IP Library Granted Patent US 11,453,576
Granted Patent B2
US 11,453,576 · App. 16/771,783 · Granted Sep 27, 2022

System, device and method for lifting and controlling the horizontal orientation and/or position of components

Inventor: Kenneth Helligsø Svinth (Galten, DK)
Assignee: ENABL A/S
B66C13/08B66C1/108B66C23/185F03D13/10F05B2230/61
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 11,453,576
App. No.
16/771,783
Granted
Sep 27, 2022
Kind
B2
Abstract

The system ( 1 ) for lifting and controlling the horizontal orientation and/or position of components ( 90 ), such as wind turbine main components, during installation and/or dismounting of said components comprises: a crane boom arrangement ( 3 ) and one or more lifting lines ( 3 a ) guided by said crane boom arrangement ( 3 ) for lifting said components. The system moreover comprises a lifting device ( 10 ) comprising a crane connection arrangement ( 11 ) connected to said one or more lifting lines ( 3 a ), a frame arrangement ( 12 ) connected to said crane connection arrangement ( 11 ), a first and a second steering wire guide ( 13 a, 13 b ) configured for guiding steering wires ( 20 a, 20 b ), and a component connection arrangement ( 30 ) connected to said frame arrangement and configured to be connected directly or indirectly to the component to be lifted. The system ( 1 ) further comprises a guiding arrangement ( 4 ) connected to said crane boom arrangement ( 3 ), and said steering wires ( 20 a, 20 b ) are connected to said guiding arrangement ( 4 ) and extend from the guiding arrangement ( 4 ) in a direction towards the lifting device ( 10 ) with a mutual angle (a 1 ) between the steering wires ( 20 a, 20 b ). A relative displacement between said frame arrangement ( 12 ) and one or both of the first and second steering wire guides ( 13 a, 13 b ) is configured to be provided to control the mutual angle (a 1 ) between the steering wires ( 20 a, 20 b ).

Claims (31)

1. A lifting device ( 10 ) for lifting and controlling the horizontal orientation of wind turbine components, during installation.

2. A system ( 1 ) for lifting and controlling the horizontal orientation and/or position of a wind turbine component, during installation and/or dismounting of said components, wherein the system comprises:

a crane boom arrangement ( 3 ) and one or more lifting lines ( 3 a ) guided by said crane boom arrangement ( 3 ) for lifting said component,

a lifting device ( 10 ) according to claim 1 wherein the crane connection arrangement ( 11 ) is connected to said one or more lifting lines ( 3 a ),

a rotation control arrangement ( 15 a , 15 b ) configured to adjust the orientation in a horizontal plane of the component ( 90 ) lifted by means of said lifting device ( 10 ) by adjusting one or more of said steering wires ( 20 a , 20 b ), and a guiding arrangement ( 4 ) connected to said crane boom arrangement ( 3 ), wherein said steering wires ( 20 a , 20 b ) are connected to said guiding arrangement ( 4 ) and extend from the guiding arrangement ( 4 ) in a direction towards the lifting device ( 10 ) with a mutual angle (a 1 ) between the steering wires ( 20 a , 20 b ).

3. A system ( 1 ) according to claim 2 , wherein the rotation control arrangement ( 15 a , 15 b ) is configured to adjust said one or more of said steering wires ( 20 a , 20 b ) to rotate (RO) the frame arrangement ( 12 ) in the horizontal plane, and wherein said relative displacement between the frame arrangement ( 12 ) and one or both of the first and second steering wire guides ( 13 a , 13 b ) is configured to be provided to control the mutual angle (a 1 ) between the steering wires ( 20 a , 20 b ) when said frame arrangement ( 12 ) is rotated (RO) in a horizontal plane.

4. A system ( 1 ) according to claim 2 , wherein said first and a second steering wire guides ( 13 a , 13 b ) are connected to and supported by said frame arrangement ( 12 ), and wherein one or both of the first and second steering wire guides ( 13 a , 13 b ) are configured to be displaced relative to said frame arrangement ( 12 ) to control said mutual angle (a 1 ) between the steering wires ( 20 a , 20 b ), and/or

wherein said first and/or second steering wire guides ( 13 a , 13 b ) are configured to provide that the angle (a 1 ) between the steering wires is within an angle range between 50° and 130°, preferably between 60° and 120°, such as between 75° and 105°, preferably between 85° and 95° when the frame arrangement ( 12 ) is rotated.

5. A system ( 1 ) according to claim 2 , wherein the angle (a 1 ) between the steering wires ( 20 a , 20 b ) is controlled by adjusting the mutual distance (DIS 2 ) between the first and second steering wire guides ( 13 a , 13 b ).

6. A system ( 1 ) according to claim 2 , wherein the mutual distance (DIS 2 ) between the first and second steering wire guides ( 13 a , 13 b ) is:

configured to be increased in response to an increase in the distance (DIS 1 ) between the crane boom arrangement ( 3 )and/or guiding arrangement ( 4 ), and the lifting device ( 10 ),

configured to be reduced in response to a decrease in the distance (DIS 1 ) between the crane boom arrangement ( 3 ) and/or guiding arrangement ( 4 ) and the lifting device ( 10 ), and/or

configured to be adjusted in response to a rotation (RO) of the frame arrangement ( 10 ).

7. A system ( 1 ) according to claim 2 , wherein the first and second steering wire guides ( 13 a , 13 b ) are configured to be displaced along a longitudinal frame part ( 12 a , 12 b ) of said frame arrangement ( 12 ), where said longitudinal frame parts ( 12 a , 12 b ) are configured to extend in a direction away from a centre part ( 19 ) of said lifting device ( 10 ), preferably in a substantially horizontal direction, when the lifting device ( 10 ) hangs from said one or more lifting lines ( 3 a ).

8. A system ( 1 ) according to claim 2 , wherein said guiding arrangement ( 4 ) comprises one or more guiding wires ( 4 ) extending in the longitudinal direction of a crane boom of said crane boom arrangement ( 3 ), wherein said guiding arrangement ( 4 ) preferably comprises a single guiding wire ( 4 ), wherein both of said steering wires ( 20 a , 20 b ) are preferably connected to said single guiding wire by means of a connection ( 40 ).

9. A system ( 1 ) according to claim 2 , wherein said system ( 1 ) comprises a displacement control system ( 22 , 17 a , 17 b ) for controlling the displacement of one or more of the first and/or second steering wire guides ( 13 a , 13 b ) relative to said frame arrangement ( 12 ), wherein said displacement control system comprises:

one or more displacement arrangements ( 17 a , 17 b ) arranged at said lifting device and configured to provide a displacement of the respective, steering wire guide ( 13 a , 13 b ) relative to the frame arrangement ( 12 ), and

a displacement arrangement controller ( 22 ) comprising control circuitry configured to provide control signals to the displacement arrangements ( 17 a , 17 b ), preferably based on one or more input signals,

wherein said displacement control system preferably is configured to provide a displacement of said first and/or second steering wire guides ( 13 a , 13 b ) in response to an adjustment of one or more of said steering wires ( 20 a , 20 b ) by means of the rotation control arrangement ( 15 a , 15 b ).

10. Use of a lifting device ( 10 ) according to claim 1 in a system for lifting and controlling the horizontal orientation and/or position of a wind turbine component, during installation and/or dismounting of said component, wherein the system comprises:

a crane boom arrangement ( 3 ) and one or more lifting lines ( 3 a ) guided by said crane boom arrangement ( 3 ) for lifting said components, wherein the crane connection arrangement ( 11 ) is connected to said one or more lifting lines ( 3 a ),

a rotation control arrangement ( 15 a , 15 b ) configured to adjust the orientation in a horizontal plane of the component ( 90 ) lifted by means of said lifting device ( 10 ) by adjusting one or more of said steering wires ( 20 a , 20 b ), and

a guiding arrangement ( 4 ) connected to said crane boom arrangement ( 3 ), wherein said steering wires ( 20 a , 20 b ) are connected to said guiding arrangement ( 4 ) and extend from the guiding arrangement ( 4 ) in a direction towards the lifting device ( 10 ) with a mutual angle (a 1 ) between the steering wires ( 20 a , 20 b ).

11. A method of lifting and controlling the horizontal orientation and/or position of a wind turbine component, during installation and/or dismounting of said components, by means of a lifting device ( 10 ), wherein the lifting device comprises:

a crane connection arrangement ( 11 ) to be connected to one or more lifting lines ( 3 a ) of a crane arrangement,

a frame arrangement ( 12 ) connected to said crane connection arrangement ( 11 ), a first and a second steering wire guide ( 13 a , 13 b ) for guiding steering wires ( 20 a , 20 b ) placed on the crane arrangement ( 11 ), and

a component connection arrangement ( 30 ) connected to said frame arrangement and configured to be connected directly or indirectly to the component, wherein a guiding arrangement ( 4 ) is connected to a crane boom arrangement ( 3 ), and wherein said steering wires ( 20 a , 20 b ) are connected to said guiding arrangement ( 4 ) and extend from the guiding arrangement ( 4 ) in a direction towards the lifting device ( 10 ) with a mutual angle (a 1 ) between the steering wires ( 20 a , 20 b ), and so that the steering wires ( 20 a , 20 b ) are guided by said first and second steering wire guides ( 13 a , 13 b ), wherein the method comprises the steps of:

connecting one or more lifting lines ( 3 a ) to the crane connection arrangement ( 11 ) so that the lifting device ( 10 ) hangs from the one or more lifting lines ( 3 a ),

connecting said component ( 90 ) to be lifted to said component connection arrangement ( 30 ),

hoisting and/or lowering said component ( 90 ) by operating said one or more lifting lines ( 3 a ), and/or rotating (RO) the frame arrangement ( 12 ) in a horizontal plane by means of said one or more steering wires ( 20 a , 20 b ) guided by the steering wire guides ( 13 a , 13 b ),

wherein a relative displacement between one or both of the first and second steering wire guides ( 13 a , 13 b ) and said frame arrangement ( 12 ) is provided due to and/or in repose to a rotation (RO) of the frame arrangement ( 12 ) by a rotation control arrangement ( 15 a , 15 b ), and/or wherein a relative displacement between one or both of the first and second steering wire guides ( 13 a , 13 b ) and said frame arrangement ( 12 ) is provided in response to a change in distance (DIS 1 ) between the lifting device ( 10 ) and the guiding arrangement ( 4 ), wherein—the first and second steering wire guide ( 13 a , 13 b ) are connected to and supported by the frame arrangement ( 12 ).

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 11, 2020
From: SVINTH, KENNETH HELLIGSØ
To: ELTRONIC WIND SOLUTIONS A/S
Reel/Frame 052906/0341 →
Priority Claims (2)
DK PA 2017 70934 · Dec 13, 2017 · national
DK PA 2017 70976 · Dec 21, 2017 · national
Continuity (1)
Related Publication 20210362987A1 · Nov 25, 2021