Wind turbine, method for mounting a wind turbine and method for adjusting an air gap between a rotor and a stator of a generator of a wind turbine
View Patent ↗A wind turbine including a bedplate, a main shaft and a direct drive generator is disclosed. The main shaft pivots relative to the bedplate by a first and second bearing. The direct drive generator includes a rotor connected to the main shaft and a stator containing a hollow part like housing substantially arranged around the rotor and containing a first endplate, a second endplate and a casing element connecting the first and the second endplate to each other. The second endplate of the stator is at least indirectly attached to the bedplate.
1. Wind turbine comprising:
a bedplate;
a main shaft pivoted relatively to the bedplate by a first and a second bearing; and
a direct drive generator having:
a rotor connected to the main shaft, and
a stator containing a hollow part like housing substantially arranged around the rotor and containing a first endplate, a second endplate and a casing element connecting the first and the second endplate to each other,
wherein
the first endplate of the stator is supported on the rotor or the main shaft by a third bearing and
the second endplate of the stator is at least indirectly attached to the bedplate,
wherein the second endplate is substantially perpendicularly arranged relatively to a centre axis of the main shaft and/or wherein the second endplate is at least partially flexible in the directions of the centre axis of the main shaft.
2. The wind turbine according to claim 1 , wherein the second endplate is arranged substantially close to the first or the second bearing.
3. The wind turbine according to claim 1 , wherein the hollow part like housing of the stator is a hollow cylinder like housing, the first endplate is a ring like endplate, the second endplate is a ring like endplate and the casing element is a cylinder barrel like element.
4. The wind turbine according to claim 1 , wherein the main shaft is supported via the first and the second bearing in a bearing housing arranged on the bedplate.
5. The wind turbine according to claim 4 , wherein the second endplate of the stator is at least indirectly attached to the bearing housing.
6. The wind turbine according to claim 1 , wherein the main shaft carries the rotor.
7. The wind turbine according to claim 1 , wherein the main shaft comprises a flange, the rotor comprises a flange and wherein the flange of the main shaft and the flange of the rotor are attached to each other.
8. The wind turbine according to claim 1 , wherein the rotor is arranged around the main shaft.
9. The wind turbine according to claim 8 , wherein the main shaft is supported with the first and the second bearing on a stationary shaft which is at least indirectly arranged on the bedplate.
10. The wind turbine according to claim 9 , wherein the stationary shaft is attached to a retaining arm arranged on the bedplate.
11. The wind turbine according to claim 1 , wherein the rotor comprises a projection carrying the third bearing.
12. The wind turbine according to claim 11 , wherein the stator comprises an arrest and/or adjustment element for arresting the rotor and the stator relatively to each other and/or for adjusting the air gap between the rotor and the stator.
13. The wind turbine according to claim 12 , wherein the arrest and/or adjustment element is arranged on a flange of the second endplate.
14. The wind turbine according to claim 12 , wherein the arrest and/or adjustment element is radially adjustable.
15. The wind turbine according to claim 12 , wherein the arrest and/or adjustment element is adjustable towards a flange of the rotor which is connected to a flange of the main shaft.