IP Library Granted Patent US 10,197,075
Granted Patent B2
US 10,197,075 · App. 14/650,944 · Granted Feb 5, 2019

Turn drive for a wind turbine, and method for rotating the rotor shaft of a wind turbine

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Quick Facts
Patent No.
US 10,197,075
App. No.
14/650,944
Granted
Feb 5, 2019
Kind
B2
Abstract

The invention relates to a turn drive for a wind turbine. The turn drive comprises a shaft, a hydraulic motor for driving the shaft, and a drive line for supplying a pressurized hydraulic fluid to the hydraulic motor. According to the invention, the drive line is provided with a settable pressure-limiting valve. The invention additionally relates to an associated method for rotating the rotor shaft of the wind turbine. By means of the method according to the invention and the turn drive, the rotor blades can be mounted individually on the hub of the rotor, without the gearbox of the wind turbine becoming overloaded.

Claims (24)

1. A turn drive for a wind turbine, comprising a shaft ( 52 ), a hydraulic motor ( 27 ) for driving the shaft ( 52 ), a torque sensor ( 37 ) for the torque transmitted between a drive unit ( 31 ) of the turn drive and a support ( 34 ), and a drive line ( 39 ) for supplying a pressurized hydraulic fluid to the hydraulic motor ( 27 ), wherein the turn drive is configured for connection to a high-speed shaft ( 19 ) of a gearbox ( 18 ) of the wind turbine and the drive line ( 39 ) is provided with a settable pressure-limiting valve ( 30 ).

2. The turn drive of claim 1 , wherein a mechanical brake ( 40 ) is provided for the shaft.

3. The turn drive of claim 2 , the brake ( 40 ) has a hydraulic actuating element ( 28 ), wherein a brake line ( 41 ) carrying hydraulic fluid is connected to the actuating element ( 28 ), and wherein the brake ( 40 ) is released when the hydraulic fluid is pressurized.

4. The turn drive of claim 3 , which comprises a pressure accumulator for the pressure in the brake line ( 41 ).

5. The turn drive of claim 3 , wherein a settable pressure reducer ( 24 ) is disposed in the brake line ( 41 ).

6. The turn drive of claim 5 , wherein an auxiliary brake line ( 53 ) extends to the actuating element ( 28 ), in order to supply hydraulic fluid to the actuating element ( 28 ), bypassing the settable pressure reducer ( 24 ).

7. The turn drive of claim 6 , which comprises a pressure accumulator for the pressure in the auxiliary brake line ( 53 ).

8. The turn drive of claim 2 , wherein there is a connecting line ( 42 ) between the hydraulic motor ( 27 ) and the brake ( 40 ).

9. The turn drive of claim 8 , wherein the connecting line ( 42 ) and the brake line ( 41 ) are connected to each other via a shuttle valve ( 43 ), such that the higher of the two pressures acts upon the actuating element ( 28 ).

10. The turn drive of claim 1 , wherein the hydraulic motor ( 27 ) is equipped with a short-circuited line ( 22 ).

11. The turn drive of claim 1 , which comprises a controller ( 45 ), having a signal input for a signal relating to the state of a locking device ( 20 ) of a rotor shaft ( 17 ) of the wind turbine.

12. The turn drive of claim 1 , wherein a data logger ( 48 ) is provided, which, when the turn drive is in operation, records one or more of the following items of information:

a. pressure of the hydraulic fluid in the hydraulic motor ( 27 );

b. torque between the hydraulic motor ( 27 ) and a support ( 34 );

c. oil temperature of the gearbox ( 18 ) of the wind turbine;

d. wind speed and wind direction;

e. angular position of a rotor shaft ( 17 ) of the wind turbine.

13. An arrangement of a gearbox of a wind turbine and a turn drive of claim 1 , wherein the shaft ( 52 ) of the turn drive is in engagement with the high-speed shaft ( 19 ) of the gearbox ( 18 ).

14. The arrangement of claim 13 , wherein the shaft ( 52 ) of the turn drive is aligned concentrically in relation to the high-speed shaft ( 19 ).

15. A method for rotating a rotor shaft ( 17 ) of a wind turbine, wherein the rotor shaft ( 17 ) is connected to a gearbox ( 18 ) of the wind turbine, having the following steps:

a. connecting a turn drive to a high-speed shaft ( 19 ) of the gearbox ( 18 ), wherein the turn drive is equipped with a hydraulic motor ( 27 ) and a torque sensor ( 37 ) for the torque transmitted between a drive unit ( 31 ) of the turn drive and a support ( 34 );

b. setting a pressure-limiting valve ( 30 ) in a drive line ( 39 ) of the hydraulic motor ( 27 ) to a predefined threshold value, in order to limit the torque that can be transmitted to the gearbox ( 18 );

c. supplying a pressurized hydraulic fluid to the hydraulic motor ( 27 ), wherein the pressure-limiting valve ( 30 ) opens when the pressure of the hydraulic fluid exceeds the predefined threshold value.

16. A turn drive for a wind turbine, comprising a shaft ( 52 ), a hydraulic motor ( 27 ) for driving the shaft ( 52 ), a mechanical brake ( 40 ) provided for the shaft ( 52 ), and a drive line ( 39 ) for supplying a pressurized hydraulic fluid to the hydraulic motor ( 27 ), wherein there is a connecting line ( 42 ) between the hydraulic motor ( 27 ) and the brake ( 40 ) and the drive line ( 39 ) is provided with a settable pressure-limiting valve ( 30 ).

Assignments (6)
CHANGE OF ADDRESS Recorded Aug 31, 2023
From: SIEMENS GAMESA RENEWABLE ENERGY SERVICE GMBH
To: SIEMENS GAMESA RENEWABLE ENERGY SERVICE GMBH
Reel/Frame 064834/0873 →
CHANGE OF NAME Recorded Oct 20, 2022
From: SENVION DEUTSCHLAND GMBH
To: SIEMENS GAMESA RENEWABLE ENERGY SERVICE GMBH
Reel/Frame 064371/0624 →
CHANGE OF NAME Recorded Sep 16, 2022
From: SENVION GMBH
To: SENVION DEUTSCHLAND GMBH
Reel/Frame 061462/0567 →
CHANGE OF NAME Recorded Aug 3, 2022
From: SENVION AG
To: SENVION GMBH
Reel/Frame 061068/0001 →
CHANGE OF NAME Recorded Jul 18, 2022
From: SENVION SE
To: SENVION AG
Reel/Frame 060692/0328 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 4, 2015
From: BROKES, MICHAEL; EDELMANN, ULF; EUSTERBARKEY, CARSTEN; LEHMANN, SVEN
To: SENVION SE
Reel/Frame 036247/0097 →