Claims
- 1. A turbine shaft of a steam turbine, comprising:
- an outer surface;
- a plurality of cylindrical shaft segments disposed axially one behind the other along a principal axis;
- said shaft segments each having a connecting opening along a common connecting axis for receiving a bracing element guided through said connecting openings and defining an axial gap between the bracing element and at least one of said shaft segments; and
- two axially spaced-apart radial passages connected to said axial gap in term of flow and each opening at said outer surface therein allowing the flow of a working medium to act as a cooling medium.
- 2. The turbine shaft according to claim 1, wherein the bracing element is a central tie for which said principal axis and said connecting axis coincide.
- 3. The turbine shaft according to claim 1, wherein said connecting openings receive at least three bracing elements with respective connecting axes aligned parallel to said principal axis.
- 4. The turbine shaft according to claim 1, wherein at least one of said radial passages is disposed between an adjoining two of said shaft segments.
- 5. The turbine shaft according to claim 1, including an axial central region for inflow and flow division of a working fluid, said central region disposed axially between said radial passages.
- 6. The turbine shaft according to claim 5, wherein said central region has a cavity formed therein through which cooling fluid can flow.
- 7. The turbine shaft according to claim 6, wherein said cavity is connected to said axial gap in terms of flow.
- 8. A steam turbine, comprising:
- a turbine shaft extended along a principal axis and having an outer surface and a plurality of cylindrical shaft segments disposed axially one behind the other along said principal axis, said shaft segments each having a connecting opening formed therein along a common connecting axis;
- a bracing element guided through said connecting openings and defining an axial gap between said bracing element and at least one of said shaft segments; and
- two axially spaced-apart radial passages connected to said axial gap in term of flow and each opening at said outer surface therein allowing the flow of a working medium to act as a cooling medium.
- 9. A double-flow steam turbine, in particular of a double-flow medium-pressure turbine-section, comprising:
- a turbine shaft extended along a principal axis and having an outer surface and a plurality of cylindrical shaft segments disposed axially one behind the other along said principal axis, said shaft segments each having a connecting opening formed therein along a common connecting axis;
- a bracing element guided through said connecting openings and defining an axial gap between said bracing element and at least one of said shaft segments; and
- two axially spaced-apart radial passages connected to said axial gap in term of flow and each opening at said outer surface therein allowing the flow of a working medium to act as a cooling medium.
- 10. In a method for cooling a turbine shaft of a steam turbine having a plurality of cylindrical shaft segments disposed axially one behind the other along a principal axis and braced together by a bracing element, the improvement which comprises:
- introducing cooling steam into an axial gap between the bracing element and the shaft segment through a first radial passage and guiding the cooling steam out of the turbine shaft through a second radial passage.
- 11. The method according to claim 10, which comprises supplying the axial gap with a volume flow of steam equal to 1.0% to 4.0% of a total volume flow of live steam.
- 12. The method according to claim 10, which comprises supplying the axial gap with a volume flow of steam equal to 1.5% to 3% of a total volume flow of live steam.
Priority Claims (1)
Number |
Date |
Country |
Kind |
196 24 805 |
Jun 1996 |
DEX |
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CROSS-REFERENCE TO RELATED APPLICATION
This application is a continuation of copending International application No. PCT/DE97/00953, filed on May 12, 1997, which designated the United States.
US Referenced Citations (5)
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Non-Patent Literature Citations (1)
Entry |
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Continuations (1)
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Number |
Date |
Country |
Parent |
PCTDE9700953 |
May 1997 |
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