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POWER PLANTS

SUBRAMANYAM.P
114P5A0303
TYPES OF POWER PLANTS


Wind power plants (1No-1MW)



Solar power plant

(1No-2MW)



Hydel-power plant

(22No-42240MW)



Thermal power plant(6No-7900MW)
 The installed capacity of APGENCO on
31.07.2012 is 8924.9 MW.
Comprising 5092.5 MW Thermal, 3829.4 MW
Hydro, 2 MW Wind power stations and 1 MW
solar power.
 It contributes about half the total Energy
Requirement of AP.
 APGENCO is third largest power generating
utility in the Country next to NTPC &
MAHAGENCO.
It installed a Hydro capacity of 3664.4 MW
and is the second highest among the Country.
INTRODUCTION
With the world on a development ,
there is shortage of power in most places
while the demand seems to be in a never
ending . There are several answers to this
challenge such as the nuclear power plants,
but the conventional thermal power plants
also play an equally important role in this
power generation..
CLASSIFICATION
THERMAL POWER PLANTS ARE CLASSIFIED BY THE
TYPE OF FUEL AND THE TYPE OF PRIME MOVER
INSTALLED













By fuel
Nuclear power plants
Fossil fuelled power plants
Biomass fuelled power plants
Solar thermal
By prime mover
Steam turbine
Gas turbine
Combined cycle
Reciprocating engines
Micro turbines , stirling engine
NEED FOR THERMAL POWER
GENERATION


Scarcity of water resources



Widely available alternate fuels



Maintenance and lubrication cost is lower



Coal is abundant



Working fluid
THERMAL POWER PLANT
(STEAM POWER PLANT)
SCHEMATIC DIAGRAM OF THERMAL POWER
PLANT
GENERAL LAYOUT OF THERMAL
POWER PLANT
The layout of steam power plant is shown
in the above figure.
It consist of four main circuits they are:
1.Coal and Ash circuit

2.Air and flue gas circuit
3.Water and Steam circuit
&
4.Cooling water circuit
DETAILED PROCESS OF POWER
GENERATION IN A THERMAL POWER
PLANT:


Water intake



Boiler heating



Steam Turbine



Generator



Special mountings



Ash collection system



Other monitoring instruments
ADVANTAGES OF THERMAL POWER
PLANTS


Initial cost & Fuel



Less space & can be Install at any place



Cost of generation



Maintenances and lubrication cost



Nature's mercy



construction and commission time
DISADVANTAGES OF THERMAL
POWER PLANT


Air pollution



Starting time & Efficiency



Transportation of fuel



Power generation cost



Requires skilled manpower



Life of the plant
FUTURE PROSPECTS


Accelerating the Development of
CO2 Capture and Storage Technology is
the Key to Realize Next-generation Power
Generation System.



Preventive Maintenance Technologies that
Support the Long-term, Stable Operation
Facilities and Extension of the Service Life
of High-temperature Gas Turbine Parts.
ANY
QUESTIONS ?
Subbu.ppt

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Subbu.ppt

  • 2. TYPES OF POWER PLANTS  Wind power plants (1No-1MW)  Solar power plant (1No-2MW)  Hydel-power plant (22No-42240MW)  Thermal power plant(6No-7900MW)
  • 3.  The installed capacity of APGENCO on 31.07.2012 is 8924.9 MW. Comprising 5092.5 MW Thermal, 3829.4 MW Hydro, 2 MW Wind power stations and 1 MW solar power.  It contributes about half the total Energy Requirement of AP.  APGENCO is third largest power generating utility in the Country next to NTPC & MAHAGENCO. It installed a Hydro capacity of 3664.4 MW and is the second highest among the Country.
  • 4. INTRODUCTION With the world on a development , there is shortage of power in most places while the demand seems to be in a never ending . There are several answers to this challenge such as the nuclear power plants, but the conventional thermal power plants also play an equally important role in this power generation..
  • 5. CLASSIFICATION THERMAL POWER PLANTS ARE CLASSIFIED BY THE TYPE OF FUEL AND THE TYPE OF PRIME MOVER INSTALLED            By fuel Nuclear power plants Fossil fuelled power plants Biomass fuelled power plants Solar thermal By prime mover Steam turbine Gas turbine Combined cycle Reciprocating engines Micro turbines , stirling engine
  • 6. NEED FOR THERMAL POWER GENERATION  Scarcity of water resources  Widely available alternate fuels  Maintenance and lubrication cost is lower  Coal is abundant  Working fluid
  • 8. SCHEMATIC DIAGRAM OF THERMAL POWER PLANT
  • 9. GENERAL LAYOUT OF THERMAL POWER PLANT
  • 10. The layout of steam power plant is shown in the above figure. It consist of four main circuits they are: 1.Coal and Ash circuit 2.Air and flue gas circuit 3.Water and Steam circuit & 4.Cooling water circuit
  • 11. DETAILED PROCESS OF POWER GENERATION IN A THERMAL POWER PLANT:  Water intake  Boiler heating  Steam Turbine  Generator  Special mountings  Ash collection system  Other monitoring instruments
  • 12. ADVANTAGES OF THERMAL POWER PLANTS  Initial cost & Fuel  Less space & can be Install at any place  Cost of generation  Maintenances and lubrication cost  Nature's mercy  construction and commission time
  • 13. DISADVANTAGES OF THERMAL POWER PLANT  Air pollution  Starting time & Efficiency  Transportation of fuel  Power generation cost  Requires skilled manpower  Life of the plant
  • 14. FUTURE PROSPECTS  Accelerating the Development of CO2 Capture and Storage Technology is the Key to Realize Next-generation Power Generation System.  Preventive Maintenance Technologies that Support the Long-term, Stable Operation Facilities and Extension of the Service Life of High-temperature Gas Turbine Parts.