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Summary Of: Thermal power station

An important class of thermal power station are associated with...

Encyclodia Page On: Thermal power station

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A thermal power station near Sofia, Bulgaria | | Sofia | Bulgaria | Mohave Generating Station, a 1,580 MW thermal power station near Laughlin, Nevada fuelled by coal | | Laughlin, Nevada | Geothermal power station in Iceland | | Geothermal power station | | Energy portal | power plant | steam | steam turbine | electrical generator | condensed | condenser | Rankine cycle | heat | energy | United States | Commonwealth countries | United Kingdom | coal | nuclear | geothermal | solar thermal electric | waste incineration plants | Natural gas | combusted | gas turbines | boilers | combined cycle | James Watt | thermodynamics | Carnot cycle | waste heat | cooling water | cooling towers | district heating | cogeneration | desalination | natural gas | mercury | mercury vapour turbine | Typical diagram of a coal-fired thermal power station     1. Cooling tower  10. Steam control valve  19. Superheater    2. Cooling water pump  11. High pressure steam turbine  20. Forced draught (draft) fan    3. Three-phase transmission line  12. Deaerator  21. Reheater    4. Step-up transformer  13. Feedwater heater  22. Combustion air intake    5. Electrical generator  14. Coal conveyor  23. Economiser    6. Low pressure steam turbine  15. Coal hopper  24. Air preheater    7. Boiler feedwater pump  16. Coal pulverizer  25. Precipitator    8. Surface condenser  17. Boiler steam drum  26. Induced draught (draft) fan    9. Intermediate pressure steam turbine  18. Bottom ash hopper  27. Flue gas stack | | Cooling tower | Steam control valve | Superheater | Cooling water pump | steam | fan | Three-phase | transmission line | Deaerator | transformer | Feedwater heater | Combustion | Electrical generator | Coal | conveyor | Economiser | steam turbine | Coal | Air preheater | Boiler feedwater pump | Coal pulverizer | Precipitator | Surface condenser | Boiler steam drum | fan | steam turbine | Bottom ash | Flue gas stack | Schematic diagram of typical coal-fired power plant steam generator highlighting the air preheater (APH) location. (For simplicity, any radiant section tubing is not shown.) | | furnace | flue gas | fan | air preheater | electrostatic precipitator | baghouse | flue gas stack | MW | boiler | steam generator | latent heat of vaporization | enthalpy | economizer | steam drum | steam separators | natural circulation | coal | explosions | pulverized | ball mills | grinders | fuel oil | pour point | processed natural gas | Fly ash | bottom ash | condensate | calcium | magnesium | hardness | surface condenser | Rotor of a modern steam turbine, used in a power station | | Turbo generator | steam turbine-driven generators | bearings | Babbitt metal | Surface condenser | Diagram of a typical water-cooled surface condenser. | | shell and tube heat exchanger | steam ejectors | rotary | vacuum | vapor pressure | vacuum | air conditioning | cooling tower | Feedwater heater | A Rankine cycle with a two-stage steam turbine and a single feedwater heater. | | Rankine cycle | steam turbine | latent heat of vaporization | btu | Enthalpy | feedwater heater | thermodynamic efficiency | thermal shock | superheater | Deaerator | Diagram of boiler feed water deaerator (with vertical, domed aeration section and horizontal water storage section | | corrosion | deaerator | electricity generator | Hydrogen | heat transfer coefficient | viscosity | windage | carbon dioxide | flammable | oxygen | atmospheric pressure | kV | transformers | electrical substation | lead acid cell | Fossil fuel power plant | coal mines | trucks | barges | bulk cargo ships | railway | Boiler | Combined heat and power | Cooling tower system | Flue gas stacks | Fossil fuel power plant | Geothermal power | Nuclear power | Power station | Water-tube boiler | ISBN 0-08-040510-X | ISBN 0-9634570-0-4 | ISBN 0-07-019435-1 | University of Tulsa | Categories | Power station technology | Energy conversion | Chemical engineering | Steam power |
This article is licensed under the GNU Free Documentation License. It uses material from the Wikipedia article "Thermal power station".