IP Library › Granted Patent US 12,454,942
Granted Patent B1
US 12,454,942 · App. 19/259,810 · Granted Oct 28, 2025

Floating wind turbine with passive pitch correction

Inventor: George J. Syrovy (Centerville, MA)
Assignee: George J. Syrovy
F03D13/256F03B13/20F03D1/141F03D7/0202F03D7/0204F03D7/04F03D9/008F05B2240/93F05B2240/95
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Quick Facts
Patent No.
US 12,454,942
App. No.
19/259,810
Granted
Oct 28, 2025
Kind
B1
Abstract

The nacelle ( 27 ) of a horizontal axis wind turbine (WT) is mounted on a vertical support (VS) by means of a pivot ( 33 ). The vertical support is mounted off-center with respect to a floating, rotatable support ( 7 ). A weight ( 43 ) functionally attached to the nacelle maintains the axis of the turbine horizontal as the floating support pitches (rotates forward and back). The weight is attached to an elongate vertical element ( 41 ). Relative motion between the vertical element ( 41 ) and the pitching floating support (HS) generates an electric current.

Claims (25)

1. A wind turbine comprising blades which extend outwardly from and sweep around a horizontal axis of rotation; a nacelle comprising at least a horizontal shaft driven by the blades and a drive train; an upright structure supporting the nacelle and blades, the upright structure extending below the sweep of the blades, and a generally horizontal floating base supporting the upright structure, wherein,

the upright structure comprises a pivot supporting the nacelle, and

the wind turbine further comprises an elongate vertical element supported by the pivot, the elongate vertical element being connected to the nacelle for movement with the nacelle, the elongate vertical element carrying a weight, the weight maintaining the axis of rotation of the blades in a horizontal position as the floating base pitches, the pivot being located downwind of the blades and upwind of the elongate vertical element.

2. The wind turbine of claim 1 wherein the pivot is above a center of gravity of the nacelle.

3. The wind turbine of claim 1 wherein the upright structure comprises two generally vertical legs spaced behind the blades and a cross-bar connecting upper parts of the two generally vertical legs, the cross-bar carrying the pivot.

4. The wind turbine of claim 1 wherein the pivot is a revolute joint positioned behind the blades and wherein the elongate vertical element is positioned behind the pivot.

5. The wind turbine of claim 1 wherein the elongate vertical element is rigid and wherein the rotatable support comprises restraining walls limiting lateral motion of the elongate vertical element when the rotatable support rolls.

6. The wind turbine of claim 5 further comprising rollers mounted to the elongate vertical element, the rollers engaging the restraining walls when the rotatable support rolls.

7. The wind turbine of claim 1 further comprising at least one magnet attached to one of the elongate vertical element and the rotatable support, and at least one coil attached to the other of the elongate vertical element and the rotatable support, the magnet and coil cooperating to generate an electric current when the rotatable support pitches.

8. The wind turbine of claim 1 wherein the elongate vertical element and the weight are entirely above the surface of water on which the wind turbine is floating.

9. The wind turbine of claim 1 wherein the weight is mounted on a lower portion of the elongate vertical element.

10. The wind turbine of claim 9 wherein the elongate vertical element is rigid and wherein the floating base comprises restraining walls limiting lateral motion of the elongate vertical element when the floating base rolls.

11. The wind turbine of claim 10 further comprising rollers mounted to the elongate vertical element, the rollers engaging the restraining walls when the floating base rolls.

12. The wind turbine of claim 10 wherein the weight extends below the floating base and into water on which the wind turbine is floating.

13. The wind turbine of claim 10 wherein the weight is entirely above the surface of water on which the wind turbine is floating.

14. The wind turbine of claim 10 further comprising at least one magnet attached to one of the elongate vertical element and the rotatable support, and at least one coil attached to the other of the elongate vertical element and the rotatable support, the magnet and coil cooperating to generate an electric current when the rotatable support pitches.

15. A wind turbine comprising blades which extend outwardly from and sweep around a horizontal axis of rotation; a nacelle comprising at least a horizontal shaft driven by the blades and a drive train; an upright structure supporting the nacelle and blades, the upright structure extending below the sweep of the blades, and a generally horizontal floating base supporting the upright structure, wherein,

the upright structure is mounted to a rotatable support carried by the base, so that the upright structure, the nacelle, and the blades rotate together about a vertical axis with respect to the base,

the upright structure, the nacelle, and the blades have a collective center of gravity that is positioned behind the vertical axis,

the upright structure comprises a pivot supporting the nacelle, and

the wind turbine further comprises an elongate vertical element connected to the nacelle for movement with the nacelle, the elongate vertical element carrying a weight, the weight maintaining the axis of rotation of the blades in a horizontal position as the floating base pitches.

16. The wind turbine of claim 15 wherein the pivot is above a center of gravity of the nacelle.

17. The wind turbine of claim 15 wherein the upright structure comprises two generally vertical legs spaced behind the blades and a cross-bar connecting upper parts of the two generally vertical legs, the cross-bar carrying the pivot.

18. The wind turbine of claim 15 wherein the pivot is a revolute joint positioned behind the blades and wherein the elongate vertical element is positioned behind the pivot.

19. The wind turbine of claim 15 further comprising at least one magnet attached to one of the elongate vertical element and the rotatable support, and at least one coil attached to the other of the elongate vertical element and the rotatable support, the magnet and coil cooperating to generate an electric current when the rotatable support pitches.

Continuity (2)
Continuation PCTUS2025017793 · Feb 28, 2025
Provisional Application 63558852 · Feb 28, 2024
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