Claims
- 1. A thermal power plant, comprising:a steam turbine including: a turbine rotor directed along a main axis; an inner housing surrounding said turbine rotor; a guide-blade structure disposed in said inner housing and surrounding said turbine rotor in circumferential direction, said guide-blade structure having guide blades; and at least one of said guide blades having a cavity formed therein, having an outer surface and having at least one orifice conduit branching off from said cavity and opening to said outer surface; a fluid conduit connected to said cavity for feeding cooling fluid; a condensate vessel; and a closeable transfer conduit connected between said condensate vessel and said fluid conduit.
- 2. The thermal power plant according to claim 1, including an outer-ring chamber of said steam turbine, said guide blades connected to said outer-ring chamber, and said fluid conduit opening into said outer-ring chamber.
- 3. The thermal power plant according to claim 2, wherein said outer-ring chamber has a geodetically lowest region, and a drainage conduit branches off from said geodetically lowest region.
- 4. The thermal power plant according to claim 2, wherein said outer-ring chamber has a geodetically high region, and said fluid conduit opens into said geodetically high region.
- 5. The thermal power plant according to claim 3, wherein said outer-ring chamber has a geodetically high region, and said fluid conduit opens into said geodetically high region.
- 6. The thermal power plant according to claim 2, including an inner-ring chamber, said guide blades connected to said inner-ring chamber.
- 7. The thermal power plant according to claim 3, including an inner-ring chamber, said guide blades connected to said inner-ring chamber.
- 8. The thermal power plant according to claim 4, including an inner-ring chamber, said guide blades connected to said inner-ring chamber.
- 9. The thermal power plant according to claim 5, including an inner-ring chamber, said guide blades connected to said inner-ring chamber.
- 10. The thermal power plant according to claim 1, wherein said guide blades of said guide-blade structure are bent.
- 11. The thermal power plant according to claim 1, wherein said guide blades of said guide-blade structure are inclined in axial direction and curved in circumferential direction.
- 12. The thermal power plant according to claim 1, including a first plant component carrying hot steam and a second plant component carrying water, condensate, or wet steam, said steam turbine connected to at least one of said first plant component in a power mode and said second plant component in a ventilation mode.
- 13. The thermal power plant according to claim 1, wherein said cavity extends entirely through said guide blade along a center line directed from said inner housing to said turbine rotor.
- 14. The thermal power plant according to claim 1, wherein said guide blade has a suction side and an onflow edge, and at least one of said orifice conduits opens on said suction side in the vicinity of said onflow edge.
- 15. The thermal power plant according to claim 1, wherein at least one of said orifice conduits is an approximately circular or elliptic hole in said outer surface of said guide blade.
- 16. A method for cooling a steam turbine in a ventilation mode, which comprises:providing a turbine rotor directed along a main axis; providing an inner housing surrounding the turbine rotor; providing a guide-blade structure in the inner housing surrounding the turbine rotor in circumferential direction; providing a hollow guide blade of the guide-blade structure, the hollow guide blade having an outer surface and a cavity; providing orifice conduits connecting the cavity of the hollow blade guide to the outer surface of the hollow blade guide; and feeding wet steam through the hollow guide blade, the wet steam flowing through the orifice conduits to the outer surface of the guide blade.
- 17. The method according to claim 16, which comprises providing the guide-blade structure as one of a plurality of guide-blade structures, and carrying out the feeding step by feeding the wet steam to one of the guide-blade structures disposed last in flow direction.
- 18. A method for cooling a low-pressure steam turbine in a ventilation mode, which comprises:providing a turbine rotor directed along a main axis; providing an inner housing surrounding the turbine rotor; providing a guide-blade structure in the inner housing surrounding the turbine rotor in circumferential direction; providing a hollow guide blade of the guide-blade structure, the hollow guide blade having an outer surface and a cavity; providing orifice conduits connecting the cavity of the hollow blade guide to the outer surface of the hollow blade guide; and feeding wet steam through the hollow guide blade, the wet steam flowing through the orifice conduits to the outer surface of the guide blade.
Priority Claims (1)
Number |
Date |
Country |
Kind |
196 40 298 |
Sep 1996 |
DE |
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CROSS-REFERENCE TO RELATED APPLICATION
This application is a continuation of copending International Application No. PCT/DE97/02105, filed Sep. 18, 1997, which designated the United States.
US Referenced Citations (8)
Continuations (1)
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Number |
Date |
Country |
Parent |
PCT/DE97/02105 |
Sep 1997 |
US |
Child |
09/282095 |
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US |