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A PRESENTATION
ON
PRACTICAL TRAINING
AT
GOVT. ENGG. COLLEGE JHALAWAR
Submitted to:-
Mr. Ashish Khandelwal
Head of Department
Electrical Engineering 1
Submitted by:-
Naval Kishor
B.tech. 4th year
2013UEE033
1. Introduction
2. Plant Layout
3. Working Principle
4. Coal Handling Plant
5. Boiler
6. Economiser
7. Turbine
8. Generator
9. Cooling Tower
10. Ash Handling Plant
11. Control Panel
12. Switch Yard
CONTENTS
INTRODUCTION
3
Project Kalisindh Super Thermal Power Project, Jhalawar
Capacity 1200 MW(2×600 MW)
Project Site Village-Undel, Motipura, Nimoda, Singharia & Deveri of Tehsil Jhalarapatan, Distt.
Jhalawar
Project Location The project site is about 12 km from NH-12, 2km from state highway and 8 km
from Ramganj Mandi - Bhopal broad gauge rail line.
Land Area 2230 Bigha/564 Hq. (1400 Bigha/350 Hq. in I stage)
Water Source and Quantity Dam on Kalisindh river 3400 CuM/Hrs.
Fuel Source Main fuel- Coal from captive coal blocks (Paras east and Kanta Basin in
Chhattisgarh state)
Secondary Fuel- FO/HSD.
Quantity of Fuel (at 80% PLF) Coal-56 Lacs TPA
FO/HSD-13000-14000 KL/A
Electro Static Precipitator 99.98 % Capacity
Stack Height 275 m
Revised Cost Rs. 9479.51 Crores
COAL
STORAGE
COAL
HANDLING
PLANT
BOILER
FURNACE
SUPER
HEATER
TURBINE ALTER-
NATOR
ECONOMISER
AIR
PRE-HEATER
CHIMNEY
CONDENSER
ASH
HANDLING
PLANT
ASH
STORAGE
COOLING
TOWER
PLANT LAYOUT
ELECTRIC
POWER
WORKING PRINCIPLE
5
 1-4 : Water is pumped into the boiler at high pressure.
 4-5 : Water is converted into steam at constant pressure.
 5-7 : Expansion of steam in the steam turbine.
 7-1 : Rejection of heat into the condenser.
COAL HANDLING PLANT
It consist three parts
 Wagon unloading system
 Conveying system
 Crushing system
8700 tons coal is required
per day for each unit.
Coal is supplied from Parsa
kanta mines Chhattisgarh.
6
Bunkers
Crusher
house
Hoppers
Raw coal
Feeders
Coal mills
(pulverization)
Boiler Furnace
OVERVIEWOF COAL HANDLING PLANT
Raw Coal Wagon
Trippler
7
BOILER
8
Water is converted to generate steam
Types
1.Water tube boiler
2.Fire tube boiler
A boiler is always designed to absorb
max amount of heat released in process
of combustion.
FD fan:-To supply air for combustion of
fuel in furnace.
ID fan:-For sucking out flue gases and
discharge to atmosphere.
BOILER SPECIFICATION
9
S. NO. PARAMETER RATING
1 Type of Furnace Water Tube
2 Steam Capacity 670 tons/Hr. at 535° C
3 Capacity of Boiler Circulating pump 40000-48000 𝑚3
/Hr.
4 Speed of ID Fan 600 RPM
5 Speed of FD Fan 1500 RPM
6 Coal Required 320 tons/Hr.
7 Temp. & Pressure of main Steam 535° C, 178 kg/𝑚3
8 Temp. & Pressure of hot reheat Steam 500° C, 43.7 kg/𝑚3
eCONOMISER
10
 It is a heat exchanger
device that heats up fluids
or recovers residual heat
from the combustion
product.
 It improves the efficiency
of plant 10-12%.
 Temperature : 315° C
STEAM TURBINE
11
 It is a machine in which
shaft is rotated by impact
or reaction of steam on
blades of turbine.
 When Steam is used then
it is called steam turbine.
 TYPE :- Reaction turbine
Mechanical
Energy
Kinetic
Energy
12
SUPERHEATER HP
REHEATER
IP LP LP
CONDENSER
Steam at
535°C
STEAM
Steam at
545°C
Steam
at
535°C
Steam at
545°C
Steam flow in turbine
TURBINE SPECIFICATION
13
S. NO. PARAMETER RATING
1. Speed 3000 r.p.m
2. Rotation Direction (view from turbine) anticlock wise
3. Number of stages 42
4. Rated output with extraction flow 600 MW
5. Main steam throttle flow at HP Inlet 1848.5 TPH
6. Main steam pressure to HP turbine inlet 167 kg/sq.cm
7. Main steam temperature. to HP turbine inlet 538°C
8. Re-heater steam flow at IP inlet 1587.942 TPH
9. Re-heater steam temperature. at IP inlet 538°C
10. Steam pressure at LP inlet 35.12 kg/sq.cm
11. Final feed water temperature 274.9°C
GENERATOR
14
An electrical generator is a
machine which converts
mechanical energy into
electrical energy through
electro mechanical energy
conversion.
 The generator is driven by
directly coupled steam
turbine at a speed of 3000
rpm.
Generator specification
15
S. NO. PARAMETER RATING
1
Made By
CQ. GEAR BOX LTD.
CHINA
2 Apparent output 706 MVA
3 Active output 600 MW
4 Power factor 0.85 lagging
5 Rated voltage 22 KV
6 Rated current 18525 Amp
7 Rated speed 3000 r.p.m
8 Frequency 50 Hz
Cooling towers
• The two cooling towers of the
facility are 202 metres tall and the
tallest in the world.
• A cooling tower is a heat
rejection device which extracts
waste heat to the atmosphere
through the cooling of a water
steam to a lower temperature.
16
Electrostatic precipitator
17
 ESP is mostly used for
removing the suspended
particles from the flue
gases.
 Consists of two electrodes
• Emitting Electrode
• Collecting Electrode
 The motor operated
hammer is used for
removed deposited
particles.
Ash Handling Plant
Electrostatic Precipitator is
used in ash handling plant to
remove fly ash.
Use of ash
• Manufacturing of building
materials.
• Making of concrete.
• Manufacturing of cement.
• Road construction etc.
18
TRANSFORMER
19
It is a device that transfers
electric energy from
one alternating-
current circuit to one or
more other circuits, either
increasing (stepping up) or
reducing (stepping down)
the voltage.
Various Transformers at
KaTPP
• Generating Transformer
• Unit Auxiliary
Transformer
• Station Transformer
SWITCHYARD
20
Switchyard is the interconnector between generation and
transmission and the same voltage is maintained in
switchyard.
Switch consists of the following instruments-
• Lightening Arresters
• Current Transformer
• Voltage Transformer
• Capacitive Voltage Transformer
• Bus Bar
• Isolators
• Insulators
• Circuit Breakers
• Protective Relays
21

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PPT ON THERMAL POWER PLANT

  • 1. A PRESENTATION ON PRACTICAL TRAINING AT GOVT. ENGG. COLLEGE JHALAWAR Submitted to:- Mr. Ashish Khandelwal Head of Department Electrical Engineering 1 Submitted by:- Naval Kishor B.tech. 4th year 2013UEE033
  • 2. 1. Introduction 2. Plant Layout 3. Working Principle 4. Coal Handling Plant 5. Boiler 6. Economiser 7. Turbine 8. Generator 9. Cooling Tower 10. Ash Handling Plant 11. Control Panel 12. Switch Yard CONTENTS
  • 3. INTRODUCTION 3 Project Kalisindh Super Thermal Power Project, Jhalawar Capacity 1200 MW(2×600 MW) Project Site Village-Undel, Motipura, Nimoda, Singharia & Deveri of Tehsil Jhalarapatan, Distt. Jhalawar Project Location The project site is about 12 km from NH-12, 2km from state highway and 8 km from Ramganj Mandi - Bhopal broad gauge rail line. Land Area 2230 Bigha/564 Hq. (1400 Bigha/350 Hq. in I stage) Water Source and Quantity Dam on Kalisindh river 3400 CuM/Hrs. Fuel Source Main fuel- Coal from captive coal blocks (Paras east and Kanta Basin in Chhattisgarh state) Secondary Fuel- FO/HSD. Quantity of Fuel (at 80% PLF) Coal-56 Lacs TPA FO/HSD-13000-14000 KL/A Electro Static Precipitator 99.98 % Capacity Stack Height 275 m Revised Cost Rs. 9479.51 Crores
  • 5. WORKING PRINCIPLE 5  1-4 : Water is pumped into the boiler at high pressure.  4-5 : Water is converted into steam at constant pressure.  5-7 : Expansion of steam in the steam turbine.  7-1 : Rejection of heat into the condenser.
  • 6. COAL HANDLING PLANT It consist three parts  Wagon unloading system  Conveying system  Crushing system 8700 tons coal is required per day for each unit. Coal is supplied from Parsa kanta mines Chhattisgarh. 6
  • 7. Bunkers Crusher house Hoppers Raw coal Feeders Coal mills (pulverization) Boiler Furnace OVERVIEWOF COAL HANDLING PLANT Raw Coal Wagon Trippler 7
  • 8. BOILER 8 Water is converted to generate steam Types 1.Water tube boiler 2.Fire tube boiler A boiler is always designed to absorb max amount of heat released in process of combustion. FD fan:-To supply air for combustion of fuel in furnace. ID fan:-For sucking out flue gases and discharge to atmosphere.
  • 9. BOILER SPECIFICATION 9 S. NO. PARAMETER RATING 1 Type of Furnace Water Tube 2 Steam Capacity 670 tons/Hr. at 535° C 3 Capacity of Boiler Circulating pump 40000-48000 𝑚3 /Hr. 4 Speed of ID Fan 600 RPM 5 Speed of FD Fan 1500 RPM 6 Coal Required 320 tons/Hr. 7 Temp. & Pressure of main Steam 535° C, 178 kg/𝑚3 8 Temp. & Pressure of hot reheat Steam 500° C, 43.7 kg/𝑚3
  • 10. eCONOMISER 10  It is a heat exchanger device that heats up fluids or recovers residual heat from the combustion product.  It improves the efficiency of plant 10-12%.  Temperature : 315° C
  • 11. STEAM TURBINE 11  It is a machine in which shaft is rotated by impact or reaction of steam on blades of turbine.  When Steam is used then it is called steam turbine.  TYPE :- Reaction turbine Mechanical Energy Kinetic Energy
  • 12. 12 SUPERHEATER HP REHEATER IP LP LP CONDENSER Steam at 535°C STEAM Steam at 545°C Steam at 535°C Steam at 545°C Steam flow in turbine
  • 13. TURBINE SPECIFICATION 13 S. NO. PARAMETER RATING 1. Speed 3000 r.p.m 2. Rotation Direction (view from turbine) anticlock wise 3. Number of stages 42 4. Rated output with extraction flow 600 MW 5. Main steam throttle flow at HP Inlet 1848.5 TPH 6. Main steam pressure to HP turbine inlet 167 kg/sq.cm 7. Main steam temperature. to HP turbine inlet 538°C 8. Re-heater steam flow at IP inlet 1587.942 TPH 9. Re-heater steam temperature. at IP inlet 538°C 10. Steam pressure at LP inlet 35.12 kg/sq.cm 11. Final feed water temperature 274.9°C
  • 14. GENERATOR 14 An electrical generator is a machine which converts mechanical energy into electrical energy through electro mechanical energy conversion.  The generator is driven by directly coupled steam turbine at a speed of 3000 rpm.
  • 15. Generator specification 15 S. NO. PARAMETER RATING 1 Made By CQ. GEAR BOX LTD. CHINA 2 Apparent output 706 MVA 3 Active output 600 MW 4 Power factor 0.85 lagging 5 Rated voltage 22 KV 6 Rated current 18525 Amp 7 Rated speed 3000 r.p.m 8 Frequency 50 Hz
  • 16. Cooling towers • The two cooling towers of the facility are 202 metres tall and the tallest in the world. • A cooling tower is a heat rejection device which extracts waste heat to the atmosphere through the cooling of a water steam to a lower temperature. 16
  • 17. Electrostatic precipitator 17  ESP is mostly used for removing the suspended particles from the flue gases.  Consists of two electrodes • Emitting Electrode • Collecting Electrode  The motor operated hammer is used for removed deposited particles.
  • 18. Ash Handling Plant Electrostatic Precipitator is used in ash handling plant to remove fly ash. Use of ash • Manufacturing of building materials. • Making of concrete. • Manufacturing of cement. • Road construction etc. 18
  • 19. TRANSFORMER 19 It is a device that transfers electric energy from one alternating- current circuit to one or more other circuits, either increasing (stepping up) or reducing (stepping down) the voltage. Various Transformers at KaTPP • Generating Transformer • Unit Auxiliary Transformer • Station Transformer
  • 20. SWITCHYARD 20 Switchyard is the interconnector between generation and transmission and the same voltage is maintained in switchyard. Switch consists of the following instruments- • Lightening Arresters • Current Transformer • Voltage Transformer • Capacitive Voltage Transformer • Bus Bar • Isolators • Insulators • Circuit Breakers • Protective Relays
  • 21. 21