IP Library Granted Patent US 10,731,634
Granted Patent B2
US 10,731,634 · App. 16/329,447 · Granted Aug 4, 2020

Transportation and storage system for a wind turbine blade

Inventors: Rahul Bangar (Bangalore Karnataka, IN); Jacobus Van Der Zee (Kolding, DK); Nikolaj Olesen (Hinnerup, DK)
Assignee: LM WIND POWER US TECHNOLOGY APS
F03D13/40F03D13/00F05B2240/221F05B2260/02Y02E10/72
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,731,634
App. No.
16/329,447
Granted
Aug 4, 2020
Kind
B2
Abstract

The present invention relates to a transportation and storage system for a wind turbine blade ( 10 ), the system comprising a root frame assembly and a tip frame assembly. The frame assemblies comprise lateral frame parts ( 72, 74 ) each having a top member ( 84 ), a bottom member ( 86 ), a center beam ( 88 ), a first and a second upper inclined beam ( 90, 92 ) and a first and a second lower inclined beam ( 94, 96 ). The present invention also relates to the use of the system for transporting and/or storing one or more wind turbine blades.

Claims (27)

1. A transportation and storage system for a wind turbine blade ( 10 ), the blade having a profiled contour including a pressure side ( 52 ) and a suction side ( 54 ), and a leading edge ( 18 ) and a trailing edge ( 20 ) with a chord ( 60 ) having a chord length extending therebetween, the wind turbine blade ( 10 ) extending in a spanwise direction between a root end ( 16 ) and a tip end ( 14 ), wherein the system comprises a root frame assembly comprising at least one root end receptacle ( 68 ) and a root end frame, wherein the root end receptacle ( 68 ) is mounted to the root end frame, the system further comprising a tip frame assembly comprising at least one tip end receptacle ( 70 ) and a tip end frame, wherein the tip end receptacle ( 70 ) is mounted to the tip end frame, wherein the root end frame and/or the tip end frame each comprises a first lateral frame part ( 72 ) and a second lateral frame part ( 74 ) being laterally spaced apart and being mutually rigidly connected by means of at least one transversely extending transverse frame part, wherein at least one of the first and second lateral frame parts comprise:

a top member ( 84 ) arranged substantially horizontally;

a bottom member ( 86 ) arranged substantially horizontally opposite the top member ( 84 );

a center beam ( 88 ) arranged substantially vertically and connecting the top member ( 84 ) to the bottom member ( 86 );

a first and a second upper inclined beam ( 90 , 92 ) arranged in a V-shaped configuration, wherein each upper inclined beam extends between the top member ( 84 ) and the center beam ( 88 ); and

a first and a second lower inclined beam ( 94 , 96 ) arranged in a V-shaped configuration, wherein each lower inclined beam extends between the bottom member ( 86 ) and the center beam ( 88 ).

2. The transportation and storage system for a wind turbine blade according to claim 1 , wherein the first upper inclined beam ( 90 ) and the second upper inclined beam ( 92 ) form an acute angle and/or wherein the first lower inclined beam ( 94 ) and the second lower inclined beam ( 96 ) form an acute angle.

3. The transportation and storage system for a wind turbine blade according to claim 1 , wherein the respective first and second upper inclined beams and the respective first and second lower inclined beams are fastened to the center beam ( 88 ) within a region of the center beam ( 88 ) which is spaced from the upper and lower end thereof by at least 30% of the total vertical length of the center beam ( 88 ).

4. The transportation and storage system for a wind turbine blade according to claim 1 , wherein the tip end frame and the root end frame each comprise lower stacking means ( 100 a , 100 b , 100 c ) in a base part thereof and upper stacking means ( 98 a , 98 b , 98 c ) at a top thereof.

5. The transportation and storage system for a wind turbine blade according to claim 1 , wherein the top member ( 84 ) comprises a substantially horizontal upper surface, said upper surface comprising one or more protrusions ( 98 a , 98 b , 98 c ), and wherein the bottom member ( 86 ) comprises a substantially horizontal lower surface, said lower surface comprising one or more cavities ( 100 a , 100 b , 100 c ) for receiving the one more protrusion on the upper surface of the top member ( 84 ) of another root end frame or tip end frame in a stacked arrangement.

6. The transportation and storage system for a wind turbine blade according to claim 1 , wherein two trapezoid shaped blocks ( 97 a , 97 b ) are secured to opposite sides of the center beam ( 88 ) for receiving end portions of the first and second upper and lower inclined beams.

7. The transportation and storage system for a wind turbine blade according to claim 1 , wherein the root end receptacle ( 68 ) is hingedly mounted to the root end frame.

8. The transportation and storage system for a wind turbine blade according to claim 1 , wherein the root end receptacle ( 68 ) is releasably mounted to the root end frame.

9. The transportation and storage system for a wind turbine blade according to claim 1 , wherein the system comprises two root end receptacles ( 68 ) mounted to the root end frame.

10. The transportation and storage system for a wind turbine blade according to claim 1 , wherein each root end receptacle ( 68 ) comprises a plurality of through holes ( 69 ) for bolting the root end of a wind turbine blade to the root end receptacle ( 68 ).

11. The transportation and storage system for a wind turbine blade according to claim 1 , wherein the root end receptacle ( 68 ) comprises a block of material, said block comprising an arched supporting surface for receiving the root end of a wind turbine blade.

12. The transportation and storage system for a wind turbine blade according to claim 1 , wherein the tip end receptacle ( 70 ) is slidable in at least one direction.

13. The transportation and storage system for a wind turbine blade according to claim 1 , wherein the transverse frame part comprises one or more horizontally arranged bars interconnecting the first and second lateral frame parts ( 74 ).

14. The transportation and storage system for a wind turbine blade according to claim 13 , wherein the horizontally arranged bar has a circular cross section for receiving at least one clamp ring of a root end receptacle ( 68 ).

15. The transportation and storage system for a wind turbine blade according to claim 1 , wherein the first and the second upper inclined beams ( 90 , 92 ) are extending in the same plane.

16. The transportation and storage system for a wind turbine blade according to claim 1 , wherein the first and the second lower inclined beams ( 94 , 96 ) are extending in the same plane.

17. The transportation and storage system for a wind turbine blade according to claim 1 , wherein the first lateral frame part ( 72 ) extends in a first lateral plane and/or the second lateral frame part ( 74 ) extends in a second lateral plane.

18. The transportation and storage system for a wind turbine blade according to claim 17 , wherein the first lateral plane and/or the second lateral plane are perpendicular to the at least one transversely extending transverse frame part.

19. The transportation and storage system for a wind turbine blade according to claim 1 , wherein the root end receptacle ( 68 ) is mounted to the center beam ( 88 ) of the first lateral frame part ( 72 ) and/or the center beam ( 88 ) of the second lateral frame part ( 74 ).

20. The transportation and storage system for a wind turbine blade according to claim 1 , wherein the tip end receptacle ( 70 ) is mounted to the center beam ( 88 ) of the first lateral frame part ( 72 ) and/or the center beam ( 88 ) of the second lateral frame part ( 74 ).

21. The transportation and storage system for a wind turbine blade according to claim 2 , wherein the acute angle formed between the first upper inclined beam ( 90 ) and the second upper inclined beam ( 92 ) is equal to the acute angle formed between the first lower inclined beam ( 94 ) and the second lower inclined beam ( 96 ), and/or wherein the first upper inclined beam ( 90 ) has the same length as the second upper inclined beam ( 92 ) and/or wherein the first lower inclined beam ( 94 ) has the same length as the second lower inclined beam ( 96 ), and/or wherein the center beam ( 88 ), the first and second upper inclined beams and the first and second lower inclined beams are arranged symmetrically.

22. The transportation and storage system for a wind turbine blade according to claim 7 , wherein the root end receptacle ( 68 ) is hingedly mounted to the root end frame along a horizontal axis, and wherein the tip end receptacle ( 70 ) is slidable in the horizontal direction.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 9, 2019
From: BANGAR, RAHUL; VAN DER ZEE, JACOBUS; OLESEN, NIKOLAJ
To: LM WIND POWER US TECHNOLOGY APS
Reel/Frame 050316/0102 →
Priority Claims (1)
EP 16186986 · Sep 2, 2016 · regional
Continuity (1)
Related Publication 20190219031A1 · Jul 18, 2019
Cited By (1)
US 12,196,176