SlideShare une entreprise Scribd logo
1  sur  59
A  PRESENTATION ON BOILERS
Boiler is a closed vessel in which water under pressure is transferred into steam by the application of heat.  In the furnace, the chemical energy in the fuel is converted into heat. It is the function of the boiler to transfer this heat to the water in the most efficient manner. A boiler should be designed to absorb the maximum amount of heat released in the process of combustion.
Boiler Types and Classifications ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],Fire Tube Boiler
1.Fire Tube boiler   In boilers of this type most of the work is done by the heat transfer from hot combustion products flowing inside the tubes to the water surrounding the tubes. They may also be called as shell boilers.  Fire tube boilers feature simple and rugged construction and are relatively cheaper. The maximum design working pressure for fire tube boilers is limited to 17-kg/square centimeter (approx.)
Boiler Types and Classifications ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],Water Tube  Boiler
[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Packaged Boiler Package boilers are generally of shell type with  fire tube design More number of passes-so more heat transfer Large number of small diameter tubes leading to good convective heat transfer. Higher thermal efficiency
Chain Grate or Traveling Grate Stoker Boiler ,[object Object],[object Object],[object Object],[object Object]
Spreader Stoker Boiler ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Pulverized Fuel Boiler Tangential firing Coal is pulverised to a fine powder, so that less than 2% is +300 microns, and 70-75% is below 75 microns. Coal is blown with part of the combustion air into the boiler plant through a series of burner nozzles.  Combustion temperatures from 1300-1700°C Particle residence time in the boiler is  2-5 seconds Most popular system for firing pulverized coal is the tangential firing using four burners corner to corner to create a fire ball at the center of the furnace
[object Object],[object Object],[object Object],[object Object],[object Object],Pulverized Fuel Boiler  (Contd..)
Fluidized bed Combustion  (FBC)  boiler Further, increase in velocity gives rise to bubble formation, vigorous turbulence and rapid mixing and  the bed is said to be fluidized.   Coal is fed continuously in to a hot air agitated refractory sand bed,   the coal will burn rapidly and the  bed attains a uniform temperature Distributed air is passed upward through a bed of solid particles The particles are undisturbed at low velocity.As air velocity is increased, a stage is reached when the  particles are suspended in the air
Fluidised Bed Combustion
3. Modern power station boilers.   Modern power station boilers are all water tube boilers consisting essentially of a  combustion chamber  and an  economiser  where heat is transferred to boiler water, a  drum  where separation of steam and water takes place,  superheater  where superheat is given to saturated steam, gas ducts and air ducts supporting structure, pipe lines with fittings.
Convection Pass  Modern boilers are generally two pass units, the second pass being the convection pass where heat recovery units like  primary superheater ,  economiser  and  air heater  are placed. The convection pass is made of steel duct or in the form of tube wall.
 
FURNACE:   Furnace is the primary part of boiler where the chemical energy available in the fuel is converted to thermal energy by combustion.  Furnace is designed for efficient and complete combustion.   Major factors for efficient combustion are  time of fuel inside the furnace,  temperature inside the furnace  mixing between fuel and air.  The Other important feature of the furnace construction is to reduce the air infiltration.  This is to ensure sufficient air through the burners for efficient combustion, prevention of heat losses.
Type of furnaces:   ,[object Object],[object Object],[object Object]
[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
The tubes which makeup the walls contain a mixture of steam bubbles and water. This mixture being low dense than water in the down comers, rises rapidly and reaches back to the drum and its place is taken by the water flowing through down comers. This produces what we call is natural circulation.  The steam and water mixture which is returned to the drum is separated so that water only (with no steam bubbles) is returned to the down comers, and steam only(with no water droplets) passed to the super heaters.
2) Steam circuit  Dry steam from the  boiler drum  goes to the various  superheater  sections. Steam from the boiler drum passes through the  superheater connecting tubes  to the  primary superheater , which is positioned in the convection pass.  The steam then flows from the primary superheater outlet header to the  secondary superheater  located in the combustion chamber. Steam then goes to the  final superheater  which is located in the combustion chamber in the outlet section, it then leaves the final super heater outlet header and passes to the main stem pipe which has a boiler stop valve.
3)Air/gas circuit  To burn the fuel in the combustion chamber air is required. After combustion, the hot gases are to be evacuated from furnace through the heat absorbing surfaces. This air and gas flow is created by the boiler draught system, which may be either natural or mechanised.  The air drawn from the atmosphere is first routed through an air heater where air is heated by the outgoing flue gases. The hot air is then admitted to the furnace through wind box. In coal fired boilers part of this hot air is used for drying the coal in the pulvariser and transporting the pulvarised coal to furnace.  The gases pass through the radiant heat release zone and then through various superheaters and reheaters (in reheat boilers). Normally there will be a primary superheater and secondary superheater.
After passing through the air heater the flue gas goes to the chimney. In between the air heater and chimney it is customary to provide precipitator to remove the flyash from the flue gas (especially in coal fired boilers) and induced draught fans to suck out the flue gases from the furnace (in balanced draught/induced draught boilers).  water is the working medium which transfers the heat energy available in the fuel to the turbine in the form of steam.  22° C reduction in flue gas temperature increases boiler efficiency by 1%  
Water is chosen as the medium because of the following reasons. a) its easy availability  b) its low viscous property  c) it has high specific heat  d) Its non-reactivity with surfaces with which it comes in to contact.
The following can be termed as boiler pressure parts.  1. Boiler drum  2. Water walls  3. Superheaters  4. Reheaters and  5. Economisers
 
BOILER DRUM  The drum acts as reservoir for water & saturated steam and also provides separation and purification of steam.  The feed water to the drum reaches the drum from the boiler feed pump via the economizer.  A stronger material for use in boiler drums is Ducal W30.
Methods of Steam Separation:  1. By Gravity separation  This is employed for boilers having low generation rates.  2. By use of Baffles  These are in the form of obstacles in the direct path of steam towards outlet.
WATER WALL SYSTEM:  In the boiler the walls of the combustion chamber are formed by tubular wall sections which not only form the enclosure for the furnace but also provides the evaporating surface for the feed water.  The water from the boiler drum is admitted in to the water wall tubes through the downcomers and bottom ring headers.  As the water circulates through the waterwall tubes, which receive heat from the furnace radiation, water partially evaporates into steam.  Water-steam mixture then return back to the boiler drum.
SUPER HEATERS:  Super heaters (SH) are meant for raising the steam temperature above the saturation temperature.  The superheated and reheated steam temperature around 540°C and pressure 165 bar.  i) SH (Reheater also) can classified into convection and radiation type  as per heat transfer process.  The super heaters and reheaters which are placed above the furnace and can view the flame are called radiant type.  ii) Super heater may be classified also according to the shape of the tube banks and the position of the headers, such as pendant SH, platen SH, horizontal SH, Ceiling SH, wall SH etc.  iii) They may be classified according to their stages of superheating they perform, like primary SH, Secondary SH, Final SH etc.
Reheaters:  Reheaters (RH) are provided to raise the temperature of the steam from which part of energy has already been extracted by HP turbine.
De-superheaters:   Though super heaters are designed in such a way that heat absorbed by radiant and convection super heaters always try to maintain the steam temperature constant in practice the necessary control is achieved by using de-super heater.   All modern boiler contact type de-super heaters by which feed water are sprayed directly into the steam for required cooling.  Amount of feed water to be sprayed is controlled by automatic control system which is designed to maintain a set final steam temperature. Provision of manual control is also there for emergency.
ECONOMISERS:  The economiser absorbs heat from the flue gas and adds it mainly as sensible heat to the feed water.  The material used in the manufacture of furnace wall tubes for coal fired boiler is ordinary  carbon steel  but in the 500 MW oil fired units the major proportion of the furnace is constructed from the 1% Cr. ½% Mo Alloy.  In 660 MW units also this material is used for whole of the furnace.
[object Object],[object Object],[object Object],[object Object],[object Object]
[object Object],[object Object],[object Object],[object Object]
[object Object],[object Object],[object Object],[object Object]
AIR PREHEATER
[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
[object Object],[object Object],[object Object],[object Object]
[object Object],[object Object],[object Object],[object Object]
[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
 
Why Boiler Blow Down ? When water  evaporates   Dissolved solids gets concentrated and Solids precipitates on tubes. Reduces the heat transfer rate
Intermittent Blowdown ,[object Object],[object Object],[object Object],[object Object]
Continuous Blowdown ,[object Object],[object Object],[object Object]
The quantity of blow down required to control boiler water solids concentration is calculated by using the following formula: ( Continuous Blow down) TDS in feed water 300 ppm Steam 3 T/hr TDS(T) =0 TDS (C) =3000 ppm  Allowable ) Blow down flow rate=300x10%/3000 =1% :=1% of 3,000 = 30 kg/hr Blow down(B) Total Dissolved solids
Reduce Stack Temperature ,[object Object],[object Object],22 o  C reduction in flue gas temperature increases boiler efficiency by 1%
There are two methods of assessing boiler efficiency.   1)        The Direct Method:  Where the energy gain of the working fluid (water and steam) is compared with the energy content of the boiler fuel.  2)        The Indirect Method:   Where the efficiency is the difference between the losses and the energy input.   Performance Evaluation of Boilers   Boiler Efficiency Evaluation Method 1. Direct Method 2. Indirect Method
[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],Efficiency Calculation by Direct Method
Boiler efficiency (  ):  =  Q x (H  –  h)  x 100 (q x GCV)       Where  Q  =  Quantity of steam generated per hour (kg/hr) H  = Enthalpy of saturated steam (kcal/kg) h  = Enthalpy of feed water (kcal/kg) q  = Quantity of fuel used per hour (kg/hr) GCV  = Gross calorific value of the fuel (kcal/kg)   Boiler efficiency (  )=   8 TPH x1000Kg/Tx (665 – 85) x 100 1.8 TPH x 1000Kg/T x 3200   =  80.0%  
What are the losses that occur in a boiler? Feed water Blow down
Intermittent Blowdown ,[object Object],[object Object],[object Object],[object Object]
Continuous Blowdown ,[object Object],[object Object],[object Object]
Boiler Water Treatment   ,[object Object],[object Object],[object Object]
External Water Treatment ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Demineralization  ,[object Object],[object Object],[object Object],[object Object],[object Object]
De-aeration ,[object Object],[object Object],Deaerator
Boiler Replacement ,[object Object],[object Object],[object Object]

Contenu connexe

Tendances

Boiler mountings & accessories
Boiler mountings & accessoriesBoiler mountings & accessories
Boiler mountings & accessoriesMalav Patel
 
Boiling & condensation
Boiling & condensationBoiling & condensation
Boiling & condensationziad zohdy
 
AFBC BOILERS PERFORMANCE IMPROVEMENT
AFBC BOILERS PERFORMANCE IMPROVEMENTAFBC BOILERS PERFORMANCE IMPROVEMENT
AFBC BOILERS PERFORMANCE IMPROVEMENTManohar Tatwawadi
 
Steam Boilers OR Steam Generators
Steam Boilers OR Steam GeneratorsSteam Boilers OR Steam Generators
Steam Boilers OR Steam GeneratorsHrishikesh Devan
 
Velox boiler - high pressure boliers
Velox boiler - high pressure boliers Velox boiler - high pressure boliers
Velox boiler - high pressure boliers sajan gohel
 
Fbc fluidized bed combustion
Fbc fluidized bed combustionFbc fluidized bed combustion
Fbc fluidized bed combustionGulab Siraskar
 
Advantages and Disadvantages of VARS
Advantages and Disadvantages of VARSAdvantages and Disadvantages of VARS
Advantages and Disadvantages of VARSIan Louise Celestino
 
Steam Condenser performance and loss diagnostic
Steam Condenser performance and loss diagnosticSteam Condenser performance and loss diagnostic
Steam Condenser performance and loss diagnosticPichai Chaibamrung
 
Gas turbine-power-plant[1]
Gas turbine-power-plant[1]Gas turbine-power-plant[1]
Gas turbine-power-plant[1]Manish Sadhu
 
Steam Power Plant and Rankine Cycles
Steam Power Plant and Rankine CyclesSteam Power Plant and Rankine Cycles
Steam Power Plant and Rankine CyclesRidwanul Hoque
 
Boilers report
Boilers reportBoilers report
Boilers reportR.K. JAIN
 
BOILER OPERATION PPT.pptx
BOILER OPERATION PPT.pptxBOILER OPERATION PPT.pptx
BOILER OPERATION PPT.pptxSatwikSingh25
 
Condenser and Cooling Tower Power Plant Engineering
Condenser and Cooling Tower Power Plant EngineeringCondenser and Cooling Tower Power Plant Engineering
Condenser and Cooling Tower Power Plant EngineeringAjaypalsinh Barad
 
Steam turbine power plant
Steam turbine power plantSteam turbine power plant
Steam turbine power plantTarek Erin
 

Tendances (20)

CFBC boiler operation
CFBC boiler operationCFBC boiler operation
CFBC boiler operation
 
Boiler mountings & accessories
Boiler mountings & accessoriesBoiler mountings & accessories
Boiler mountings & accessories
 
Boiling & condensation
Boiling & condensationBoiling & condensation
Boiling & condensation
 
Boilers
BoilersBoilers
Boilers
 
AFBC BOILERS PERFORMANCE IMPROVEMENT
AFBC BOILERS PERFORMANCE IMPROVEMENTAFBC BOILERS PERFORMANCE IMPROVEMENT
AFBC BOILERS PERFORMANCE IMPROVEMENT
 
Steam Boilers OR Steam Generators
Steam Boilers OR Steam GeneratorsSteam Boilers OR Steam Generators
Steam Boilers OR Steam Generators
 
Boiler Operation and Maintenance Experiences
Boiler Operation and Maintenance ExperiencesBoiler Operation and Maintenance Experiences
Boiler Operation and Maintenance Experiences
 
Velox boiler - high pressure boliers
Velox boiler - high pressure boliers Velox boiler - high pressure boliers
Velox boiler - high pressure boliers
 
Fbc fluidized bed combustion
Fbc fluidized bed combustionFbc fluidized bed combustion
Fbc fluidized bed combustion
 
Advantages and Disadvantages of VARS
Advantages and Disadvantages of VARSAdvantages and Disadvantages of VARS
Advantages and Disadvantages of VARS
 
Heat pump presentation
Heat pump presentation Heat pump presentation
Heat pump presentation
 
Steam Condenser performance and loss diagnostic
Steam Condenser performance and loss diagnosticSteam Condenser performance and loss diagnostic
Steam Condenser performance and loss diagnostic
 
Gas turbine-power-plant[1]
Gas turbine-power-plant[1]Gas turbine-power-plant[1]
Gas turbine-power-plant[1]
 
Steam Power Plant and Rankine Cycles
Steam Power Plant and Rankine CyclesSteam Power Plant and Rankine Cycles
Steam Power Plant and Rankine Cycles
 
Boilers report
Boilers reportBoilers report
Boilers report
 
BOILER OPERATION PPT.pptx
BOILER OPERATION PPT.pptxBOILER OPERATION PPT.pptx
BOILER OPERATION PPT.pptx
 
Steam boiler
Steam boilerSteam boiler
Steam boiler
 
Pptfbc
PptfbcPptfbc
Pptfbc
 
Condenser and Cooling Tower Power Plant Engineering
Condenser and Cooling Tower Power Plant EngineeringCondenser and Cooling Tower Power Plant Engineering
Condenser and Cooling Tower Power Plant Engineering
 
Steam turbine power plant
Steam turbine power plantSteam turbine power plant
Steam turbine power plant
 

En vedette

BoilerS_____complete Introduction & Classification
BoilerS_____complete Introduction & ClassificationBoilerS_____complete Introduction & Classification
BoilerS_____complete Introduction & ClassificationHashim Hasnain Hadi
 
Boiler & It's Types
Boiler & It's Types Boiler & It's Types
Boiler & It's Types Ihsan Wassan
 
Steam boilers
Steam boilersSteam boilers
Steam boilerssarat7
 
Kota super thermal power plant,kstps ppt,RTU
Kota super thermal power plant,kstps ppt,RTUKota super thermal power plant,kstps ppt,RTU
Kota super thermal power plant,kstps ppt,RTUManohar Nagar
 
Trouble shooting vibration in a pulverised coal fired boiler
Trouble shooting vibration in a pulverised coal fired boilerTrouble shooting vibration in a pulverised coal fired boiler
Trouble shooting vibration in a pulverised coal fired boilerparthi2006
 
Coal Fired Boilers Efficiency
Coal Fired Boilers EfficiencyCoal Fired Boilers Efficiency
Coal Fired Boilers EfficiencyAdam_Szladow
 
Coal Fired Thermal Power Plants
Coal Fired Thermal Power Plants Coal Fired Thermal Power Plants
Coal Fired Thermal Power Plants Arnab Nandi
 
High pressure boilers 050,18,48
High pressure boilers 050,18,48High pressure boilers 050,18,48
High pressure boilers 050,18,48Maharshi Soni
 
Cfbc & pfbc technology ps jalkote-ea-0366
Cfbc & pfbc technology ps jalkote-ea-0366Cfbc & pfbc technology ps jalkote-ea-0366
Cfbc & pfbc technology ps jalkote-ea-0366vivektmax
 
Basics of steam boilers section b
Basics of steam boilers  section bBasics of steam boilers  section b
Basics of steam boilers section bAkshit Kohli
 
Modular fired heaters - A presentation by Esteem Projects at Refining India ...
Modular fired heaters -  A presentation by Esteem Projects at Refining India ...Modular fired heaters -  A presentation by Esteem Projects at Refining India ...
Modular fired heaters - A presentation by Esteem Projects at Refining India ...Tanveer Singh
 
B.tech i eme u 2 steam boilers
B.tech i eme u 2 steam boilersB.tech i eme u 2 steam boilers
B.tech i eme u 2 steam boilersRai University
 

En vedette (20)

BoilerS_____complete Introduction & Classification
BoilerS_____complete Introduction & ClassificationBoilerS_____complete Introduction & Classification
BoilerS_____complete Introduction & Classification
 
Boiler & It's Types
Boiler & It's Types Boiler & It's Types
Boiler & It's Types
 
Boiler operation
Boiler operationBoiler operation
Boiler operation
 
Steam boilers
Steam boilersSteam boilers
Steam boilers
 
Boiler Presentation
Boiler PresentationBoiler Presentation
Boiler Presentation
 
Boiler
BoilerBoiler
Boiler
 
boilers
boilersboilers
boilers
 
Boilers
BoilersBoilers
Boilers
 
Kota super thermal power plant,kstps ppt,RTU
Kota super thermal power plant,kstps ppt,RTUKota super thermal power plant,kstps ppt,RTU
Kota super thermal power plant,kstps ppt,RTU
 
Paras ppt
Paras pptParas ppt
Paras ppt
 
Trouble shooting vibration in a pulverised coal fired boiler
Trouble shooting vibration in a pulverised coal fired boilerTrouble shooting vibration in a pulverised coal fired boiler
Trouble shooting vibration in a pulverised coal fired boiler
 
Coal Fired Boilers Efficiency
Coal Fired Boilers EfficiencyCoal Fired Boilers Efficiency
Coal Fired Boilers Efficiency
 
Coal Fired Thermal Power Plants
Coal Fired Thermal Power Plants Coal Fired Thermal Power Plants
Coal Fired Thermal Power Plants
 
High pressure boilers 050,18,48
High pressure boilers 050,18,48High pressure boilers 050,18,48
High pressure boilers 050,18,48
 
Cfbc & pfbc technology ps jalkote-ea-0366
Cfbc & pfbc technology ps jalkote-ea-0366Cfbc & pfbc technology ps jalkote-ea-0366
Cfbc & pfbc technology ps jalkote-ea-0366
 
Boilers
BoilersBoilers
Boilers
 
Basics of steam boilers section b
Basics of steam boilers  section bBasics of steam boilers  section b
Basics of steam boilers section b
 
Modular fired heaters - A presentation by Esteem Projects at Refining India ...
Modular fired heaters -  A presentation by Esteem Projects at Refining India ...Modular fired heaters -  A presentation by Esteem Projects at Refining India ...
Modular fired heaters - A presentation by Esteem Projects at Refining India ...
 
High Pressure Boilers
High Pressure BoilersHigh Pressure Boilers
High Pressure Boilers
 
B.tech i eme u 2 steam boilers
B.tech i eme u 2 steam boilersB.tech i eme u 2 steam boilers
B.tech i eme u 2 steam boilers
 

Similaire à Boilers ps mrng sessn

Coal fired electric power plants23
Coal fired electric power plants23Coal fired electric power plants23
Coal fired electric power plants23Munna Sagar
 
Coalfiredelectricpowerplants23 131208122612-phpapp01
Coalfiredelectricpowerplants23 131208122612-phpapp01Coalfiredelectricpowerplants23 131208122612-phpapp01
Coalfiredelectricpowerplants23 131208122612-phpapp01arvind singh rathore
 
Steam-Power-Plant-updated.pdf engineering students
Steam-Power-Plant-updated.pdf engineering studentsSteam-Power-Plant-updated.pdf engineering students
Steam-Power-Plant-updated.pdf engineering studentsashokpradhan23
 
Ipe301 e steam generation unit
Ipe301 e steam generation unitIpe301 e steam generation unit
Ipe301 e steam generation unitK. M.
 
Steam Generator or Boilers
Steam Generator or BoilersSteam Generator or Boilers
Steam Generator or BoilersRidwanul Hoque
 
High pressure boilers (1)
High pressure boilers (1)High pressure boilers (1)
High pressure boilers (1)sneh patel
 
Water and fire tube boilers
Water and fire tube boilersWater and fire tube boilers
Water and fire tube boilersTariq Jamshaid
 
Boilers and its types systems and boilers water treatment
Boilers and its types systems and boilers water treatment Boilers and its types systems and boilers water treatment
Boilers and its types systems and boilers water treatment Salman Jailani
 
Steam boilers
Steam boilersSteam boilers
Steam boilerssing367
 
All about boilers: Complete Basics, Classification of boilers,types
All about boilers: Complete Basics, Classification of boilers,typesAll about boilers: Complete Basics, Classification of boilers,types
All about boilers: Complete Basics, Classification of boilers,typesHashim Hasnain Hadi
 
Study of Boilers for Mechanical Engineering
Study of Boilers for Mechanical EngineeringStudy of Boilers for Mechanical Engineering
Study of Boilers for Mechanical EngineeringAbdullahKafi18
 
Boiler definition types applications necessity and fuel used with pdf (1)
Boiler definition types applications necessity and fuel used with pdf (1)Boiler definition types applications necessity and fuel used with pdf (1)
Boiler definition types applications necessity and fuel used with pdf (1)BhaveshMhaskar
 
COAL BASED THERMAL POWER PLANTS (UNIT-1).pptx
COAL BASED THERMAL POWER PLANTS (UNIT-1).pptxCOAL BASED THERMAL POWER PLANTS (UNIT-1).pptx
COAL BASED THERMAL POWER PLANTS (UNIT-1).pptxCHANDRA KUMAR S
 
A technical overview of thermal power plant
A technical overview of thermal power plantA technical overview of thermal power plant
A technical overview of thermal power plantMirdul Amin Sarkar
 
STEAM GENERATORS.pptx
STEAM GENERATORS.pptxSTEAM GENERATORS.pptx
STEAM GENERATORS.pptxssusere6313f
 

Similaire à Boilers ps mrng sessn (20)

Coal fired electric power plants23
Coal fired electric power plants23Coal fired electric power plants23
Coal fired electric power plants23
 
Coalfiredelectricpowerplants23 131208122612-phpapp01
Coalfiredelectricpowerplants23 131208122612-phpapp01Coalfiredelectricpowerplants23 131208122612-phpapp01
Coalfiredelectricpowerplants23 131208122612-phpapp01
 
boilers
boilersboilers
boilers
 
Steam-Power-Plant-updated.pdf engineering students
Steam-Power-Plant-updated.pdf engineering studentsSteam-Power-Plant-updated.pdf engineering students
Steam-Power-Plant-updated.pdf engineering students
 
Ipe301 e steam generation unit
Ipe301 e steam generation unitIpe301 e steam generation unit
Ipe301 e steam generation unit
 
Steam Generator or Boilers
Steam Generator or BoilersSteam Generator or Boilers
Steam Generator or Boilers
 
High pressure boilers (1)
High pressure boilers (1)High pressure boilers (1)
High pressure boilers (1)
 
Water and fire tube boilers
Water and fire tube boilersWater and fire tube boilers
Water and fire tube boilers
 
boiler
boiler boiler
boiler
 
Boilers and its types systems and boilers water treatment
Boilers and its types systems and boilers water treatment Boilers and its types systems and boilers water treatment
Boilers and its types systems and boilers water treatment
 
Steam boilers
Steam boilersSteam boilers
Steam boilers
 
steam generator
steam generatorsteam generator
steam generator
 
All about boilers: Complete Basics, Classification of boilers,types
All about boilers: Complete Basics, Classification of boilers,typesAll about boilers: Complete Basics, Classification of boilers,types
All about boilers: Complete Basics, Classification of boilers,types
 
Ch.2
Ch.2Ch.2
Ch.2
 
Study of Boilers for Mechanical Engineering
Study of Boilers for Mechanical EngineeringStudy of Boilers for Mechanical Engineering
Study of Boilers for Mechanical Engineering
 
Boiler definition types applications necessity and fuel used with pdf (1)
Boiler definition types applications necessity and fuel used with pdf (1)Boiler definition types applications necessity and fuel used with pdf (1)
Boiler definition types applications necessity and fuel used with pdf (1)
 
COAL BASED THERMAL POWER PLANTS (UNIT-1).pptx
COAL BASED THERMAL POWER PLANTS (UNIT-1).pptxCOAL BASED THERMAL POWER PLANTS (UNIT-1).pptx
COAL BASED THERMAL POWER PLANTS (UNIT-1).pptx
 
Cochran boiler presentation
Cochran boiler presentationCochran boiler presentation
Cochran boiler presentation
 
A technical overview of thermal power plant
A technical overview of thermal power plantA technical overview of thermal power plant
A technical overview of thermal power plant
 
STEAM GENERATORS.pptx
STEAM GENERATORS.pptxSTEAM GENERATORS.pptx
STEAM GENERATORS.pptx
 

Dernier

Food safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdfFood safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdfSherif Taha
 
PROCESS RECORDING FORMAT.docx
PROCESS      RECORDING        FORMAT.docxPROCESS      RECORDING        FORMAT.docx
PROCESS RECORDING FORMAT.docxPoojaSen20
 
microwave assisted reaction. General introduction
microwave assisted reaction. General introductionmicrowave assisted reaction. General introduction
microwave assisted reaction. General introductionMaksud Ahmed
 
ICT Role in 21st Century Education & its Challenges.pptx
ICT Role in 21st Century Education & its Challenges.pptxICT Role in 21st Century Education & its Challenges.pptx
ICT Role in 21st Century Education & its Challenges.pptxAreebaZafar22
 
How to Manage Global Discount in Odoo 17 POS
How to Manage Global Discount in Odoo 17 POSHow to Manage Global Discount in Odoo 17 POS
How to Manage Global Discount in Odoo 17 POSCeline George
 
Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)Jisc
 
Key note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdfKey note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdfAdmir Softic
 
SKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptx
SKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptxSKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptx
SKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptxAmanpreet Kaur
 
Unit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptxUnit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptxVishalSingh1417
 
1029-Danh muc Sach Giao Khoa khoi 6.pdf
1029-Danh muc Sach Giao Khoa khoi  6.pdf1029-Danh muc Sach Giao Khoa khoi  6.pdf
1029-Danh muc Sach Giao Khoa khoi 6.pdfQucHHunhnh
 
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...christianmathematics
 
Unit-V; Pricing (Pharma Marketing Management).pptx
Unit-V; Pricing (Pharma Marketing Management).pptxUnit-V; Pricing (Pharma Marketing Management).pptx
Unit-V; Pricing (Pharma Marketing Management).pptxVishalSingh1417
 
Micro-Scholarship, What it is, How can it help me.pdf
Micro-Scholarship, What it is, How can it help me.pdfMicro-Scholarship, What it is, How can it help me.pdf
Micro-Scholarship, What it is, How can it help me.pdfPoh-Sun Goh
 
Dyslexia AI Workshop for Slideshare.pptx
Dyslexia AI Workshop for Slideshare.pptxDyslexia AI Workshop for Slideshare.pptx
Dyslexia AI Workshop for Slideshare.pptxcallscotland1987
 
How to Create and Manage Wizard in Odoo 17
How to Create and Manage Wizard in Odoo 17How to Create and Manage Wizard in Odoo 17
How to Create and Manage Wizard in Odoo 17Celine George
 
UGC NET Paper 1 Mathematical Reasoning & Aptitude.pdf
UGC NET Paper 1 Mathematical Reasoning & Aptitude.pdfUGC NET Paper 1 Mathematical Reasoning & Aptitude.pdf
UGC NET Paper 1 Mathematical Reasoning & Aptitude.pdfNirmal Dwivedi
 
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptxMaritesTamaniVerdade
 
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...Nguyen Thanh Tu Collection
 
Seal of Good Local Governance (SGLG) 2024Final.pptx
Seal of Good Local Governance (SGLG) 2024Final.pptxSeal of Good Local Governance (SGLG) 2024Final.pptx
Seal of Good Local Governance (SGLG) 2024Final.pptxnegromaestrong
 

Dernier (20)

Food safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdfFood safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdf
 
PROCESS RECORDING FORMAT.docx
PROCESS      RECORDING        FORMAT.docxPROCESS      RECORDING        FORMAT.docx
PROCESS RECORDING FORMAT.docx
 
microwave assisted reaction. General introduction
microwave assisted reaction. General introductionmicrowave assisted reaction. General introduction
microwave assisted reaction. General introduction
 
ICT Role in 21st Century Education & its Challenges.pptx
ICT Role in 21st Century Education & its Challenges.pptxICT Role in 21st Century Education & its Challenges.pptx
ICT Role in 21st Century Education & its Challenges.pptx
 
How to Manage Global Discount in Odoo 17 POS
How to Manage Global Discount in Odoo 17 POSHow to Manage Global Discount in Odoo 17 POS
How to Manage Global Discount in Odoo 17 POS
 
Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)
 
Key note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdfKey note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdf
 
SKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptx
SKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptxSKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptx
SKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptx
 
Unit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptxUnit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptx
 
1029-Danh muc Sach Giao Khoa khoi 6.pdf
1029-Danh muc Sach Giao Khoa khoi  6.pdf1029-Danh muc Sach Giao Khoa khoi  6.pdf
1029-Danh muc Sach Giao Khoa khoi 6.pdf
 
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
 
Unit-V; Pricing (Pharma Marketing Management).pptx
Unit-V; Pricing (Pharma Marketing Management).pptxUnit-V; Pricing (Pharma Marketing Management).pptx
Unit-V; Pricing (Pharma Marketing Management).pptx
 
Micro-Scholarship, What it is, How can it help me.pdf
Micro-Scholarship, What it is, How can it help me.pdfMicro-Scholarship, What it is, How can it help me.pdf
Micro-Scholarship, What it is, How can it help me.pdf
 
Dyslexia AI Workshop for Slideshare.pptx
Dyslexia AI Workshop for Slideshare.pptxDyslexia AI Workshop for Slideshare.pptx
Dyslexia AI Workshop for Slideshare.pptx
 
How to Create and Manage Wizard in Odoo 17
How to Create and Manage Wizard in Odoo 17How to Create and Manage Wizard in Odoo 17
How to Create and Manage Wizard in Odoo 17
 
UGC NET Paper 1 Mathematical Reasoning & Aptitude.pdf
UGC NET Paper 1 Mathematical Reasoning & Aptitude.pdfUGC NET Paper 1 Mathematical Reasoning & Aptitude.pdf
UGC NET Paper 1 Mathematical Reasoning & Aptitude.pdf
 
Asian American Pacific Islander Month DDSD 2024.pptx
Asian American Pacific Islander Month DDSD 2024.pptxAsian American Pacific Islander Month DDSD 2024.pptx
Asian American Pacific Islander Month DDSD 2024.pptx
 
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
 
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
 
Seal of Good Local Governance (SGLG) 2024Final.pptx
Seal of Good Local Governance (SGLG) 2024Final.pptxSeal of Good Local Governance (SGLG) 2024Final.pptx
Seal of Good Local Governance (SGLG) 2024Final.pptx
 

Boilers ps mrng sessn

  • 1. A PRESENTATION ON BOILERS
  • 2. Boiler is a closed vessel in which water under pressure is transferred into steam by the application of heat. In the furnace, the chemical energy in the fuel is converted into heat. It is the function of the boiler to transfer this heat to the water in the most efficient manner. A boiler should be designed to absorb the maximum amount of heat released in the process of combustion.
  • 3.
  • 4. 1.Fire Tube boiler In boilers of this type most of the work is done by the heat transfer from hot combustion products flowing inside the tubes to the water surrounding the tubes. They may also be called as shell boilers. Fire tube boilers feature simple and rugged construction and are relatively cheaper. The maximum design working pressure for fire tube boilers is limited to 17-kg/square centimeter (approx.)
  • 5.
  • 6.
  • 7. Packaged Boiler Package boilers are generally of shell type with fire tube design More number of passes-so more heat transfer Large number of small diameter tubes leading to good convective heat transfer. Higher thermal efficiency
  • 8.
  • 9.
  • 10. Pulverized Fuel Boiler Tangential firing Coal is pulverised to a fine powder, so that less than 2% is +300 microns, and 70-75% is below 75 microns. Coal is blown with part of the combustion air into the boiler plant through a series of burner nozzles. Combustion temperatures from 1300-1700°C Particle residence time in the boiler is 2-5 seconds Most popular system for firing pulverized coal is the tangential firing using four burners corner to corner to create a fire ball at the center of the furnace
  • 11.
  • 12. Fluidized bed Combustion (FBC) boiler Further, increase in velocity gives rise to bubble formation, vigorous turbulence and rapid mixing and the bed is said to be fluidized. Coal is fed continuously in to a hot air agitated refractory sand bed, the coal will burn rapidly and the bed attains a uniform temperature Distributed air is passed upward through a bed of solid particles The particles are undisturbed at low velocity.As air velocity is increased, a stage is reached when the particles are suspended in the air
  • 14. 3. Modern power station boilers. Modern power station boilers are all water tube boilers consisting essentially of a combustion chamber and an economiser where heat is transferred to boiler water, a drum where separation of steam and water takes place, superheater where superheat is given to saturated steam, gas ducts and air ducts supporting structure, pipe lines with fittings.
  • 15. Convection Pass Modern boilers are generally two pass units, the second pass being the convection pass where heat recovery units like primary superheater , economiser and air heater are placed. The convection pass is made of steel duct or in the form of tube wall.
  • 16.  
  • 17. FURNACE: Furnace is the primary part of boiler where the chemical energy available in the fuel is converted to thermal energy by combustion. Furnace is designed for efficient and complete combustion. Major factors for efficient combustion are time of fuel inside the furnace, temperature inside the furnace mixing between fuel and air. The Other important feature of the furnace construction is to reduce the air infiltration. This is to ensure sufficient air through the burners for efficient combustion, prevention of heat losses.
  • 18.
  • 19.
  • 20. The tubes which makeup the walls contain a mixture of steam bubbles and water. This mixture being low dense than water in the down comers, rises rapidly and reaches back to the drum and its place is taken by the water flowing through down comers. This produces what we call is natural circulation. The steam and water mixture which is returned to the drum is separated so that water only (with no steam bubbles) is returned to the down comers, and steam only(with no water droplets) passed to the super heaters.
  • 21. 2) Steam circuit Dry steam from the boiler drum goes to the various superheater sections. Steam from the boiler drum passes through the superheater connecting tubes to the primary superheater , which is positioned in the convection pass. The steam then flows from the primary superheater outlet header to the secondary superheater located in the combustion chamber. Steam then goes to the final superheater which is located in the combustion chamber in the outlet section, it then leaves the final super heater outlet header and passes to the main stem pipe which has a boiler stop valve.
  • 22. 3)Air/gas circuit To burn the fuel in the combustion chamber air is required. After combustion, the hot gases are to be evacuated from furnace through the heat absorbing surfaces. This air and gas flow is created by the boiler draught system, which may be either natural or mechanised. The air drawn from the atmosphere is first routed through an air heater where air is heated by the outgoing flue gases. The hot air is then admitted to the furnace through wind box. In coal fired boilers part of this hot air is used for drying the coal in the pulvariser and transporting the pulvarised coal to furnace. The gases pass through the radiant heat release zone and then through various superheaters and reheaters (in reheat boilers). Normally there will be a primary superheater and secondary superheater.
  • 23. After passing through the air heater the flue gas goes to the chimney. In between the air heater and chimney it is customary to provide precipitator to remove the flyash from the flue gas (especially in coal fired boilers) and induced draught fans to suck out the flue gases from the furnace (in balanced draught/induced draught boilers). water is the working medium which transfers the heat energy available in the fuel to the turbine in the form of steam. 22° C reduction in flue gas temperature increases boiler efficiency by 1%  
  • 24. Water is chosen as the medium because of the following reasons. a) its easy availability b) its low viscous property c) it has high specific heat d) Its non-reactivity with surfaces with which it comes in to contact.
  • 25. The following can be termed as boiler pressure parts. 1. Boiler drum 2. Water walls 3. Superheaters 4. Reheaters and 5. Economisers
  • 26.  
  • 27. BOILER DRUM The drum acts as reservoir for water & saturated steam and also provides separation and purification of steam. The feed water to the drum reaches the drum from the boiler feed pump via the economizer. A stronger material for use in boiler drums is Ducal W30.
  • 28. Methods of Steam Separation: 1. By Gravity separation This is employed for boilers having low generation rates. 2. By use of Baffles These are in the form of obstacles in the direct path of steam towards outlet.
  • 29. WATER WALL SYSTEM: In the boiler the walls of the combustion chamber are formed by tubular wall sections which not only form the enclosure for the furnace but also provides the evaporating surface for the feed water. The water from the boiler drum is admitted in to the water wall tubes through the downcomers and bottom ring headers. As the water circulates through the waterwall tubes, which receive heat from the furnace radiation, water partially evaporates into steam. Water-steam mixture then return back to the boiler drum.
  • 30. SUPER HEATERS: Super heaters (SH) are meant for raising the steam temperature above the saturation temperature. The superheated and reheated steam temperature around 540°C and pressure 165 bar. i) SH (Reheater also) can classified into convection and radiation type as per heat transfer process. The super heaters and reheaters which are placed above the furnace and can view the flame are called radiant type. ii) Super heater may be classified also according to the shape of the tube banks and the position of the headers, such as pendant SH, platen SH, horizontal SH, Ceiling SH, wall SH etc. iii) They may be classified according to their stages of superheating they perform, like primary SH, Secondary SH, Final SH etc.
  • 31. Reheaters: Reheaters (RH) are provided to raise the temperature of the steam from which part of energy has already been extracted by HP turbine.
  • 32. De-superheaters: Though super heaters are designed in such a way that heat absorbed by radiant and convection super heaters always try to maintain the steam temperature constant in practice the necessary control is achieved by using de-super heater. All modern boiler contact type de-super heaters by which feed water are sprayed directly into the steam for required cooling. Amount of feed water to be sprayed is controlled by automatic control system which is designed to maintain a set final steam temperature. Provision of manual control is also there for emergency.
  • 33. ECONOMISERS: The economiser absorbs heat from the flue gas and adds it mainly as sensible heat to the feed water. The material used in the manufacture of furnace wall tubes for coal fired boiler is ordinary carbon steel but in the 500 MW oil fired units the major proportion of the furnace is constructed from the 1% Cr. ½% Mo Alloy. In 660 MW units also this material is used for whole of the furnace.
  • 34.
  • 35.
  • 36.
  • 38.
  • 39.
  • 40.
  • 41.
  • 42.
  • 43.  
  • 44. Why Boiler Blow Down ? When water evaporates Dissolved solids gets concentrated and Solids precipitates on tubes. Reduces the heat transfer rate
  • 45.
  • 46.
  • 47. The quantity of blow down required to control boiler water solids concentration is calculated by using the following formula: ( Continuous Blow down) TDS in feed water 300 ppm Steam 3 T/hr TDS(T) =0 TDS (C) =3000 ppm Allowable ) Blow down flow rate=300x10%/3000 =1% :=1% of 3,000 = 30 kg/hr Blow down(B) Total Dissolved solids
  • 48.
  • 49. There are two methods of assessing boiler efficiency.   1)       The Direct Method: Where the energy gain of the working fluid (water and steam) is compared with the energy content of the boiler fuel.  2)       The Indirect Method: Where the efficiency is the difference between the losses and the energy input.   Performance Evaluation of Boilers Boiler Efficiency Evaluation Method 1. Direct Method 2. Indirect Method
  • 50.
  • 51. Boiler efficiency (  ): = Q x (H – h) x 100 (q x GCV)   Where Q = Quantity of steam generated per hour (kg/hr) H = Enthalpy of saturated steam (kcal/kg) h = Enthalpy of feed water (kcal/kg) q = Quantity of fuel used per hour (kg/hr) GCV = Gross calorific value of the fuel (kcal/kg)   Boiler efficiency (  )= 8 TPH x1000Kg/Tx (665 – 85) x 100 1.8 TPH x 1000Kg/T x 3200 = 80.0%  
  • 52. What are the losses that occur in a boiler? Feed water Blow down
  • 53.
  • 54.
  • 55.
  • 56.
  • 57.
  • 58.
  • 59.