The present invention relates generally to electrical machines of the type having a rotor and field windings, including end windings about a rotor body, and particularly relates to flattened end windings across the width of a pole in conjunction with a cap affording cooling medium flow ventilation radially outwardly of the end windings.
In electrical machines, for example, generators, there is provided a rotor body having field windings which generally form arcs at opposite ends of the rotor body and are called end windings. The end windings typically extend generally axially from the rotor body and cross over supports or spindles in a circumferential direction adjacent opposite ends of the body for return in an axial direction into and along the rotor body. In a typical generator construction, the windings are located in slots in the rotor body and wedges secure the windings in the slots. The end windings are typically separated from one another by spacer blocks. More recent generators include a rotor body having defined pole regions with pole faces and parallel sides, together with prefabricated winding modules extending along the parallel sides with the prefabricated end windings extending between end faces of the rotor body. In both types of generator constructions, the end windings extend arcuately about the supports or spindles at opposite ends of the rotor body. A retaining or enclosure ring conventionally overlies the end windings forming essentially a cylindrical ring about the end windings.
It will be appreciated that the field windings, including the end windings, are cooled by passing a cooling medium through or along the rotor windings. Typically, grooved passages are formed in the field windings internal to the copper and channel the cooling medium so that it can be discharged radially outwardly into the gap between the rotor and stator and axially inwardly of the end retaining or enclosure rings. Thus, the end retaining or enclosure rings serve as obstructions to the discharge of the cooling medium channels through the rotor end windings.
In accordance with a preferred aspect of the present invention, there is provided an end winding arrangement for the field windings of the rotor of an electrical machine where the end windings are generally flattened across the width of the pole. To facilitate cooling of the end windings, a cap overlies the generally flattened surfaces of each end winding and is provided with at least one passage for flowing cooling gas from between the spaced end windings through the cap to the gap between the rotor and the stator of the electrical machine.
More particularly, each end cap is provided with at least one, and preferably a plurality of axially extending passageways along the arcuate outer surface in communication with one or more apertures opening through the inside flat face of the cap into the gaps between the turns of the end windings. The axial passageways open axially beyond the end enclosure ring and the cooling medium thus flows radially outwardly from the end windings through the apertures and axial passages to exit in the gap between the rotor body and stator. Internal cooling grooves typically used in the coils of the end windings for cooling purposes are eliminated. Further, more uniform end winding temperatures are obtained by introducing these shorter ventilation paths. Closer spacing of the rotor end winding coils improves convective heat transfer and enables construction of electrical machines with a shorter footprint. Moreover, the cooling medium is transferred from the end windings without penetrating or forming holes through the retaining or enclosure ring. It will also be appreciated that the flattened end winding coils and the end caps can be employed on the CFRE (carbon fiber rotor enclosure) type generator, as well as a conventional generator having windings disposed in slots in the rotor body with wedges maintaining the windings within the body.
In a preferred embodiment according to the present invention, there is provided an end winding arrangement for the field windings of a rotor in an electrical machine, comprising a plurality of end windings extending from a pole of the rotor and spaced from one another, the end windings forming generally flattened surfaces across the width of the pole, a cap overlying the generally flattened surfaces and having at least one passage for flowing cooling gas from between the spaced end windings through the cap to a gap between the rotor and a stationary portion of the electrical machine.
As illustrated in drawing
Per
In accordance with a further aspect of the present invention, an end cap 50 overlies the flattened portions 47 of the end windings. As illustrated in
To ventilate the end windings, the cooling medium flows generally outwardly into the air gap between the rotor body and the stator without passing back through the rotor body and without using the end windings per se as conduits for the cooling medium. To accomplish this, each end cap 50 includes a plurality of apertures 58 (
As illustrated in
As illustrated in
While the invention has been described in connection with what is presently considered to be the most practical and preferred embodiment, it is to be understood that the invention is not to be limited to the disclosed embodiment, but on the contrary, is intended to cover various modifications and equivalent arrangements included within the spirit and scope of the appended claims.
Number | Name | Date | Kind |
---|---|---|---|
2796540 | Barlow | Jun 1957 | A |
4363982 | Kaminski | Dec 1982 | A |
4543503 | Kaminski et al. | Sep 1985 | A |
4547688 | Hammer et al. | Oct 1985 | A |
4667125 | Kaminski et al. | May 1987 | A |
4709177 | Kaminski | Nov 1987 | A |
4814655 | Kaminski | Mar 1989 | A |
5065064 | Kaminski | Nov 1991 | A |
5281877 | Kazmierczak et al. | Jan 1994 | A |
5358432 | Shih et al. | Oct 1994 | A |
5666016 | Cooper | Sep 1997 | A |
5886434 | Nygard | Mar 1999 | A |
5929550 | Kaminski et al. | Jul 1999 | A |
5986380 | Kaminski et al. | Nov 1999 | A |
6081178 | Wang et al. | Jun 2000 | A |
6181228 | Laskaris et al. | Jan 2001 | B1 |
6194807 | Kaminski et al. | Feb 2001 | B1 |
6198371 | Laskaris et al. | Mar 2001 | B1 |
6201462 | Laskaris et al. | Mar 2001 | B1 |
6239527 | Kaminski et al. | May 2001 | B1 |
6246308 | Laskaris et al. | Jun 2001 | B1 |
6291919 | Ganti et al. | Sep 2001 | B1 |
6313561 | Nygard et al. | Nov 2001 | B1 |
6339268 | Kaminski et al. | Jan 2002 | B1 |
6346753 | Jarczynski et al. | Feb 2002 | B1 |
6369482 | Rink, Jr. et al. | Apr 2002 | B1 |
6415613 | Ackermann et al. | Jul 2002 | B1 |
6437476 | Nygard et al. | Aug 2002 | B1 |
6438969 | Laskaris et al. | Aug 2002 | B1 |
6442949 | Laskaris et al. | Sep 2002 | B1 |
6448686 | Dawson et al. | Sep 2002 | B1 |
6495942 | Kaminski et al. | Dec 2002 | B1 |