SNS COLLEGE OF ENGINEERINGKurumbapalayam(Po), Coimbatore – 641 107
Accredited by NAAC-UGC with ‘A’ GradeApproved by AICTE & Affiliated to Anna University, Chennai
Layout of Modern Coal Power PlantLayout of Modern Coal Power Plant
Mr.P.SELVANASSISTANT PROFESSOR
DEPARTMENT OF MECHANICAL ENGINEERING
Contents
1.Introduction
2.Power plant layout
3.Main and Auxiliary Equipments
4.Thermal power plants in Rajasthan
5.References
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1.Introduction
2.Power plant layout
3.Main and Auxiliary Equipments
4.Thermal power plants in Rajasthan
5.References
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INTRODUCTION
• Heat Energy of Coal Electrical Energy
• Coal is burnt in a boiler
water steam
• Expansion of steam in turbine produces mechanical power whichdrives the alternator coupled to the turbine
• Thermal Power Plants contribute maximum to the generation ofPower for any country
• Thermal Power Plants constitute 75.43% of the total installedcaptive and non-captive power generation in India
• In thermal generating stations coal, oil, natural gas etc. areemployed as primary sources of energy
• Heat Energy of Coal Electrical Energy
• Coal is burnt in a boiler
water steam
• Expansion of steam in turbine produces mechanical power whichdrives the alternator coupled to the turbine
• Thermal Power Plants contribute maximum to the generation ofPower for any country
• Thermal Power Plants constitute 75.43% of the total installedcaptive and non-captive power generation in India
• In thermal generating stations coal, oil, natural gas etc. areemployed as primary sources of energy
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General Layout of Thermal Power Station
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Layout
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Main and Auxiliary e q u i p m e n t s
1. Coal handling plant2. Pulverizing plant3. Draft fans4. Boiler5. Ash handling plant6. Turbine7. Condenser8. Cooling towers and ponds9. Feed water heater10. Economiser11. Superheater and Reheater12. Air preheater
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1. Coal handling plant2. Pulverizing plant3. Draft fans4. Boiler5. Ash handling plant6. Turbine7. Condenser8. Cooling towers and ponds9. Feed water heater10. Economiser11. Superheater and Reheater12. Air preheater
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Coal handling Plant
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•The function of coal handling plant is automatic feeding of coal tothe boiler furnace.• A thermal power plant burns enormous amounts of coal.•A 200MW plant may require around 2000 tons of coal daily
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Pulverising plant• In modern thermal power plant , coal is
pulverised i.e. ground to dust like size andcarried to the furnace in a stream of hot air.Pulverising is a means of exposing a large surfacearea to the action of oxygen and consequentlyhelping combustion.
• Pulverising mills are further classified as:1. Contact mill2. Ball mill3. Impact mill
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• In modern thermal power plant , coal ispulverised i.e. ground to dust like size andcarried to the furnace in a stream of hot air.Pulverising is a means of exposing a large surfacearea to the action of oxygen and consequentlyhelping combustion.
• Pulverising mills are further classified as:1. Contact mill2. Ball mill3. Impact mill
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Draft system
• The circulation of air is causedby a difference in pressure,known as Draft.
• Draft is a differential pressureb/w atmosphere and inside theboiler.
• It is necessary to cause the flowof gases through boiler setting
• It may be –1. Natural draft2. Mechanical draft
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• The circulation of air is causedby a difference in pressure,known as Draft.
• Draft is a differential pressureb/w atmosphere and inside theboiler.
• It is necessary to cause the flowof gases through boiler setting
• It may be –1. Natural draft2. Mechanical draft
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Boiler
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Boiler
• A boiler or steam generator is a closed vessel in whichwater under pressure, is converted into steam.
• It is one of the major components of a thermal powerplant
• Always designed to absorb maximum amount of heatreleased in the process of combustion
• Boilers are of two types-
1.Fire tube boiler2.Water tube boiler
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• A boiler or steam generator is a closed vessel in whichwater under pressure, is converted into steam.
• It is one of the major components of a thermal powerplant
• Always designed to absorb maximum amount of heatreleased in the process of combustion
• Boilers are of two types-
1.Fire tube boiler2.Water tube boiler
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Superheater and reheater
• Most of the modern boilers are having super heater and reheaterarrangement.
• Superheater :• Superheater is a component of a steam-generating unit in which
steam, after it has left the boiler drum, is heated above itssaturation temperature. The amount of superheat added to thesteam is influenced by the location, arrangement, and amount ofsuper heater surface installed, as well as the rating of the boiler.The super heater may consist of one or more stages of tube banksarranged to effectively transfer heat from the products ofcombustion. Super heaters are classified as convection , radiant orcombination of these.
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• Most of the modern boilers are having super heater and reheaterarrangement.
• Superheater :• Superheater is a component of a steam-generating unit in which
steam, after it has left the boiler drum, is heated above itssaturation temperature. The amount of superheat added to thesteam is influenced by the location, arrangement, and amount ofsuper heater surface installed, as well as the rating of the boiler.The super heater may consist of one or more stages of tube banksarranged to effectively transfer heat from the products ofcombustion. Super heaters are classified as convection , radiant orcombination of these.
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Reheater
• Reheater : Some of the heat of superheated steam is used to rotate theturbine where it loses some of its energy. Reheater is also steam boilercomponent in which heat is added to this intermediate-pressure steam,which has given up some of its energy in expansion through the high-pressure turbine. The steam after reheating is used to rotate the secondsteam turbine where the heat is converted to mechanical energy. Thismechanical energy is used to run the alternator, which is coupled toturbine , there by generating electrical energy.
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• Reheater : Some of the heat of superheated steam is used to rotate theturbine where it loses some of its energy. Reheater is also steam boilercomponent in which heat is added to this intermediate-pressure steam,which has given up some of its energy in expansion through the high-pressure turbine. The steam after reheating is used to rotate the secondsteam turbine where the heat is converted to mechanical energy. Thismechanical energy is used to run the alternator, which is coupled toturbine , there by generating electrical energy.
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Steam turbine
• A steam turbine converts heat energy of steam intomechanical energy and drives the generator.
• It uses the principle that steam when issuing from asmall opening attains a high velocity.
• This velocity attained during expansion depends on theinitial and final heat content of the steam. Thisdifference b/w initial and final heat content representsthe heat energy converted into kinetic energy.
• These are of two types :- Impulse turbine Reaction turbine
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• A steam turbine converts heat energy of steam intomechanical energy and drives the generator.
• It uses the principle that steam when issuing from asmall opening attains a high velocity.
• This velocity attained during expansion depends on theinitial and final heat content of the steam. Thisdifference b/w initial and final heat content representsthe heat energy converted into kinetic energy.
• These are of two types :- Impulse turbine Reaction turbine
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Ash handling plant
The percentage of ash in coal varies from 5% in good qualitycoal to about 40% in poor quality coal
Power plants generally use poor quality of coal , thus amountof ash produced by it is pretty large
A modern 2000MW plant produces about 5000 tons of ashdaily
The stations use some conveyor arrangement to carry ash todump sites directly or for carrying and loading it to trucksand wagons which transport it to the site of disposal
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The percentage of ash in coal varies from 5% in good qualitycoal to about 40% in poor quality coal
Power plants generally use poor quality of coal , thus amountof ash produced by it is pretty large
A modern 2000MW plant produces about 5000 tons of ashdaily
The stations use some conveyor arrangement to carry ash todump sites directly or for carrying and loading it to trucksand wagons which transport it to the site of disposal
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Condenser
• Steam after rotating steam turbine comes to condenser. Condenserrefers here to the shell and tube heat exchanger (or surface condenser)installed at the outlet of every steam turbine in Thermal power stationsof utility companies generally.
• These condensers are heat exchangers which convert steam from itsgaseous to its liquid state, also known as phase transition.
• In so doing, the latent heat of steam is given out inside the condenser.Where water is in short supply an air cooled condenser is often used.
• An air cooled condenser is however significantly more expensive andcannot achieve as low a steam turbine backpressure (and therefore lessefficient) as a surface condenser.
• The purpose is to condense the outlet (or exhaust) steam from steamturbine to obtain maximum efficiency and also to get the condensedsteam in the form of pure water, otherwise known as condensate, backto steam generator or (boiler) as boiler feed water.
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• Steam after rotating steam turbine comes to condenser. Condenserrefers here to the shell and tube heat exchanger (or surface condenser)installed at the outlet of every steam turbine in Thermal power stationsof utility companies generally.
• These condensers are heat exchangers which convert steam from itsgaseous to its liquid state, also known as phase transition.
• In so doing, the latent heat of steam is given out inside the condenser.Where water is in short supply an air cooled condenser is often used.
• An air cooled condenser is however significantly more expensive andcannot achieve as low a steam turbine backpressure (and therefore lessefficient) as a surface condenser.
• The purpose is to condense the outlet (or exhaust) steam from steamturbine to obtain maximum efficiency and also to get the condensedsteam in the form of pure water, otherwise known as condensate, backto steam generator or (boiler) as boiler feed water.
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Cooling towers and ponds
o A condenser needs huge quantity of water to condense the steam .o Typically a 2000MW plant needs about 1500MGallon of water.o Most plants use a closed cooling system where warm water coming from
condenser is cooled and reusedo Small plants use spray ponds and medium and large plants use cooling towers.o Cooling tower is a steel or concrete hyperbolic structure having a reservoir at the
base for storage of cooled watero Height of the cooling tower may be 150 m or so and diameter at the base is 150 m
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o A condenser needs huge quantity of water to condense the steam .o Typically a 2000MW plant needs about 1500MGallon of water.o Most plants use a closed cooling system where warm water coming from
condenser is cooled and reusedo Small plants use spray ponds and medium and large plants use cooling towers.o Cooling tower is a steel or concrete hyperbolic structure having a reservoir at the
base for storage of cooled watero Height of the cooling tower may be 150 m or so and diameter at the base is 150 m
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Feed water heater
• Advantages of heating water before feeding back to theboiler:-
a) Feed water heating improves overall plant efficiency.b) The dissolved oxygen and carbon dioxide which would
otherwise cause boiler corrosion are removed in feed waterheater
c) Thermal stresses due to cold water entering the boiler drumare avoided.
d) Quantity of steam produced by the boiler is increased.e) Some other impurities carried by the steam and condensate,
due to corrosion of boiler and condenser are precipitatedoutside the boiler.
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• Advantages of heating water before feeding back to theboiler:-
a) Feed water heating improves overall plant efficiency.b) The dissolved oxygen and carbon dioxide which would
otherwise cause boiler corrosion are removed in feed waterheater
c) Thermal stresses due to cold water entering the boiler drumare avoided.
d) Quantity of steam produced by the boiler is increased.e) Some other impurities carried by the steam and condensate,
due to corrosion of boiler and condenser are precipitatedoutside the boiler.
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Economiser
• Flue gases coming out of the boiler carry lot ofheat. An economiser extracts a part of thisheat from flue gases and uses it for heatingfeed water. This use of economiser results insaving coal consumption and higher boilerefficiency
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• Flue gases coming out of the boiler carry lot ofheat. An economiser extracts a part of thisheat from flue gases and uses it for heatingfeed water. This use of economiser results insaving coal consumption and higher boilerefficiency
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Economizer
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Air preheater
• After flue gases leave economiser, some further heatcan be extracted from them and used to heat incomingheat. Cooling of flue gases by 20 degree centigradeincreases the plant efficiency by 1%.
• Air preheaters may be of three types Plate type Tubular type Regenerative type
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• After flue gases leave economiser, some further heatcan be extracted from them and used to heat incomingheat. Cooling of flue gases by 20 degree centigradeincreases the plant efficiency by 1%.
• Air preheaters may be of three types Plate type Tubular type Regenerative type
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