IP Library › Granted Patent US 10,914,095
Granted Patent B2
US 10,914,095 · App. 16/366,475 · Granted Feb 9, 2021

Freestanding internal structure assembly for a wind turbine tower

Inventors: James Eric Reed (Spartanburg, SC); Ronald Lawrence Yenser (Simpsonville, SC); Gary Wayne Holladay (Greenville, SC); Eduardo Moreno Benito (Mataro, ES); Sergi Unzueta Garcia (Barcelona, ES)
Assignee: General Electric Company
E04H12/342E04H12/10F03D13/20F03D80/88E04B1/98E04H2012/006
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Quick Facts
Patent No.
US 10,914,095
App. No.
16/366,475
Granted
Feb 9, 2021
Kind
B2
Abstract

A tower assembly for a wind turbine includes a tower and a freestanding internal tower structure assembly. The tower has a tower wall defining an inner surface and an outer surface separated by a tower wall thickness, with the inner surface defining a tower interior. The internal tower structure assembly is positioned within the tower interior. The tower structure assembly includes a plurality of stackable support structures configured to support one or more internal tower components. Further, the tower structure assembly is freestanding within the tower interior.

Claims (34)

1. A tower assembly for a wind turbine positioned, the tower assembly comprising:

a tower comprising a tower wall having an inner surface and an outer surface separated by a tower wall thickness, the inner surface defining a tower interior; and

an internal tower structure assembly positioned within the tower interior and being freestanding within the tower interior, the tower structure assembly comprising:

a plurality of stackable support structures configured to support one or more internal tower components,

a stackable base support structure positioned between a foundation and the plurality of stackable support structures and being sized to fit over a power converter of the wind turbine, the stackable base support structure being larger than any of the plurality of stackable support structures, and

a grating platform positioned atop the stackable base support structure to allow a fan to exhaust.

2. The tower assembly of claim 1 , wherein each of the plurality of stackable support structures comprises one or more alignment pins arranged on a top surface thereof that is configured to secure the stackable support structure to an adjacent stackable support structure.

3. The tower assembly of claim 2 , wherein the top surface of each of the plurality of stackable support structures defines a plurality of corners, each of the corners comprising one of the alignment pins.

4. The tower assembly of claim 1 , further comprising at least one bumper component coupled to the internal tower structure assembly and contacting the inner surface of the tower wall, the bumper component configured to reduce oscillations of the tower structure assembly within the tower interior.

5. The tower assembly of claim 1 , wherein the one or more internal tower components further comprise at least one of one or more ladders, one or more platforms, a service lift, cables, a drip loop, a fall arrest system, a transformer, a fan, and a wind turbine controller.

6. The tower assembly of claim 5 , wherein the internal tower structure assembly further comprises at least one cross beam positioned in the tower interior for supporting the service lift.

7. The tower assembly of claim 5 , wherein the internal tower structure assembly further comprises one or more attachment arms extending from one or more of the plurality of stackable support structures for supporting the one or more ladders.

8. The tower assembly of claim 5 , wherein one or more of the plurality of stackable support structures further comprises a first side defining the a plurality of cable trays.

9. The tower assembly of claim 1 , further comprising a base platform comprising an aperture configured to receive the stackable base support structure of the tower structure assembly.

10. The tower assembly of claim 9 , further comprising an additional ladder extending from a foundation of the tower through the base platform.

11. A wind turbine, comprising:

a nacelle;

a rotor mounted to the nacelle, the rotor comprising a rotatable hub and at least one rotor blade;

a tower assembly supporting the nacelle, the tower assembly comprising:

a tower comprising a tower wall having an inner surface and an outer surface separated by a tower wall thickness, the inner surface defining a tower interior; and

an internal tower structure assembly positioned within the tower interior and being freestanding within the tower interior, the tower structure assembly comprising:

a plurality of stackable support structures configured to support one or more internal tower components,

a stackable base support structure positioned between a foundation of the wind turbine and the plurality of stackable support structures and being sized to fit over a power converter of the wind turbine, the stackable base support structure being larger than any of the plurality of stackable support structures, and

a grating platform positioned atop the stackable base support structure to allow a fan to exhaust.

12. The wind turbine of claim 11 , wherein each of the plurality of stackable support structures comprises one or more alignment pins arranged on a top surface thereof that is configured to secure the stackable support structure to an adjacent stackable support structure.

13. The wind turbine of claim 11 , further comprising at least one bumper component coupled to the internal tower structure assembly and contacting the inner surface of the tower wall, the bumper component configured to reduce oscillations of the tower structure assembly.

14. The wind turbine of claim 11 , wherein the one or more internal tower components further comprise at least one of one or more ladders, one or more platforms, a service lift, cables, a plurality of cable trays, a drip loop, a fall arrest system, a transformer, a fan, and a wind turbine controller.

15. The wind turbine of claim 14 , wherein the internal tower structure assembly further comprises one or more attachment arms extending from one or more of the plurality of stackable support structures for supporting the one or more ladders.

16. The wind turbine of claim 14 , wherein one or more of the plurality of stackable support structures further comprises a first side defining the plurality of cable trays.

17. An internal tower structure assembly for a hollow tower, the internal tower structure assembly comprising, the hollow tower comprising a base platform:

a plurality of support structures stackable atop each other in a vertical direction, each of the plurality of support structures comprising at least one alignment pin for connecting to an adjacent support structure;

a stackable base support structure positioned between a foundation and the plurality of support structures, the stackable base support structure being larger than any of the plurality of support structures; and

a grating platform positioned atop the stackable base support structure to allow a fan to exhaust,

wherein, when stacked in the vertical direction, the plurality of support structures forms a freestanding structure for placement in the hollow interior, the freestanding structure configured to support one or more internal tower components.

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 Mar 27, 2019
From: REED, JAMES ERIC; YENSER, RONALD LAWRENCE; HOLLADAY, GARY WAYNE; MORENO BENITO, EDUARDO; UNZUETA GARCIA, SERGI
To: GENERAL ELECTRIC COMPANY
Reel/Frame 048716/0865 →
Priority Claims (1)
EP 18382216 · Mar 28, 2018 · regional
Continuity (1)
Related Publication 20190301196A1 · Oct 3, 2019
Cited By (1)
US 12,276,264