Apparatus for Changing the Angle of Inclination in Wind Turbines
20170096982 ยท 2017-04-06
Inventors
Cpc classification
F03D1/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02E10/728
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F03D7/0204
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2240/2213
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03D13/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03D7/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03D9/25
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2270/321
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02E10/72
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
F03D7/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03D13/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A device for changing the angle of inclination in wind turbines. According to one aspect the device is formed by a connection part having a peripheral rolling ring on which three rolling supports are arranged. The rolling supports are attached to a bench that supports the rotor of the wind turbine. Each of a plurality of plates on the bench supports at least one cylinder that operates on a piston that passes through the plate. An end of the piston is coupled to a respective one of the rolling supports in an articulated manner. The cylinders are configured to operate on the pistons to cause the bench to tilt with respect to the connection part.
Claims
1. A wind turbine comprising: a tower, a generator comprising a drive shaft, a rotor operatively coupled to the drive shaft, the rotor having a rotational axis a bench on which is supported the generator and rotor, an at least semi-circular support part disposed between the tower and the bench, a plurality of rolling supports comprising rolling elements, the rolling supports interposed between the bench and the support part to facilitate a rotation of the bench in relation to the support part, a plurality of plates that are either attached to or form a part of the bench, each of the plates comprising a plurality of through holes extending between a top and bottom surface of the plate, a plurality of cylinders supported on the top surface of each plate, the plurality of cylinders being configured to respectively operate on a plurality of pistons that respectively extend through the plurality of through holes, each of the plurality of pistons having a top end operatively coupled to a respective one of the plurality of cylinders and a bottom end that is coupled to a respective one of the rolling supports in an articulating manner, the plurality of pistons being extendable and/or retractable by operation of the respective plurality of cylinders in order to effectuate a titling of the bench with respect to the support part.
2. The wind turbine according to claim 1, wherein the plurality of plates comprises first, second third plates equidistantly-spaced about the bench, the first plate being situated below the rotational axis of the rotor.
3. The wind turbine according to claim 2, wherein when the plurality pistons extending through the through holes of the first plate are extended and/or retracted, each of the plurality of pistons tilt progressively in the same proportion to a tilt angle of the rotational axis of the rotor with respect to the horizontal plane of the ground on which the tower is supported.
4. The wind turbine according to claim 3, wherein the degree by which the tilt angle of the rotational axis of the rotor is capable of changing with respect to the horizontal plane of the ground on which the tower is supported is no more than 15.
5. The wind turbine according to claim 1, wherein in a first state the rotational axis of the rotor is horizontal, a length of each of the plurality of pistons extending through the through holes of the first plate is configured to change by less by no more than one meter when the rotational axis of the rotor is tilted away from the first state.
6. The wind turbine according to claim 1, further comprising at least one anemometer attached to the wind turbine, the operation of the plurality of cylinders configured to be controlled in part by a vertical wind speed component measured by the at least one anemometer.
7. The wind turbine according to claim 6 wherein the wind turbine is a downwind wind turbine.
8. The wind turbine according to claim 7, wherein the anemometer is located at least 10 meters from the rotor.
9. The wind turbine according to claim 1, wherein at least some of the plurality of pistons are arranged parallel with one another.
10. The wind turbine according to claim 1, wherein at least one of the plurality of plates comprises one or more guide holes that each extend between the top and bottom surface of the plate, a guide rod having a top end and a bottom end extends through each of the one or more guide holes, the top end of the guide rod residing above the top surface of the plate and the bottom end of the guide rod residing below the bottom surface of the plate, the bottom end of the guide rod being coupled to a respective rolling support in an articulated manner, the top end of the guide rod not being connected to a cylinder.
11. The wind turbine according to claim 2, wherein the bench has a rectangular shape that possesses first, second and third apexes, the first, second and third plates being located respectively at the first, second and third apexes.
12. A wind turbine comprising: a tower, a generator comprising a drive shaft, a rotor operatively coupled to the drive shaft, the rotor having a rotational axis a bench on which is supported the generator and rotor, an at least semi-circular support part disposed between the tower and the bench, a plurality of rolling supports comprising rolling elements, the rolling supports interposed between the bench and the support part to facilitate a rotation of the bench in relation to the support part, a plate that is either attached to or forms a part of the bench, the plate comprising a plurality of through holes extending between a top and bottom surface of the plate, a plurality of cylinders supported on the top surface of the plate, the plurality of cylinders being configured to respectively operate on a plurality of pistons that respectively extend through the plurality of through holes, each of the plurality of pistons having a top end operatively coupled to a respective one of the plurality of cylinders and a bottom end that is coupled to a respective one of the rolling supports in an articulating manner, the plurality of pistons being extendable and/or retractable by operation of the respective plurality of cylinders in order to effectuate a titling of the bench with respect to the support part.
13. The wind turbine according to claim 13, wherein the plate is situated below the rotational axis of the rotor.
14. The wind turbine according to claim 13, wherein when the plurality pistons extending through the through holes of the plate are extended and/or retracted, each of the plurality of pistons tilt progressively in the same proportion to a tilt angle of the rotational axis of the rotor with respect to the horizontal plane of the ground on which the tower is supported.
15. The wind turbine according to claim 14, wherein the degree by which the tilt angle of the rotational axis of the rotor is capable of changing with respect to the horizontal plane of the ground on which the tower is supported is no more 15.
16. The wind turbine according to claim 12, wherein in a first state the rotational axis of the rotor is horizontal, a length of each of the plurality of pistons extending through the through holes of the plate being configured to change by no more than one meter when the rotational axis of the rotor is tilted away from the first state.
17. The wind turbine according to claim 12, further comprising at least one anemometer attached to the wind turbine, the operation of the plurality of cylinders configured to be controlled in part by a vertical wind speed component measured by the at least one anemometer.
18. The wind turbine according to claim 17, wherein the anemometer is located at least 10 meters from the rotor.
19. The wind turbine according to claim 12, wherein at least some of the plurality of pistons are arranged parallel with one another.
20. The wind turbine according to claim 12, wherein the plate comprises one or more guide holes that each extend between the top and bottom surface of the plate, a guide rod having a top end and a bottom end extends through each of the one or more guide holes, the top end of the guide rod residing above the top surface of the plate and the bottom end of the guide rod residing below the bottom surface of the plate, the bottom end of the guide rod being coupled to a respective rolling support in an articulated manner, the top end of the guide rod not being connected to a cylinder.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Below is a very brief description of a series of drawings useful for better understanding the disclosure herein. The drawings serve as mere examples.
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DETAILED DESCRIPTION
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[0029] As depicted in
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[0035] In some situations the vertical wind components are sufficiently constant so that the tilt angle variation is always the same. In this case, as shown in
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