Browse Items (6 total)
- Tags: cogeneration
President Jimmy Carter's Address to the Nation on Energy
Tags: Alaska; coal; cogeneration; Congress; DOE; electricity; embargo; embargoes; employment; energy; energy conservation; environment; environmentalism; federal government; fireside chats; fuel; gasoline; Industrial Revolution; James Earl Carter, Jr.; Jimmy Carter; jobs; natural gas; North Slope; nuclear; offshore drilling; oil; petroleum; presidents; renewable energy; resources; solar power; U.S. Department of Energy; utilities; utility
Westinghouse: The Power Behind Combined Cycle Plants
Tags: 100 MW steam turbines; 80 MW W501B gas turbines; Alafaya Trail; cogeneration; combined cycle plants; combustion turbines; engineering; gas turbines; jet engines; Malcolm Baldridge Quality Award; Medicine Hat, Canada; Mojave, California; orlando; PACE; Pensacola; PGBU; Power At Combined Efficiencies; Power Generation Business Unit; Sayreville, New Jersey; steam turbine generators; The Quadrangle; W251B11/12 gas turbines; W501F gas turbines; waste heat energy; Westinghouse Electric Corporation; Westinghouse Power Generation Service
Combustion Turbine Cogeneration
Tags: AFB; atmospheric fluid bed; Availability Assurance Engineering; Benjamin Franklin; bubbling bed system; circulating bed system; cogeneration; Combustion Turbine Systems Division; combustion turbines; combustors; compressors; Configuration Visibility system; electrical energy; electricity; energy; engines; gasification; George Westinghouse, Jr.; heat recovery steam generators; HRSG; industrial electrification; Mississippi River Fuel Corporation; power plants; Special Westinghouse Assistance Team; SWAT; thermal energy; Turbine Generator System; W21; W251B; W501; W501D; Westinghouse Canada, Inc.; Westinghouse Electric Corporation
Westinghouse W501D Combustion Turbine: Guide to Systems and Applications
Tags: brushless exciters; cogeneration; combustion systems; Combustion Turbine Systems Division; combustion turbines; compressors; Concordville, Pennsylvania; CURVIC; ECONOPAC; exciters; exhaust cylinders; heat recovery steam generators; HRSG; hydrogen-cooled generators; IGV; inlet guide vanes; Kingsbury; power plants; POWERLOGIC; repowering; rotors; W501D combustion turbines; Westinghouse Electric Corporation
Evolution of Heavy-Duty Power Generation and Industrial Combustion Turbines in the United States
Tags: 191-9; 1973 Oil Crisis; 501F Advanced Combustion Turbine; 501F rotors; 701F; A. J. Scalzo; A286; Advanced Turbine Systems; airplanes; AISI 310; AISI 422; American Society of Mechanical Engineers; ASME; Atoms for Peace Program; ATS; Baldwin Company; blast furnace engines; BOT; burner outlet temperature; Chance Vought Corsair; Chicago Works; clean coal; cogeneration; cold war; compressor integral vanes; cooling systems; CURVIC; DCF; direct coal-fired; directionally solidified; Discalloy 24; DOE; Dow Chemical Company; DS; Dwight D. Eisenhower; Dwight David Eisenhower; ECONOPAC; ECY768; engines; Fiat Avio; Fuel Use Act; G. S. Howard; Gas Turbine Age; Gleason Works; Hastelloy X; Hayes International; Haynes Stellite 31; heat recovery; heavy-duty power generation; hybrid burners; IGCC; Ike Eisenhower; IN617l International Nickel Company; IN713L U500; industrial combustion turbines; integrated gasification combined cycle; International Gas Turbine and Aeroengine Congress and Exposition; J30; J34; jet fighters; Joule-Brayton cycle; LCF; leading edge groove; LEG; low cycle fatigue; M. Decorso; Marine Gas Cooled Reactors Program; McDonnell Douglas FH-1 Phantom; McDonnell F2H Banshee; McDonnell FH Phantom; MGCR; MHI; Mississippi River Fuel Company system; Mitsubishi Heavy Industries; Morgantown Energy Technology Center; NACA; NACA 65; Northeast Blackout; nuclear power plants; nuclear submarines; nuclear subs; Oil Embargo; orlando; packaged power plants; Patuxent Flight Test Center; PFB; PGBU; Pittsburgh and Lake Erie Railroad; planes; Power Generation Business Unit; pressurized fluidized bed; Public Regulatory Policies Act of 1978, PURPA; R. L. Bannister; railroads; Rankine cycle; RIT; rotor inlet temperature; SC; Sermetech International Incorporated; Sermetel 5380DP; simple cycle package; single crystal; single row 1 vanes; Special Metals Companies; steam turbines; TG501; thermodynamics; turbine discs; U.S. Department of Energy; U.S. Naval Test Laboratory; U.S. Navy; U.S. Steel Corporation; U520; Union Railroad; W101; W121; W122; W171; W191; W201; W201RE; W21; W251; W251 B12; W251A; W251AA; W251B; W251B10; W251B12; W251B8; W251BS; W301; W31; W352; W41; W501A; W501AA; W501B; W501D; W501D5; W52; W62; W72; W81; W82; W92; WE19A; WE19B; West Texas Utilities; West Texas Utilities San Angelo's Power Station; Westinghouse Electric Corporation; Westinghouse Research Laboratory; Wolverine; World War II; WWII; X-750; X45
Westinghouse Combustion Turbines: The Ready Source of Power...Worldwide
Tags: coal gasification; cogeneration; combined cycle; combustion turbine systems; Combustion Turbine Systems Division; combustion turbines; Concordville, Pennsylvania; CTSD; electrical power; fuel; fuel flexibility; outage planning; power plants; repowering; research and development; simple cycles; turbine cooling; Westinghouse Electric Corporation