Generator module and wind turbine having the same
11359605 ยท 2022-06-14
Assignee
Inventors
Cpc classification
F03D15/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2220/706
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2260/4021
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2260/403
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03D9/25
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2240/40
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
F03D9/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03D9/25
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H02P9/04
ELECTRICITY
F03D80/80
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A generator module and a wind turbine having the same are provided according to the present application. The generator module includes a generator module housing, a generator unit and a generator rotating shaft. The generator unit is arranged in the generator module housing and includes a rotor and a stator. One end of the generator rotating shaft is connected to the rotor, and the generator rotating shaft is provided with a belt pulley. The generator module according to the present application may be flexibly arranged above a nacelle or inside the nacelle according to requirements, and may be separately replaced and maintained as an independent subsystem, which reduces the maintenance cost.
Claims
1. A wind turbine, comprising: a tower; a nacelle arranged at a top of the tower; a hub, on which a blade is mounted; a main shaft, one end of the main shaft being connected to the hub, and another end of the main shaft extending to an inside of the nacelle; wherein the wind turbine comprises a generator module, wherein the generator module comprises: a generator module housing: a generator unit arranged in the generator module housing, wherein the generator unit comprises a rotor and a stator, the stator is fixed in the generator module housing, and the rotor is rotatable fitted with the stator; and a generator rotating shaft, wherein one end of the generator rotating shaft is connected to the rotor, the generator rotating shaft is provided with a belt pulley, and the belt pulley is configured to be connected to the main shaft by a transmission belt, wherein the generator module is mounted at a top of the nacelle, and the top of the nacelle is Provided with an opening, to allow the transmission belt to pass through the opening and to be connected to the belt pulley, the main shaft is provided with a driving belt pulley, and the driving belt pulley is directly connected to the belt pulley via the transmission belt, to drive the generator rotating shaft to rotate.
2. The wind turbine according to claim 1, wherein a plurality of generator modules are mounted inside or outside the nacelle, and correspondingly, a plurality of driving belt pulleys are provided at the main shaft.
3. The wind turbine according to claim 1, wherein the main shaft and the generator rotating shaft are arranged in parallel in an up-and-down direction.
4. The wind turbine according to claim 1, wherein the generator module is mounted at a top of the nacelle, and an upper surface of the nacelle is provided with a mounting block configured for mounting the generator module.
5. The wind turbine according to claim 1, wherein the generator rotating shaft is provided with a plurality of belt pulleys spaced apart from one another in an axial direction.
6. The wind turbine according to claim 5, wherein the plurality of belt pulleys are in contact with one transmission belt, or each of the belt pulleys is in contact with one corresponding transmission belt, respectively.
7. The wind turbine according to claim 1, wherein the main shaft is provided with a plurality of driving belt pulleys, and the plurality of driving belt pulleys are in contact with one transmission belt, or each of the driving belt pulleys is in contact with one corresponding transmission belt, respectively.
8. The wind turbine according to claim 1, wherein the transmission belt is a toothed belt.
9. The wind turbine according to claim 1, wherein a diameter of the driving belt pulley is greater than a diameter of the belt pulley.
10. The wind turbine according to claim 1, further comprising a transmission belt tensioning mechanism.
11. The wind turbine according to claim 10, wherein the transmission belt tensioning mechanism is a mechanical tensioning mechanism, and the mechanical tensioning mechanism comprises: a roller in contact with the transmission belt; two bearing support seats configured to support a rotating shaft of the roller at two sides of the roller respectively; a bracket configured to connect the two bearing support seats; a driving member configured to apply a force to the bracket, to allow the two bearing support seats to move in a direction for pressing the transmission belt or in an opposite direction; and elastic members configured to apply elastic forces to the two bearing support seats in a direction opposite to the moving direction of the two bearing support seats.
12. The wind turbine according to claim 10, wherein the transmission belt tensioning mechanism is a hydraulic tensioning mechanism, and the hydraulic tensioning mechanism comprises a hydraulic cylinder configured to move the generator module in a height direction of the nacelle.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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REFERENCE NUMERALS
(11) TABLE-US-00001 1 blade, 2 hub, 3 main shaft, 33 driving belt pulley, 4 rotating shaft, 5a, 5b generator, 6 tower, 7a, 7b, 7c nacelle base, 8 nacelle, 81 nacelle top mounting platform, 82 mounting block, 9 gear box, 10 coupling, 11 generator module, 110 generator module housing, 111 generator unit, 112 generator rotating shaft, 113 belt pulley, 13 transmission belt, 14 transmission belt tensioning mechanism, 141 roller, 142 bearing support seat, 143 bracket, 144 adjusting bolt, 145 elastic member, 151 hydraulic cylinder, 152 hydraulic gauge.
DETAILED DESCRIPTION
(12) A wind turbine according to an exemplary embodiment of the present application is described hereinafter in conjunction with drawings.
(13) As shown in
(14) The wind turbine according to the exemplary embodiment of the present application includes a generator module 11, and the generator module 11 is mounted inside or outside the nacelle 8 (
(15) The main shaft 3 is provided with a driving belt pulley 33, and the driving belt pulley 33 is directly connected to the belt pulley 113 via a transmission belt 13, to drive the generator rotating shaft 112 to rotate. Thus, a rotational torque of the main shaft 3 is transmitted to the generator rotating shaft 112 through the transmission belt 13, to drive the generator rotating shaft 112 to rotate, thereby realizing power generation.
(16) The generator module 11 is integrally designed, which can be separately hoisted, mounted, replaced and maintained, thereby reducing installation and maintenance costs of the wind turbine.
(17) The generator unit 111 may be of an outer-rotor and inner-stator form, may also be of an inner-rotor and outer-stator form, and preferably is a permanent magnet direct-drive motor of the inner-rotor and outer-stator form.
(18) Preferably, a diameter of the driving belt pulley 33 mounted on the main shaft 3 is larger than a diameter of the belt pulley 113 on the generator rotating shaft 112, so as to achieve speed increase to a certain degree, thereby reducing a size and a weight of a generator.
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(20) Preferably, as shown in
(21) The transmission belt 13 is preferably a toothed belt. If the belt pulley is too wide, the transmission belt and the belt pulley may be subjected to uneven forces, which may affect an efficiency of the transmission belt. Therefore, in order to ensure that the transmission belt is subjected to uniform forces, and ensure a maximum efficiency of the transmission belt, the transmission belt according to the present application may be driven by multiple belt pulleys. As shown in
(22) The embodiment in which one generator module is mounted inside or outside the nacelle is described hereinabove. However, the situation is not limited to this, and multiple generator modules may be mounted. In this case, multiple driving belt pulleys 33 are provided on the main shaft 3, and correspondingly, multiple generator modules 11 are mounted inside or outside the nacelle 8. For example, as shown in
(23) As shown in
(24) As shown in
(25) The transmission belt tensioning mechanism may be a hydraulic tensioning mechanism or a mechanical tensioning mechanism. The mechanical tensioning mechanism employs elastic pretension and has higher reliability, and the hydraulic tensioning mechanism has higher sensitivity and flexibility.
(26) In a case that the hydraulic tensioning mechanism is employed, as shown in
(27) In a case that the mechanical tensioning mechanism is employed, as shown in
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(29) Specific forms of the first fixed bracket 146 and the second fixed bracket 147 are not limited, as long as the first fixed bracket 146 and the second fixed bracket 147 are fixed with respect to the nacelle 8. The first fixed bracket 146 and the second fixed bracket 147 may be fixed to the nacelle 8 or the generator module housing 110. Moreover, the first fixed bracket 146 and the second fixed bracket 147 may be integrally formed.
(30) In addition, the driving member is not limited to the adjusting bolt, and may be replaced with a rod-shaped member which is integrally formed with the bracket 143 or mounted on the bracket 143. In this case, the second fixed bracket 147 may be provided with a mechanism configured to allow the rod-shaped member to reciprocate by means of gear-rack or a hydraulic cylinder.
(31) The generator module according to the present application has been described hereinabove by taking a situation that the generator module is applied to a wind turbine as an example, however, the generator module may also be applied to other fields in addition to the field of wind turbines.
(32) The exemplary embodiments of the present application have been described in detail hereinabove. It should be understood by those skilled in the art that, various modifications and variations may be made according to the embodiments of the present application without departing from the spirit and scope of the application. However, it should be understood that, to those skilled in the art, such modifications and variations are also deemed to fall into the scope of the present application defined by the claims.