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SEMINAR
ON
COMBINED CYCLE POWER
PLANTS(CCPP)
PREPARED BY:
JOYDEEP PAUL
M.TECH-P.E.D (1st
Sem)
18PEE043
N.I.T-AGARTALA
EXAMINED BY:
Miss ANINDITA JAMATIA
1
CONTENTS:
2
1. Gas turbine generation(basics).
2. Features of Gas turbine generation.
3. Need for Combined cycle operation.
4. Combined Cycle Power Plants(CCPP).
5. Main Parts of CCPP.
6. Conclusion.
7. References.
3
GAS TURBINE GENERATION:
• A gas turbine, also called a combustion turbine, is a type of internal
combustion engine.
• It has an upstream rotating compressor coupled to a downstream
turbine, and a combustion chamber in between.
• The basic operation of the gas turbine is similar to that of the steam power
plant except that natural gas is used as fuel.
• Gas Turbine’s follow Brayton Cycle.
4
 Open Cycle plant.
 Efficiency about 30%.
 High temp residue gases
released to atmosphere as
exhaust.
GAS TURBINE GENERATION
FEATURES:
Fig: Basic model of operation.
5
NEED FOR COMBINED CYCLES:
 Utilize exhaust
waste heat.
 Improve
efficiency.
 Reduce
pollution.
Fig: Shows mechanism to utilize exhaust heat from Gas Turbines.
6
COMBINED CYCLE POWER PLANTS:
 Combining
multiple cycles.
 Increased
efficiencies up to
50% or more.
 Extra steam
turbine output is
basically free of
cost.
Fig: Basic layout of Combined Cycle Plant.
7
MAIN PARTS OF CCPP:
1. Fuel Storage Area- From gas supply terminal
stored fuel near plant for conditioning to
ambient condition.
2. Gas Booster Compressor- Increases pressure
and temp of gas before being sent to turbine.
3. Air Filter- Filters intake air before sent to
compressor.
Fig: Gas Booster Compressor
8
MAIN PARTS OF CCPP:
4) Gas Turbine-
i.Air Compressor.
ii.Combustion Chamber.
iii.Turbine.
5) Gas Generator.
Fig: Gas Turbine.
9
MAIN PARTS OF CCPP:
6) Heat Recovery Steam Generator(HRSG):
i.Economizer.
ii.Evaporator (Re-Heater).
iii.Super Heater.
iv.Boiler.
Fig: Heat Recovery Steam Generator.
10
MAIN PARTS OF CCPP:
7) Steam Turbine-
Extracts thermal energy of hot
pressurized steam into rotary
motion of turbine blades.
8) Steam Generator-
Generator coupled to steam
turbine produces required steam
output.
Fig: Triple pressure Steam Turbine
11
MAIN PARTS OF CCPP:
9) Condenser-
Collects exhaust steam from turbine and
condenses it.
10) Condensate Extraction Pump-
It pumps condensed water back to boiler
feed water storage.
11) Cooling Tower-
Cools condensed water collected in hotwell
of condenser. Fig: Arrangement of cooling cycle
12
MAIN PARTS OF CCPP:
12) Feed Water System:
Circulates water back from feed water collector to
boiler.
i. De-aerator: Oxygen present in water is
removed here, thus preventing corrosion.
ii.Boiler Feed pump: Water from feed water
storage tank is again pumped up to boiler.
All of the above system continues till the plant runs.
13
Conclusion:
Advantages:
Fuel efficiency.
Reduced emission.
Clean energy.
Fast startup
Disadvantages:
Natural gas is colorless, odorless.
Has to be located near gas reserves.
Natural gas is also a fossil-fuel.
14
References:
 Power plant engineering books.
 Wikipedia.
 http://www.electrical-guru.com/Subject.aspx?id=4&code=4EE4A&
unitid=8&topicid=38.
 Training on OTPC – Palatana project site.
15

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Combiled cycle ppt

  • 1. SEMINAR ON COMBINED CYCLE POWER PLANTS(CCPP) PREPARED BY: JOYDEEP PAUL M.TECH-P.E.D (1st Sem) 18PEE043 N.I.T-AGARTALA EXAMINED BY: Miss ANINDITA JAMATIA 1
  • 2. CONTENTS: 2 1. Gas turbine generation(basics). 2. Features of Gas turbine generation. 3. Need for Combined cycle operation. 4. Combined Cycle Power Plants(CCPP). 5. Main Parts of CCPP. 6. Conclusion. 7. References.
  • 3. 3 GAS TURBINE GENERATION: • A gas turbine, also called a combustion turbine, is a type of internal combustion engine. • It has an upstream rotating compressor coupled to a downstream turbine, and a combustion chamber in between. • The basic operation of the gas turbine is similar to that of the steam power plant except that natural gas is used as fuel. • Gas Turbine’s follow Brayton Cycle.
  • 4. 4  Open Cycle plant.  Efficiency about 30%.  High temp residue gases released to atmosphere as exhaust. GAS TURBINE GENERATION FEATURES: Fig: Basic model of operation.
  • 5. 5 NEED FOR COMBINED CYCLES:  Utilize exhaust waste heat.  Improve efficiency.  Reduce pollution. Fig: Shows mechanism to utilize exhaust heat from Gas Turbines.
  • 6. 6 COMBINED CYCLE POWER PLANTS:  Combining multiple cycles.  Increased efficiencies up to 50% or more.  Extra steam turbine output is basically free of cost. Fig: Basic layout of Combined Cycle Plant.
  • 7. 7 MAIN PARTS OF CCPP: 1. Fuel Storage Area- From gas supply terminal stored fuel near plant for conditioning to ambient condition. 2. Gas Booster Compressor- Increases pressure and temp of gas before being sent to turbine. 3. Air Filter- Filters intake air before sent to compressor. Fig: Gas Booster Compressor
  • 8. 8 MAIN PARTS OF CCPP: 4) Gas Turbine- i.Air Compressor. ii.Combustion Chamber. iii.Turbine. 5) Gas Generator. Fig: Gas Turbine.
  • 9. 9 MAIN PARTS OF CCPP: 6) Heat Recovery Steam Generator(HRSG): i.Economizer. ii.Evaporator (Re-Heater). iii.Super Heater. iv.Boiler. Fig: Heat Recovery Steam Generator.
  • 10. 10 MAIN PARTS OF CCPP: 7) Steam Turbine- Extracts thermal energy of hot pressurized steam into rotary motion of turbine blades. 8) Steam Generator- Generator coupled to steam turbine produces required steam output. Fig: Triple pressure Steam Turbine
  • 11. 11 MAIN PARTS OF CCPP: 9) Condenser- Collects exhaust steam from turbine and condenses it. 10) Condensate Extraction Pump- It pumps condensed water back to boiler feed water storage. 11) Cooling Tower- Cools condensed water collected in hotwell of condenser. Fig: Arrangement of cooling cycle
  • 12. 12 MAIN PARTS OF CCPP: 12) Feed Water System: Circulates water back from feed water collector to boiler. i. De-aerator: Oxygen present in water is removed here, thus preventing corrosion. ii.Boiler Feed pump: Water from feed water storage tank is again pumped up to boiler. All of the above system continues till the plant runs.
  • 13. 13 Conclusion: Advantages: Fuel efficiency. Reduced emission. Clean energy. Fast startup Disadvantages: Natural gas is colorless, odorless. Has to be located near gas reserves. Natural gas is also a fossil-fuel.
  • 14. 14 References:  Power plant engineering books.  Wikipedia.  http://www.electrical-guru.com/Subject.aspx?id=4&code=4EE4A& unitid=8&topicid=38.  Training on OTPC – Palatana project site.
  • 15. 15