Claims
- 1. An improved combined cycle power plant and overspeed protection system of the type having a reheat stem turbine including a high pressure steam turbine section with at least one control valve, and a lower pressure steam turbine section; a gas turbine including a turbine section, a combustor, a fuel valve supplying said combustor, and an air compressor with a discharge end leading to said combustor; a load driven by said reheat steam turbine and said gas turbine; said reheat steam turbine, said gas turbine and said load all having rotating members; a heat recovery steam generator heated by said gas turbine, including a high pressure steam generating section supplying steam to said high pressure steam turbine section through said control valve, and a steam reheater section receiving steam exhausted from said high pressure steam turbine section; the improvement comprising:
- a valveless steam conduit connected between the outlet of said steam reheater section and the inlet of said lower pressure steam turbine section,
- a plurality of solid couplings serving to solidly couple said rotating members together as a single rotor, said rotor having a single thrust bearing, and
- control means for sensing a potential overspeed condition operatively connected to said control valve and said fuel valve to prevent overspeed,
- whereby the steam in said steam reheater and in said valveless steam conduit may freely expand through said lower pressure steam turbine and potential overspeed of said rotor is resisted by the combined inertia of said coupled rotating members and by the braking torque of said air compressor.
- 2. The improvement according to claim 1, wherein said control means is responsive to power/load imbalance exceeding a preselected value.
- 3. A combined cycle gas and steam turbine power plant overspeed protection system comprising:
- a gas turbine with its associated combustor and air compressor, a high pressure steam turbine, at least one lower pressure steam turbine and an electrical generator all having rotating members solidly coupled together via a plurality of solid couplings so as to rotate together as a single rotor unit at all times including sudden loss of load occurrences, said rotor having a single thrust bearing;
- a steam reheater disposed to transfer heat from the gas turbine exhaust to steam exhausted from said high pressure steam turbine before it is input to said at least one lower pressure steam turbine;
- a valveless steam conduit connecting an output of the steam reheater with an input of said lower pressure steam turbine; and
- an overspeed control operatively connected to a sensor which detects a loss of load occurrence and, in response to said sensor, said overspeed control directly acts simultaneously to activate a steam valve to reduce steam input to said high pressure steam turbine and to activate a fuel valve to reduce fuel input to said gas turbine combustor while said residual reheater steam continues to expand freely through said at least one lower pressure steam turbine.
Parent Case Info
This is a continuation of application Ser. No. 07/766,282, filed Sep. 27, 1991, now abandoned.
This is a continuation of application Ser. No. 07/593,389, filed Oct. 2, 1990, (U.S. Pat. No. 5,099,643), which is a continuation of Ser. No. 07/302,169, filed Jan. 26, 1989, now abandoned.
US Referenced Citations (16)
Foreign Referenced Citations (4)
Number |
Date |
Country |
62-38525 |
Aug 1987 |
JPX |
1050063A |
Dec 1966 |
GBX |
2017219A |
Oct 1979 |
GBX |
2099516A |
Dec 1982 |
GBX |
Non-Patent Literature Citations (3)
Entry |
Patent Abstracts of Japan, vol. 7, No. 169 (M-231) (1314) 26 Jul. 1983 & JP-A-58 74809, May 6, 1983. |
Shepherd, D. G. Principles of Turbomachinery McMillan Company, New York, 1956, p. 50. |
Patent Abstracts of Japan, vol. 10, No. 261 (M-514) (2317) 5 Sep. 1986 & JP-A-61 87902, May 6, 1986. |
Continuations (3)
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Number |
Date |
Country |
Parent |
766282 |
Sep 1991 |
|
Parent |
593389 |
Oct 1990 |
|
Parent |
302169 |
Jan 1989 |
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