IP Library › Granted Patent US 11,043,867
Granted Patent B2
US 11,043,867 · App. 16/280,166 · Granted Jun 22, 2021

Cooling of the end-windings of an electric generator

Inventor: Peter Hessellund Soerensen (Brædstrup, DK)
H02K3/24F03D9/25H02K7/1838F05B2260/404H02K9/06H02K21/22
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Quick Facts
Patent No.
US 11,043,867
App. No.
16/280,166
Granted
Jun 22, 2021
Kind
B2
Abstract

Provided is an electrical generator including a stator having a stator body extending axially between a first axial end and a second axial end, the stator body including a plurality of slots, the plurality of slots being circumferentially distributed around a longitudinal axis of the stator body. The stator includes a plurality of windings housed in the plurality of slots and a plurality of end-windings, each end winding having a curved shape and connecting the windings in two slots of the plurality of slots. The electrical generator further includes at least one air guide inside and/or outside the plurality of end-windings cool.

Claims (26)

1. An electrical generator comprising:

a stator having a stator body extending axially between a first axial end and a second axial end, the stator body including a plurality of slots, the plurality of slots being circumferentially distributed around a longitudinal axis of the stator body,

the stator including a plurality of windings housed in the plurality of slots and a plurality of end-windings, each end-winding having a curved shape and connecting the windings in two slots of said plurality of slots, and

at least one inner air guide located at an inside of at least one end-winding of the plurality of end-windings, the inside of the at least one end-winding being a volume between the at least one end-winding and the stator,

wherein the at least one inner air guide protrudes from the stator body of the stator along the longitudinal axis,

wherein an inner distance is provided between a distal end of the at least one inner air guide in the direction of the longitudinal axis and the respective end-winding, the inner distance allowing for an air flow between the at least one inner air guide and the respective end-winding.

2. The electrical generator as claimed in claim 1 , further comprising: at least one outer air guide provided outside the plurality of end-windings.

3. The electrical generator as claimed in claim 2 , wherein an outer distance is provided between the at least one outer air guide and the end-windings.

4. The electrical generator as claimed in claim 3 , wherein the at least one outer air guide is fixed to a rotor of the electric generator.

5. The electrical generator as claimed in claim 4 , wherein one outer air guide is provided for all the end-windings at the first axial end or at the second axial end.

6. The electrical generator as claimed in claim 3 , wherein the at least one outer air guide is fixed to the stator of the electric generator.

7. The electrical generator as claimed in claim 1 , wherein air flow provides cooling.

8. The electrical generator as claimed in claim 1 , wherein one respective inner air guide is provided for each respective end-winding of the plurality of end-windings.

9. The electrical generator as claimed in claim 1 , wherein the windings are concentrated windings, each end-winding connecting the windings in two circumferentially adjacent slots.

10. A wind turbine comprising:

an electrical generator including a stator having a stator body extending axially between a first axial end and a second axial end, the stator body including a plurality of slots, the plurality of slots being circumferentially distributed around a longitudinal axis of the stator body,

the stator including a plurality of windings housed in the plurality of slots and a plurality of end-windings, each end-winding having a curved shape and connecting the windings in two slots of said plurality of slots, and

at least one inner air guide located at an inside of at least one end-winding of the plurality of end-windings, the inside of the at least one end-winding being a volume between the at least one end-winding and the stator,

wherein the at least one inner air guide protrudes from the stator body of the stator along the longitudinal axis,

wherein an inner distance is provided between a distal end of the at least one inner air guide in the direction of the longitudinal axis and the respective end-winding, the inner distance allowing for an air flow between the at least one inner air guide and the respective end-winding.

11. A generator comprising:

a stator having a stator body extending axially between a first axial end and a second axial end, the stator body including a plurality of slots, the plurality of slots being circumferentially distributed around a longitudinal axis of the stator body,

the stator including a plurality of windings housed in the plurality of slots and a plurality of end-windings, each end-winding of the plurality of end-windings having a curved shape and connecting the windings in two slots of said plurality of slots, wherein the plurality of windings are concentrated windings and each end-winding of the plurality of end-windings connects respective windings in two circumferentially adjacent slots of the plurality of slots, and

at least one inner air guide located at an inside of at least one end-winding of the plurality of end-windings, the inside of the at least one end-winding being a volume between the at least one end-winding and the stator,

wherein the at least one inner air guide protrudes from the stator body of the stator along the longitudinal axis,

wherein an inner distance is provided between a distal end of the at least one inner air guide in the direction of the longitudinal axis and the respective end-winding, the inner distance allowing for an air flow between the at least one inner air guide and the respective end-winding.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 11, 2019
From: SOERENSEN, PETER HESSELLUND
To: SIEMENS GAMESA RENEWABLE ENERGY A/S
Reel/Frame 048862/0008 →
Priority Claims (1)
EP 18160698 · Mar 8, 2018 · regional
Continuity (1)
Related Publication 20190280546A1 · Sep 12, 2019