements are closer to a root portion of said blade as compared to a tip portion.

13. The wind turbine as in claim 9 , wherein said vortex elements are closer to a tip portion of said blade as compared to a root portion.

14. The wind turbine as in claim 9 , further comprising a plurality of vortex generators configured on at least one of said pressure side surface or said suction side surface in combination with said vortex elements.

15. The wind turbine as in claim 9 , wherein said vortex elements are formed on said suction side surface and said pressure side surface.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 17, 2023
From: GENERAL ELECTRIC COMPANY
To: GE INFRASTRUCTURE TECHNOLOGY LLC
Reel/Frame 065727/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 23, 2010
From: FANG, BIAO; HERR, STEFAN; LIU, XIAOYUE
To: GENERAL ELECTRIC COMPANY
Reel/Frame 024582/0666 →
Continuity (1)
Related Publication 20110142673A1 · Jun 16, 2011