GB870589A - Improvements in and relating to gas turbine plants - Google Patents

Improvements in and relating to gas turbine plants

Info

Publication number
GB870589A
GB870589A GB2894456A GB2894456A GB870589A GB 870589 A GB870589 A GB 870589A GB 2894456 A GB2894456 A GB 2894456A GB 2894456 A GB2894456 A GB 2894456A GB 870589 A GB870589 A GB 870589A
Authority
GB
United Kingdom
Prior art keywords
turbine
compressor
steam
driving
gas
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired
Application number
GB2894456A
Inventor
Bengt Erik Gustaf Forsling
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Associated Electrical Industries Ltd
Original Assignee
Associated Electrical Industries Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority to DENDAT1072013D priority Critical patent/DE1072013B/en
Application filed by Associated Electrical Industries Ltd filed Critical Associated Electrical Industries Ltd
Priority to GB2894456A priority patent/GB870589A/en
Priority to FR1185481D priority patent/FR1185481A/en
Publication of GB870589A publication Critical patent/GB870589A/en
Expired legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F01MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
    • F01KSTEAM ENGINE PLANTS; STEAM ACCUMULATORS; ENGINE PLANTS NOT OTHERWISE PROVIDED FOR; ENGINES USING SPECIAL WORKING FLUIDS OR CYCLES
    • F01K23/00Plants characterised by more than one engine delivering power external to the plant, the engines being driven by different fluids
    • F01K23/02Plants characterised by more than one engine delivering power external to the plant, the engines being driven by different fluids the engine cycles being thermally coupled
    • F01K23/06Plants characterised by more than one engine delivering power external to the plant, the engines being driven by different fluids the engine cycles being thermally coupled combustion heat from one cycle heating the fluid in another cycle
    • F01K23/10Plants characterised by more than one engine delivering power external to the plant, the engines being driven by different fluids the engine cycles being thermally coupled combustion heat from one cycle heating the fluid in another cycle with exhaust fluid of one cycle heating the fluid in another cycle
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F01MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
    • F01KSTEAM ENGINE PLANTS; STEAM ACCUMULATORS; ENGINE PLANTS NOT OTHERWISE PROVIDED FOR; ENGINES USING SPECIAL WORKING FLUIDS OR CYCLES
    • F01K23/00Plants characterised by more than one engine delivering power external to the plant, the engines being driven by different fluids
    • F01K23/02Plants characterised by more than one engine delivering power external to the plant, the engines being driven by different fluids the engine cycles being thermally coupled
    • F01K23/06Plants characterised by more than one engine delivering power external to the plant, the engines being driven by different fluids the engine cycles being thermally coupled combustion heat from one cycle heating the fluid in another cycle
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F01MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
    • F01KSTEAM ENGINE PLANTS; STEAM ACCUMULATORS; ENGINE PLANTS NOT OTHERWISE PROVIDED FOR; ENGINES USING SPECIAL WORKING FLUIDS OR CYCLES
    • F01K23/00Plants characterised by more than one engine delivering power external to the plant, the engines being driven by different fluids
    • F01K23/12Plants characterised by more than one engine delivering power external to the plant, the engines being driven by different fluids the engines being mechanically coupled
    • F01K23/16Plants characterised by more than one engine delivering power external to the plant, the engines being driven by different fluids the engines being mechanically coupled all the engines being turbines
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02CGAS-TURBINE PLANTS; AIR INTAKES FOR JET-PROPULSION PLANTS; CONTROLLING FUEL SUPPLY IN AIR-BREATHING JET-PROPULSION PLANTS
    • F02C3/00Gas-turbine plants characterised by the use of combustion products as the working fluid
    • F02C3/36Open cycles

Abstract

870,589. Gas-turbine plant. ASSOCIATED ELECTRICAL INDUSTRIES Ltd. Sept. 20, 1957 [Sept. 21, 1956], No. 28944/56. Class 110(3). A gas-turbine power plant comprising a combustion chamber at least one compressor in the air supply to the chamber, at least two turbines arranged in series supplied with working fluid by the chamber and with one of the turbines, the inlet pressure of which is below the highest turbine pressure stage, connected to a power output shaft and another of the turbines to the compressor or one only of the compressors, has an auxiliary turbine to aid the compressor driving turbine. The auxiliary turbine may be connected to the compressor shaft by a detachable coupling and temporarily supplied with working fluid or may be supplied with working fluid from two sources. In the arrangement shown, Fig. 1, atmospheric air is compressed in a low-pressure compressor 2, cooled in an intercooler 3, further compressed in a compressor 4 and then led to a combustion chamber 5. The combustion gases pass first to a turbine 6 driving the compressor 4, then to a turbine 7 driving an alternator 8 and then to exhaust through a turbine 9 driving the compressor 2. Additional power is supplied to the shaft of the low-pressure compressor 2 when required by means of an auxiliary gas turbine. The gas turbine comprises a compressor 10, combustion chamber 11 and a turbine 12 driving the compressor and through reduction gearing 13 and releasable coupling 14 the compressor 2. The fuel supply to the combustion chamber 11 is best controlled by hand. In a modification, Fig. 2, atmospheric air is compressed in a compressor 102 then heated in an exhaust gas-heat exchanger 105 and fed to a combustion chamber 108. The combustion gases are fed first to a turbine 109 driving the compressor 102 and then to a turbine 110 driving a ship's propeller through reduction gearing 111. The exhaust from the turbine 110 flows through the heat-exchanger 105 and boiler and superheater 112, 113 to atmosphere. A separately fired boiler 114 is also provided. The steam is utilized in two turbines. The first 115 drives an auxiliary generator 116 through reduction gearing 117 and the other 119 assists the turbine 109 to drive the compressor 102. The steam supply to the turbine 115 is controlled by the speed governor 118 and that to the turbine 119 by a pressure regulator 120 which maintains the live steam pressure constant. One or more hand admission valves are provided. When the ambient air temperature increases, the auxiliary turbine 115 is shut down so that the steam supply to the turbine 119 is increased, so as to enable the power output of the gas-turbine plant to be maintained. At still higher ambient temperatures the steam boiler 114 is started up. The gas turbine set is started by the turbine 119 supplied with steam from the boiler 114. In a modification, Fig. 3 (not shown), the turbine driving the auxiliaries is placed in parallel with the high pressure stages of the turbine driving the compressor. In this arrangement the separately fired boiler is supplied with combustion air either by a fan or by the exhaust gases of the power turbine. The exhaust gases from this boiler are led into the gas-turbine exhaust after the heat-exchanger. In another modification, Fig. 4 (not shown), the steam generated in the separately fired and exhaust gas boilers is normally used in a main power turbine. For starting and for supplying additional power to the compressor, steam is admitted to a turbine on the compressor shaft. If there are several compressors, additional power may be supplied to the low-pressure compressor only or to all of the compressors. When a steam turbine supplied with steam from an exhaust gas boiler is used, the steam may in normal service supply steam to the turbine connected to the compressor shaft. Additional power is then obtained by steam from an external source.
GB2894456A 1956-09-21 1956-09-21 Improvements in and relating to gas turbine plants Expired GB870589A (en)

Priority Applications (3)

Application Number Priority Date Filing Date Title
DENDAT1072013D DE1072013B (en) 1956-09-21 Gas turbine plant with mechanically independent compressor and power turbine
GB2894456A GB870589A (en) 1956-09-21 1956-09-21 Improvements in and relating to gas turbine plants
FR1185481D FR1185481A (en) 1956-09-21 1957-09-20 Improvements to gas turbine installations

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
GB2894456A GB870589A (en) 1956-09-21 1956-09-21 Improvements in and relating to gas turbine plants

Publications (1)

Publication Number Publication Date
GB870589A true GB870589A (en) 1961-06-14

Family

ID=10283706

Family Applications (1)

Application Number Title Priority Date Filing Date
GB2894456A Expired GB870589A (en) 1956-09-21 1956-09-21 Improvements in and relating to gas turbine plants

Country Status (3)

Country Link
DE (1) DE1072013B (en)
FR (1) FR1185481A (en)
GB (1) GB870589A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2008031466A1 (en) * 2006-09-12 2008-03-20 Voith Turbo Gmbh & Co. Kg Self-sufficient energy production unit for a vehicle driven by an internal combustion engine
WO2019145560A1 (en) * 2018-01-29 2019-08-01 Single Buoy Moorings Inc. Offshore electrical power plant

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1432889B1 (en) 2001-10-01 2006-07-12 Alstom Technology Ltd Method and device for the starting of emission-free gas turbine power stations

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2231912A (en) * 1936-02-15 1941-02-18 Holzwarth Gas Turbine Co Method and apparatus for charging explosion chambers with precompressed operating media
DE916482C (en) * 1944-07-02 1954-08-12 Siemens Ag Gas turbine system working in the constant pressure method
DE921655C (en) * 1945-01-13 1954-12-23 Holzwarth Gasturbinen Ges M B Deflagration turbine plant and method of operating the same
CH250742A (en) * 1946-07-05 1947-09-15 Escher Wyss Maschf Ag Thermal power plant with at least two combustion turbines connected in series and running at independent rotational speeds.
DE872415C (en) * 1949-10-18 1953-04-02 Sulzer Ag Gas turbine plant
DE915517C (en) * 1950-07-03 1954-07-22 Rene Anxionnaz Gas turbine plant

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2008031466A1 (en) * 2006-09-12 2008-03-20 Voith Turbo Gmbh & Co. Kg Self-sufficient energy production unit for a vehicle driven by an internal combustion engine
WO2019145560A1 (en) * 2018-01-29 2019-08-01 Single Buoy Moorings Inc. Offshore electrical power plant
US11359519B2 (en) 2018-01-29 2022-06-14 Single Buoy Moorings Inc. Offshore electrical power plant

Also Published As

Publication number Publication date
DE1072013B (en) 1959-12-24
FR1185481A (en) 1959-07-31

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