IP Library Granted Patent US 11,454,217
Granted Patent B2
US 11,454,217 · App. 16/757,814 · Granted Sep 27, 2022

System for craneless blade mounting and dismounting at wind turbines

Inventor: Kenneth Helligsø Svinth (Galten, DK)
Assignee: ENABL A/S
F03D13/10F05B2240/912F05B2240/916
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Quick Facts
Patent No.
US 11,454,217
App. No.
16/757,814
Granted
Sep 27, 2022
Kind
B2
Abstract

System ( 1 ) for craneless blade ( 6 ) mounting and dismounting at wind turbines ( 2 ), wherein the system ( 1 ) at least comprises a blade tip beam ( 9 ) to be fixed at the blade ( 6 ) and a blade supporting structure ( 15 ) to be connected with and to guide and secure the blade tip beam ( 9 ) while the supporting structure ( 15 ) is displaced in a substantially horizontal direction, whereby total control of the blade ( 6 ) when moved from vertical position towards horizontal position and until the blade ( 6 ) is safe on a cradle or support ( 15 ) or opposite during mounting is achieved.

Claims (17)

1. System ( 1 ) for craneless blade ( 6 ) mounting and dismounting at wind turbines ( 2 ), wherein the system ( 1 ) at least comprises a blade tip beam ( 9 ) to be fixed at the blade ( 6 ) and a displaceable arranged blade supporting structure ( 15 ) to be connected with and to guide and secure the blade tip beam ( 9 ) while the supporting structure ( 15 ) is displaced in a substantially horizontal direction;

where the blade tip beam ( 9 ) at least comprises a longitudinal beam ( 10 ) with a first end ( 11 ) and a second end ( 12 ) and where the blade tip beam ( 9 ) further at least comprises a first clamping device ( 13 ), where the beam ( 10 ) is adapted to be arranged substantially parallel to the lengthwise direction of a blade ( 6 ) with the first end ( 11 ) of the blade tip beam ( 9 ) extending in the same direction as the tip end of the blade ( 8 ), where the blade tip beam ( 9 ) further comprises a second clamping device ( 14 ) placed substantially perpendicular to the longitudinal beam and substantially parallel with and in the same direction as the first clamping device ( 13 ), and where each of the clamping devices ( 13 , 14 ) is adapted to be clamped at least partially around the blade ( 6 ) in the crosswise direction of the blade ( 6 );

wherein the blade supporting structure ( 15 ) comprises a tiltable hopper device ( 28 ) adapted to receive and support said first end ( 11 ) of the blade tip beam ( 9 ) with a variable angle of the blade tip beam ( 9 ) during displacement of the blade supporting structure ( 15 );

wherein the blade tip beam ( 9 ) further comprises locking means capable of securing the blade tip beam ( 9 ) to the tiltable hopper device ( 28 ) of the blade supporting structure to the blade tip beam;

wherein the system ( 1 ) further comprises equipment for hoisting and/or lowering the blade ( 6 ) by means of at least a first winch ( 16 ) placed on the ground and at least a first wire ( 17 ) for connection between the first winch ( 16 ) and the blade ( 6 );

wherein the first wire ( 17 ) is connected with the blade ( 6 ) at a root end ( 7 ) of the blade ( 6 ) or in a position between the root end ( 7 ) and the centre of gravity of the blade, for the blade ( 6 ) to hang substantially vertical; and

wherein the connection between the first winch ( 16 ) and the blade ( 6 ) is effected via a hub ( 5 ) of the wind turbine ( 2 ) arranged at a nacelle ( 4 ) of the wind turbine ( 2 ).

2. System ( 1 ) according to claim 1 , wherein the system ( 1 ) further comprises at least a first tag wire ( 19 ) connected to the blade or the blade tip beam.

3. System ( 1 ) according to claim 1 , wherein the system ( 1 ) further comprises at least a first tag wire winch ( 18 ) and a first tag wire ( 19 ) for connection between the blade ( 6 ) and the first tag wire winch ( 18 ).

4. System ( 1 ) according to claim 2 , wherein the system ( 1 ) further comprises at least a second tag wire winch ( 20 ) and a second tag wire ( 21 ) for connection between the blade ( 6 ) and the second tag wire winch ( 20 ), wherein a V-formation of the tag wires ( 19 , 21 ) being achievable.

5. System ( 1 ) according to claim 1 , wherein the system ( 1 ) further comprises a root wire ( 31 ) for connection between the blade tip beam ( 9 ) and the root end of the blade ( 7 ).

6. System ( 1 ) according to claim 2 , wherein the system ( 1 ) further comprises a system capable of automatically control and regulation of the first winch ( 16 ), so that the system for automatically control and regulation of the first winch ( 16 ) is adapted to ensure that at least 60%, such as in the range of 60-90% of the weight of the blade ( 6 ), is placed on the first winch ( 16 ), when the blade ( 6 ) is supported by the blade supporting structure ( 15 ) during lowering and/or hoisting the blade ( 6 ).

7. System ( 1 ) according to claim 1 , wherein the blade tip beam ( 9 ) further comprises a second clamping device ( 14 ) placed substantially perpendicular to the longitudinal beam ( 10 ) and substantially parallel with and in the same direction as the first clamping device ( 13 ).

8. System ( 1 ) according to claim 1 ,

wherein the system ( 1 ) further comprises at least a root support ( 22 ) for supporting the root end of the blade ( 7 ).

9. System ( 1 ) according to claim 8 , wherein the root support ( 22 ) further comprises wheels.

10. Combination comprising a blade tip beam ( 9 ) and a displaceable arranged blade supporting structure ( 15 ), which combination is for a system ( 1 ) for craneless blade ( 6 ) mounting and dismounting at wind turbines ( 2 ), wherein the blade supporting structure ( 15 ) is arranged to be connected with and to guide and secure the blade tip beam ( 9 ) while the supporting structure ( 15 ) is displaced in a substantially horizontal direction, wherein the blade tip beam ( 9 ) comprises a longitudinal beam ( 10 ) with a first end ( 11 ) and a second end ( 12 ) where the blade tip beam ( 9 ) further comprises a first clamping device ( 13 ) placed substantially perpendicular to the longitudinal beam ( 10 ) and closer to the second end ( 12 ) than to the first end ( 11 ), wherein the blade tip beam ( 9 ) further comprises a second clamping device ( 14 ) placed substantially perpendicular to the longitudinal beam and substantially parallel with and in the same direction as the first clamping device ( 13 ), where the beam ( 10 ) is adapted to be arranged substantially parallel to the lengthwise direction of a blade ( 6 ) and where each of the clamping devices ( 1314 ) is adapted to be clamped at least partially around the blade ( 6 ) in the crosswise direction of the blade ( 6 ), wherein the blade supporting structure ( 15 ) comprises a tiltable hopper device ( 28 ) adapted to receive and support said first end ( 11 ) of the blade tip beam ( 9 ) with a variable angle of the blade tip beam ( 9 ) during displacement of the blade supporting structure ( 15 ), wherein the blade tip beam ( 9 ) further comprises locking means capable of securing the blade tip beam ( 9 ) to the tiltable hopper device ( 28 ) of the blade supporting structure to the blade tip beam.

Assignments (2)
CHANGE OF NAME Recorded Mar 28, 2022
From: ELTRONIC WIND SOLUTIONS A/S
To: ENABL A/S
Reel/Frame 059512/0375 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2020
From: SVINTH, KENNETH HELLIGSØ
To: ELTRONIC WIND SOLUTIONS A/S
Reel/Frame 052890/0694 →
Priority Claims (1)
DK PA 2017 70800 · Oct 23, 2017 · national
Continuity (1)
Related Publication 20210270241A1 · Sep 2, 2021
Cited By (1)
US 12,281,636