Claims
- 1. A combined cycle power plant comprising:
- a gas turbine system configured to generate exhaust, comprising,
- turbine blades, and
- a combustor;
- a waste heat collector boiler configured to collect waste heat of said exhaust and to generate steam;
- a steam cycle system including a steam turbine driven by said steam of said waste heat collector boiler, configured to generate a steam and water mixture; and
- a gas turbine cooling system configured to feed in series at least part of said steam and water mixture to a cooling duct formed in said combustor after said steam and water mixture passes through a cooling duct formed in said turbine blades.
- 2. A combined cycle power plant comprising:
- gas turbine system configured to generate exhaust;
- a waste heat collector boiler configured to collect waste heat of said exhaust and to generate steam;
- a steam cycle system configured to generate a steam and water mixture, comprising:
- a steam turbine driven by said steam of said waste heat collector boiler, and
- a steam drum; and
- a gas turbine cooling system configured to feed at least part of said steam and water mixture to a plurality of cooling ducts formed in said gas turbine system,
- wherein said steam and water mixture is returned to said steam drum of said steam cycle system after passing through said plural cooling duct.
- 3. A combined cycle power plant comprising:
- gas turbine system configured to generate exhaust;
- a waste heat collector boiler configured to collect waste heat of said exhaust and to generate steam;
- a steam cycle system configured to generate a steam and water mixture, comprising,
- a steam turbine driven by said steam of said waste heat collector boiler,
- a high pressure drum, and
- a condensor; and
- a gas turbine cooling system configured to feed at least part of said steam and water mixture to a plurality of cooling ducts formed in said gas turbine system,
- wherein said steam and water mixture is fed from at least one of said high pressure drum and said condenser, and said steam and water mixture is returned to at least one of said waste heat collector, said steam drum, and said condensor of said steam cycle system.
- 4. A combined cycle power plant comprising:
- a gas turbine system configured to generate exhaust;
- a waste heat collector boiler configured to collect waste heat of said exhaust and to generate steam;
- a steam cycle system including a steam turbine driven by said steam of said waste heat collector boiler, configured to generate a steam and water mixture;
- a gas turbine cooling system configured to feed at least part of said steam and water mixture to a plurality of cooling ducts formed in said gas turbine system; and
- a dust removing apparatus arranged along said plurality of cooling ducts, configured to remove dust from said steam and water mixture and to feed said steam and water mixture from said steam cycle system to said gas turbine cooling system.
- 5. A combined cycle power plant according to claim 4, wherein said dust removing apparatus includes a plurality of dust removing units arranged in parallel and operated selectively such that one of said dust removing units cleanses said steam and water mixture by trapping dust contained in said steam and water mixture, while a second dust removing unit is regenerated through the removal of the trapped dust.
- 6. A combined cycle power plant according to claim 4, wherein:
- said dust removing apparatus is regenerated by regenerating gas flowing in a direction opposite to that of said steam and water mixture;
- said gas turbine system includes an exhaust gas duct; and
- said regenerating gas is discharged into said exhaust gas duct of said gas turbine after passing through said dust removing apparatus.
- 7. A combined cycle power plant according to claim 4, wherein said regenerating gas for regenerating said dust removing apparatus is compressed air coming from said gas turbine system.
- 8. A combined cycle power plant according to claim 4, wherein piping from said dust removing apparatus to said gas turbine cooling system is made of an anti-corrosive alloy.
- 9. A combined cycle power plant according to claim 4, wherein said dust removing apparatus includes a plurality of meshes having a size smaller than the smallest cross section of the respective cooling ducts of said gas turbine cooling system.
- 10. A combined cycle power plant according to claim 4, further comprising:
- a differential pressure monitor configured to monitor a differential pressure between an upstream flow of said heated steam and water mixture and a down stream flow of regenerating gas; and
- a valve mechanism configured to switch the flow of said steam and water mixture to alternative dust removing apparatus when the differential pressure exceeds a predetermined level.
- 11. A combined cycle power plant according to claim 4, wherein said steam fed from said steam cycle system to said gas turbine cooling system by way of said dust removing apparatus is superheated steam superheated by more than 10.degree. C.
- 12. A combined cycle power plant according to claim 4, wherein said dust removing apparatus includes dust removing units arranged in correspondence to the respective cooling ducts of said gas turbine system.
Priority Claims (2)
Number |
Date |
Country |
Kind |
7-244750 |
Sep 1995 |
JPX |
|
7-244751 |
Sep 1995 |
JPX |
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Parent Case Info
This application is a Continuation of application Ser. No. 08/716,868, filed on Sep. 20, 1996, now U.S. Pat. No. 5,778,657.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
4571935 |
Rice |
Feb 1986 |
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Continuations (1)
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Number |
Date |
Country |
Parent |
716868 |
Sep 1996 |
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