IP Library Granted Patent US 8,240,995
Granted Patent B2
US 8,240,995 · App. 12/972,649 · Granted Aug 14, 2012

Wind turbine, aerodynamic assembly for use in a wind turbine, and method for assembling thereof

Assignee: General Electric Company
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Quick Facts
Patent No.
US 8,240,995
App. No.
12/972,649
Granted
Aug 14, 2012
Kind
B2
Abstract

The present disclosure relates to a wind turbine ( 10 ) including: a rotor ( 18 ) including a rotatable hub ( 20 ) and a plurality of rotor blades ( 22 ), each of the plurality of rotor blades ( 22 ) being attached to the hub ( 20 ); and at least one airfoil body ( 120 ) including an aerodynamic profile ( 156 ) and an airfoil body root portion ( 122 ); wherein the aerodynamic profile ( 156 ) is configured for increasing aerodynamic lift of at least an inner portion of a rotor blade ( 22 ); and the at least one airfoil body ( 120 ) is attached to the hub ( 20 ) at the airfoil body root portion ( 122 ). In addition thereto, the present disclosure relates to an aerodynamic assembly ( 118 ) for a wind turbine ( 10 ) and a method of assembling a wind turbine ( 10 ).

Claims (37)

1. A wind turbine comprising:

a rotor including a rotatable hub and a plurality of rotor blades, each of the plurality of rotor blades being attached to the hub; and

at least one airfoil body including an aerodynamic profile and an airfoil body root portion;

wherein said aerodynamic profile is configured for increasing aerodynamic lift of at least an inner portion of a rotor blade;

wherein said at least one airfoil body is attached to said hub at said airfoil body root portion, and

wherein said at least one airfoil body is attached to said hub in a manner such that a relative position between said at least one airfoil body and said plurality of rotor blades is fixable during a rotation of said rotor, and said relative position is adjustable for regulating the increase of aerodynamic lift of at least the inner portion of the rotor blade.

2. The wind turbine according to claim 1 , wherein said relative position is adjustable by adjusting the angle formed between said at least one airfoil body and the rotor blade adjacent, in the counter-direction to rotor rotation, to said at least one airfoil body.

3. The wind turbine according to claim 1 , further comprising a coupling system configured for attaching the airfoil body root portion to said hub, said coupling system including a drive system adapted for:

fixing said relative position between said at least one airfoil body and said plurality of rotor blades during a rotation of said rotor; and

adjusting the position of said at least one airfoil body relative to said plurality of rotor blades for regulating the increase of aerodynamic lift of at least the inner portion of the rotor blade.

4. The wind turbine according to claim 3 , wherein the position of said at least one airfoil body is adjustable by said drive system to a position in which said at least one airfoil body induces no substantial lift increase of aerodynamic lift on the rotor blade adjacent, in the counter-direction to rotor rotation, to said airfoil body during a rotation of said rotor.

5. The wind turbine according to claim 1 , wherein:

said plurality of rotor blades consists of three rotor blades; and

the angle formed between said at least one airfoil body and the rotor blade adjacent, in the counter-direction to rotor rotation, to said at least one airfoil body is adjustable between approximately 0 and 60 degrees.

6. The wind turbine according to claim 1 , wherein:

said plurality of rotor blades consists of two rotor blades; and

the angle formed between said at least one airfoil body and the rotor blade adjacent, in the counter-direction to rotor rotation, to said at least one airfoil body is adjustable between approximately 0 and 90 degrees.

7. The wind turbine according to claim 1 , wherein the at least one airfoil body is associated to one of the plurality of rotor blades for increasing aerodynamic lift of at least the inner portion of the associated rotor blade.

8. The wind turbine according to claim 1 , wherein said aerodynamic profile is configured for increasing aerodynamic lift of an inner portion of the rotor blade adjacent, in the counter-direction to rotor rotation, to said at least one airfoil body during a rotation of said rotor.

9. The wind turbine according to claim 1 , wherein the longitudinal length of the at least one airfoil body is smaller than the maximal longitudinal length of the plurality of rotor blades.

10. The wind turbine according to claim 1 , wherein the longitudinal length of the at least one airfoil body is of less than approximately ⅓ of the maximal longitudinal length of the plurality of rotor blades.

11. The wind turbine according to claim 1 , wherein a leading edge of at least one rotor blade of said plurality of rotor blades includes a docking element at the leading edge of the rotor blade, the docking element being formed complementary to a free end of said airfoil body, which free end is distal from the airfoil body root portion, for engagement of said free end to the rotor blade.

12. The wind turbine according to claim 1 , wherein said at least one airfoil body is attached to the hub at a position upwind of, or in the same vertical plane than, the position at which said plurality of rotor blades is attached to the hub.

13. The wind turbine according to claim 1 , wherein the at least one airfoil body includes a joint for movably joining a free end portion of said airfoil body, which free end portion is distal from the airfoil body root portion, such that said free end portion can be movable for coupling thereof with the rotor blade adjacent, in the counter-direction to rotor rotation, to said at least one airfoil body.

14. A method of assembling a wind turbine including a rotor, a rotatable hub, and a plurality of rotor blades, each of the plurality of rotor blades being attached to the hub, said method comprising:

disposing at least one airfoil body in said rotor, said at least one airfoil body including an aerodynamic profile and an airfoil body root portion such that said at least one airfoil body is attached to said hub at said airfoil body root portion;

wherein said aerodynamic profile is configured for increasing aerodynamic lift of at least an inner portion of a rotor blade, and

wherein said at least one airfoil body is attached to said hub in a manner such that a relative position between said at least one airfoil body and said plurality of rotor blades is fixable during a rotation of said rotor, and said relative position is adjustable for regulating the increase of aerodynamic lift of at least the inner portion of the rotor blade.

15. An aerodynamic assembly for use with a wind turbine including a rotor comprising a rotatable hub and a plurality of rotor blades, each of the plurality of rotor blades being attached to the hub, the aerodynamic assembly comprising:

at least one airfoil body including an airfoil body root portion; and

a coupling system for attaching the airfoil body root portion to said hub, said coupling system including a drive system adapted for:

fixing a relative position between said at least one airfoil body and said plurality of rotor blades during a rotation of said rotor; and

adjusting the position of said at least one airfoil body relative to said plurality of rotor blades.

16. The aerodynamic assembly according to claim 15 , wherein the at least one airfoil body includes an aerodynamic profile configured for increasing aerodynamic lift of an inner portion of at least one of said plurality of rotor blades.

17. The aerodynamic assembly according to claim 16 , wherein the at least one airfoil body includes a wingtip device for reducing aerodynamic drag of a free end of said airfoil body, which free end is distal from the airfoil body root portion.

18. The aerodynamic assembly according to claim 16 , wherein the at least one airfoil body includes a joint for movably joining different portions of the airfoil body such that a free end of said airfoil body, which free end is distal from the airfoil body root portion, is movable relative to said airfoil body root portion.

19. The aerodynamic assembly according to claim 15 , wherein the at least one airfoil body is rotatable about an airfoil body pitch axis.

Assignments (6)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 22, 2024
From: LM WIND POWER US TECHNOLOGY APS
To: GE INFRASTRUCTURE TECHNOLOGY LLC
Reel/Frame 066869/0770 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 9, 2023
From: GENERAL ELECTRIC COMPANY
To: LM WIND POWER US TECHNOLOGY APS
Reel/Frame 065531/0160 →
CORRECTIVE ASSIGNMENT TO CORRECT THE DOCKET NUMBER LISTED ON COVER PAGE OF THE NOR PREVIOUSLY RECORDED ON REEL 025528 FRAME 0078. ASSIGNOR(S) HEREBY CONFIRMS THE THE DOCKET NUMBER PREVIOUSLY RECORDED AS 241087 SHOULD BE 241807.. Recorded Jan 21, 2011
From: BENITO SANTIAGO, PEDRO LUIS; YEGRO SEGOVIA, EUGENIO
To: GE WIND ENERGY GMBH
Reel/Frame 025675/0969 →
CORRECTIVE ASSIGNMENT TO CORRECT THE DOCKET NUMBER LISTED ON COVER PAGE OF THE NOR PREVIOUSLY RECORDED ON REEL 025528 FRAME 0175. ASSIGNOR(S) HEREBY CONFIRMS THE DOCKET NUMBER PREVIOUSLY RECORDED AS 241087 SHOULD BE 241807. Recorded Jan 21, 2011
From: GE WIND ENERGY GMBH
To: GENERAL ELECTRIC COMPANY
Reel/Frame 025675/0976 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2010
From: BENITO SANTIAGO, PEDRO LUIS; YEGRO SEGOVIA, EUGENIO
To: GE WIND ENERGY GMBH
Reel/Frame 025528/0078 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2010
From: GE WIND ENERGY GMBH
To: GENERAL ELECTRIC COMPANY
Reel/Frame 025528/0175 →
Continuity (1)
Related Publication 20110206509A1 · Aug 25, 2011