SlideShare une entreprise Scribd logo
1  sur  21
A
PRESENTATION
ON
MAGNETO HYDRO DYNAMIC POWER
GENERATION (MHD POWER GENERATION)
A SEMINAR IN PARTIAL FULFILLMENT OF THE REQUIREMENT FOR THE AWARD OF THE DEGREE OF
BACHELOR OF TECHNOLOGY
IN
ELECTRICAL ENGINEERING
FROM
BABU BANARASI DAS NATIONAL INSTITUTE OF TECHNOLOGY & MANAGEMENT (LUCKNOW)
AFFILIATED WITH APJ AKTU
SUBMITTED BY SUBMITTED TO
MRINALINI SRIVASTAVARISHASBH DEV SINGH
CONTENTS
o INTRODUCTION
o PRINCIPLE
o WORKING
o VARIOUS SYSTEM
o ADVANTAGES
o LIMITATIONS
o PROBLEMS ENCOUNTERED
o CONCLUSION
INTRODUCTION
MHD power generation is a new system of electric power
generation which is said to be of high efficiency and low
pollution.
As its name implies, Magneto Hydro Dynamics (MHD)
concerned with the flow of a conducting fluid in the presence of
magnetic and electric field. The fluid may be gas at elevated
temperatures or liquid metals like sodium or potassium.
Magnetohydrodynamics (MHD) (magneto fluid
dynamics or hydromagnetics) is the study of
the dynamics of electrically conducting fluids.
Examples of such fluids include plasmas, liquid metals,
and salt water or electrolytes.
The field of MHD was initiated by Hannes Alfven, for which
he received the Noble Prize in Physics in 1970.
PRINCIPLES OF MHD POWER GENERATION
When an conductor moves across a magnetic field, a
voltage is induced in it which produces an electric current.
This is the principle of the conventional generator where the
conductors consist of copper strips.
In MHD generator, the solid conductors are replaced by a
gaseous conductor, an ionized gas. If such a gas is passed at a
high velocity through a powerful magnetic field, a current is
generated and can be extracted by placing electrodes in
suitable position in the stream.
The principle can be explained as follows: An conductor
moving through a magnetic field experiences a retarding force as
well as an induced electric field and current
PRINCIPLE OF MHD POWER GENERATION
The flow direction is right angles to the magnetic fields
direction. An electromotive force (or electric voltage) is
induced in the direction at right angles to both flow and
field directions.
WORKING OF MHD POWER GENERATION
WORKING OF MHD POWER GENERATION
• The conducting flow fluid is forced between the plates with a kinetic
energy and pressure differential sufficient to over come the magnetic
induction force.
• An ionized gas is employed as the conducting fluid.
• Ionization is produced either by thermal means I.e. by an elevated
temperature or by seeding with substance like cesium or potassium
vapors which ionizes at relatively low temperatures.
• The atoms of seed element split off electrons. The presence of the
negatively charged electrons makes the gas an electrical conductor.
• The end view drawing illustrates the construction of the flow
channel.
VARIOUS MHD SYSTEMS
The MHD systems are broadly classified into two types.
• OPEN CYCLE SYSTEM
• CLOSED CYCLE SYSTEM
• Seeded inert gas system
• Liquid metal system
OPEN CYCLE SYSTEM
• The fuel used maybe oil through an oil tank or gasified coal
through a coal gasification plant.
• The fuel (coal, oil or natural gas) is burnt in the combustor or
combustion chamber.
• The hot gases from combustor is then seeded with a small
amount of ionized alkali metal (cesium or potassium) to
increase the electrical conductivity of the gas.
• The seed material, generally potassium carbonate is injected
into the combustion chamber, the potassium is then ionized by
the hot combustion gases at temperature of roughly 2300’ c to
2700’c.
OPEN CYCLE SYSTEM
• To attain such high temperatures, the compressed air is
used to burn the coal in the combustion chamber, must be
adequate to at least 1100’c.
• The hot pressurized working fluid living in the combustor
flows through a convergent divergent nozzle. In passing
through the nozzle, the random motion energy of the
molecules in the hot gas is largely converted into directed,
mass of energy. Thus , the gas emerges from the nozzle and
enters the MHD generator unit at a high velocity.
CLOSED CYCLE SYSTEM
• Two general types of closed cycle MHD generators are
being investigated.
• Seeded Inert Gas System
• Liquid Metal System
CLOSED CYCLE SYSTEM
SEEDED INERT GAS SYSTEM
• In a closed cycle system the carrier gas operates in the form of
Brayton cycle. In a closed cycle system the gas is compressed
and heat is supplied by the source, at essentially constant
pressure, the compressed gas then expands in the MHD
generator, and its pressure and temperature fall.
• After leaving this generator heat is removed from the gas by a
cooler, this is the heat rejection stage of the cycle. Finally the
gas is recompressed and returned for reheating.
LIQUID METAL SYSTEM
• When a liquid metal provides the electrical conductivity, it is
called a liquid metal MHD system.
• The carrier gas is pressurized and heated by passage through
a heat exchanger within combustion chamber. The hot gas is
then incorporated into the liquid metal usually hot sodium or
Lithium to form the working fluid.
• The working fluid is introduced into the MHD generator
through a nozzle in the usual ways. The carrier gas then
provides the required high direct velocity of the electrical
conductor.
ADVANTAGES
• The conversion efficiency of a MHD system can be around
50% much higher compared to the most efficient steam
plants.
• Large amount of power is generated.
• It has no moving parts, so more reliable.
• The closed cycle system produces power, free of pollution.
• It has ability to reach the full power level as soon as started.
• The size of the plant is considerably smaller than
conventional fossil fuel plants.
LIMITATIONS
• The metallic vapours are poor electrical conductors.
• High velocities cannot be obtained by expansion in the system
while it is much easier to achieve a high fluid velocity .
• employing a gas and a nozzle. This is because the liquids are
practically in compressible.
• The overall conversions efficiencies obtainable with liquid metal
system are quite below to that of plasma system.
APPLICATIONS
• Laser power MHD Generators.
• Plasma physics applications.
• Power generation in space crafts.
• Hypersonic wind tunnel experiments.
• Defense applications.
CONCLUSION
This power resource play a minor role presently and its use
on a vast scale is yet to be confirmed as it is in its childhood
stage.
These systems permit better fuel utilization. The reduced
fuel consumption would offer additional economic and special
benefits and would also lead to conservation of energy
resources.
The magneto hydro dynamic power generation is one of
the examples of a new unique method of generation of
electricity.
REFERANCES
• http://www.wikipedia.org
• Faraday, M. (1832). "Experimental Researches in Electricity." First
Series, Philosophical Transactions of the Royal Society, pp. 125–162.
• Sutton, George W., and Sherman, Arthur (1965) Engineering
Magnetohydrodynamics, McGraw-Hill Book Company, New York, OCLC
537669
• Popa, C. and Sritharan, S. S. (2003) "Fluid-magnetic splitting methods for
magneto-hydrodynamics" Mathematical Methods and Models in Applied
Sciences 13(6): pp. 893–917.
• Roberts, Paul H. (1967) An Introduction to
Magnetohydrodynamics Longmans Green, London, OCLC 489632043
• Rosa, Richard J. (1987) Magnetohydrodynamic Energy Conversion (2nd
edition) Hemisphere Publishing, Washington, D.C., ISBN 0-89116-690-4
THANK YOU…

Contenu connexe

Tendances

Mhd power generation
Mhd power  generationMhd power  generation
Mhd power generationHiren Mahida
 
MHD Power generation
MHD Power generationMHD Power generation
MHD Power generationYash Patel
 
Vijay patel mhd system
Vijay patel mhd systemVijay patel mhd system
Vijay patel mhd systemvijaypatel339
 
Magneto hydrodynamic power generation (mhd)
Magneto hydrodynamic power generation (mhd)Magneto hydrodynamic power generation (mhd)
Magneto hydrodynamic power generation (mhd)Ananta Hossain
 
Magneto hydro dynamic (mhd) power generation
Magneto hydro dynamic (mhd) power generation Magneto hydro dynamic (mhd) power generation
Magneto hydro dynamic (mhd) power generation AJOVE
 
Magneto hydro dynamic power generation system(mhd)
Magneto hydro dynamic power generation system(mhd)Magneto hydro dynamic power generation system(mhd)
Magneto hydro dynamic power generation system(mhd)Muzamil Mir
 
MHD power generator ppt
MHD power generator ppt MHD power generator ppt
MHD power generator ppt nilesh choubey
 
Presentation1
Presentation1Presentation1
Presentation1Richa Rai
 
(Mhd ) by prem
(Mhd ) by prem (Mhd ) by prem
(Mhd ) by prem Prem Kumar
 
Case Study of MHD Generator for Power Generation and High Speed Propulsion
Case Study of MHD Generator for Power Generation and High  Speed PropulsionCase Study of MHD Generator for Power Generation and High  Speed Propulsion
Case Study of MHD Generator for Power Generation and High Speed PropulsionIJMER
 
MHD Power Generation
MHD Power GenerationMHD Power Generation
MHD Power GenerationRohan Ranjane
 
Magneto hydrodynamic generator
Magneto hydrodynamic generatorMagneto hydrodynamic generator
Magneto hydrodynamic generatorAadi Raja
 
Magnetohydrodynamic power generation
Magnetohydrodynamic power generation Magnetohydrodynamic power generation
Magnetohydrodynamic power generation VademPuneeth
 
MHD wind energy conversion
MHD wind energy conversionMHD wind energy conversion
MHD wind energy conversionHera Khwaja
 

Tendances (20)

MHD GROUP 08
MHD  GROUP 08MHD  GROUP 08
MHD GROUP 08
 
Mhd power generation
Mhd power  generationMhd power  generation
Mhd power generation
 
MHD Power generation
MHD Power generationMHD Power generation
MHD Power generation
 
Vijay patel mhd system
Vijay patel mhd systemVijay patel mhd system
Vijay patel mhd system
 
Thermal ionization in MHD generator
Thermal ionization in MHD generatorThermal ionization in MHD generator
Thermal ionization in MHD generator
 
Magneto hydrodynamic power generation (mhd)
Magneto hydrodynamic power generation (mhd)Magneto hydrodynamic power generation (mhd)
Magneto hydrodynamic power generation (mhd)
 
Magneto hydro dynamic (mhd) power generation
Magneto hydro dynamic (mhd) power generation Magneto hydro dynamic (mhd) power generation
Magneto hydro dynamic (mhd) power generation
 
Magneto hydro dynamic power generation system(mhd)
Magneto hydro dynamic power generation system(mhd)Magneto hydro dynamic power generation system(mhd)
Magneto hydro dynamic power generation system(mhd)
 
MHD power generator ppt
MHD power generator ppt MHD power generator ppt
MHD power generator ppt
 
MHD power generation
MHD power generationMHD power generation
MHD power generation
 
Magneto Hydro Dynamic Generator
Magneto Hydro Dynamic GeneratorMagneto Hydro Dynamic Generator
Magneto Hydro Dynamic Generator
 
Presentation1
Presentation1Presentation1
Presentation1
 
(Mhd ) by prem
(Mhd ) by prem (Mhd ) by prem
(Mhd ) by prem
 
Case Study of MHD Generator for Power Generation and High Speed Propulsion
Case Study of MHD Generator for Power Generation and High  Speed PropulsionCase Study of MHD Generator for Power Generation and High  Speed Propulsion
Case Study of MHD Generator for Power Generation and High Speed Propulsion
 
Magneto hydro dynamic Power Generation
Magneto hydro dynamic Power GenerationMagneto hydro dynamic Power Generation
Magneto hydro dynamic Power Generation
 
MHD Power Generation
MHD Power GenerationMHD Power Generation
MHD Power Generation
 
Magnetohydrodynamics(mhd) hkr
Magnetohydrodynamics(mhd) hkrMagnetohydrodynamics(mhd) hkr
Magnetohydrodynamics(mhd) hkr
 
Magneto hydrodynamic generator
Magneto hydrodynamic generatorMagneto hydrodynamic generator
Magneto hydrodynamic generator
 
Magnetohydrodynamic power generation
Magnetohydrodynamic power generation Magnetohydrodynamic power generation
Magnetohydrodynamic power generation
 
MHD wind energy conversion
MHD wind energy conversionMHD wind energy conversion
MHD wind energy conversion
 

En vedette

Magneto hydro-dynamic-power-generation-mhd
Magneto hydro-dynamic-power-generation-mhdMagneto hydro-dynamic-power-generation-mhd
Magneto hydro-dynamic-power-generation-mhdAnkur Mahajan
 
Magneto hydro dynamic (mhd) power generation
Magneto hydro dynamic (mhd) power generationMagneto hydro dynamic (mhd) power generation
Magneto hydro dynamic (mhd) power generationHemanth Duru
 
Seminar Report on MHD (Magneto Hydro Dynamics)
Seminar Report on MHD (Magneto Hydro Dynamics)Seminar Report on MHD (Magneto Hydro Dynamics)
Seminar Report on MHD (Magneto Hydro Dynamics)Ravi Anand
 
Mhd propulsion thruster (2)
Mhd propulsion thruster (2)Mhd propulsion thruster (2)
Mhd propulsion thruster (2)sheejusam
 
Systèmes de Gestion de Bibliothèque - une nouvelle génération?
Systèmes de Gestion de Bibliothèque - une nouvelle génération?Systèmes de Gestion de Bibliothèque - une nouvelle génération?
Systèmes de Gestion de Bibliothèque - une nouvelle génération?Nicolas Morin
 
Small and medium scale LNG for power generation
Small and medium scale LNG for power generationSmall and medium scale LNG for power generation
Small and medium scale LNG for power generationSmart Power Generation
 
Apostila mig mag
Apostila mig magApostila mig mag
Apostila mig magEric Castro
 
1 absorcion y desorcion de gases
1 absorcion y desorcion de gases1 absorcion y desorcion de gases
1 absorcion y desorcion de gasesiqlfsd
 
2013 09-16-présentation meadows-c. mangeant
2013 09-16-présentation meadows-c. mangeant2013 09-16-présentation meadows-c. mangeant
2013 09-16-présentation meadows-c. mangeantThe Shift Project
 
Perspectives pour les renouvables (Outlook for renewable energy; French only)
Perspectives pour les renouvables (Outlook for renewable energy; French only)Perspectives pour les renouvables (Outlook for renewable energy; French only)
Perspectives pour les renouvables (Outlook for renewable energy; French only)International Energy Agency
 
Plásticos Power Point
Plásticos Power PointPlásticos Power Point
Plásticos Power PointCintia E
 
La place du power-to-gas dans le système énergétique futur
La place du power-to-gas dans le système énergétique futurLa place du power-to-gas dans le système énergétique futur
La place du power-to-gas dans le système énergétique futurVéronique SEEL (Michaut)
 

En vedette (15)

Magneto hydro-dynamic-power-generation-mhd
Magneto hydro-dynamic-power-generation-mhdMagneto hydro-dynamic-power-generation-mhd
Magneto hydro-dynamic-power-generation-mhd
 
MHD-PPT
MHD-PPTMHD-PPT
MHD-PPT
 
Magneto hydro dynamic (mhd) power generation
Magneto hydro dynamic (mhd) power generationMagneto hydro dynamic (mhd) power generation
Magneto hydro dynamic (mhd) power generation
 
Seminar Report on MHD (Magneto Hydro Dynamics)
Seminar Report on MHD (Magneto Hydro Dynamics)Seminar Report on MHD (Magneto Hydro Dynamics)
Seminar Report on MHD (Magneto Hydro Dynamics)
 
Mhd propulsion thruster (2)
Mhd propulsion thruster (2)Mhd propulsion thruster (2)
Mhd propulsion thruster (2)
 
Systèmes de Gestion de Bibliothèque - une nouvelle génération?
Systèmes de Gestion de Bibliothèque - une nouvelle génération?Systèmes de Gestion de Bibliothèque - une nouvelle génération?
Systèmes de Gestion de Bibliothèque - une nouvelle génération?
 
Small and medium scale LNG for power generation
Small and medium scale LNG for power generationSmall and medium scale LNG for power generation
Small and medium scale LNG for power generation
 
Apostila mig mag
Apostila mig magApostila mig mag
Apostila mig mag
 
1 absorcion y desorcion de gases
1 absorcion y desorcion de gases1 absorcion y desorcion de gases
1 absorcion y desorcion de gases
 
2013 09-16-présentation meadows-c. mangeant
2013 09-16-présentation meadows-c. mangeant2013 09-16-présentation meadows-c. mangeant
2013 09-16-présentation meadows-c. mangeant
 
Perspectives pour les renouvables (Outlook for renewable energy; French only)
Perspectives pour les renouvables (Outlook for renewable energy; French only)Perspectives pour les renouvables (Outlook for renewable energy; French only)
Perspectives pour les renouvables (Outlook for renewable energy; French only)
 
Manual de practicas de soldadura
Manual de practicas de soldaduraManual de practicas de soldadura
Manual de practicas de soldadura
 
Soldadura mig
Soldadura migSoldadura mig
Soldadura mig
 
Plásticos Power Point
Plásticos Power PointPlásticos Power Point
Plásticos Power Point
 
La place du power-to-gas dans le système énergétique futur
La place du power-to-gas dans le système énergétique futurLa place du power-to-gas dans le système énergétique futur
La place du power-to-gas dans le système énergétique futur
 

Similaire à Magneto hydro dynamic power generation (mhd power generation)

Ch 12 MHD power generation
Ch 12 MHD power generationCh 12 MHD power generation
Ch 12 MHD power generationTadviDevarshi
 
Magneto hydro-dynamic technology
Magneto hydro-dynamic technologyMagneto hydro-dynamic technology
Magneto hydro-dynamic technologyEr Madhuri More
 
100006310_230718_175122.pdf
100006310_230718_175122.pdf100006310_230718_175122.pdf
100006310_230718_175122.pdfShahnawaz742629
 
209344301-Magneto-Hydro-Dynamic-Power-Generation-Mhd.pptx
209344301-Magneto-Hydro-Dynamic-Power-Generation-Mhd.pptx209344301-Magneto-Hydro-Dynamic-Power-Generation-Mhd.pptx
209344301-Magneto-Hydro-Dynamic-Power-Generation-Mhd.pptxbushrajameel88
 
Presentation1
Presentation1Presentation1
Presentation1Richa Rai
 
Magneto Hydro Dynamic & Thermo Electric Generators.pptx
Magneto Hydro Dynamic & Thermo Electric Generators.pptxMagneto Hydro Dynamic & Thermo Electric Generators.pptx
Magneto Hydro Dynamic & Thermo Electric Generators.pptxDhivya Ramachandran
 
Recent Trends In Power Generation
Recent Trends In Power GenerationRecent Trends In Power Generation
Recent Trends In Power GenerationGowtham MG
 
magneto-hydro-dynamic-power-generation.pptx
magneto-hydro-dynamic-power-generation.pptxmagneto-hydro-dynamic-power-generation.pptx
magneto-hydro-dynamic-power-generation.pptxAravindAG7
 
Magneto hydrodynamics power generation
Magneto hydrodynamics power generationMagneto hydrodynamics power generation
Magneto hydrodynamics power generationPratik Potdar
 
Cycle analysis of magneto hydro dynamic
Cycle analysis of magneto hydro dynamicCycle analysis of magneto hydro dynamic
Cycle analysis of magneto hydro dynamicghodasara janak
 
performance evaluation of mhd renewable energy source for electric power gene...
performance evaluation of mhd renewable energy source for electric power gene...performance evaluation of mhd renewable energy source for electric power gene...
performance evaluation of mhd renewable energy source for electric power gene...EECJOURNAL
 

Similaire à Magneto hydro dynamic power generation (mhd power generation) (18)

.pptx
.pptx.pptx
.pptx
 
Ch 12 MHD power generation
Ch 12 MHD power generationCh 12 MHD power generation
Ch 12 MHD power generation
 
Magneto hydro-dynamic technology
Magneto hydro-dynamic technologyMagneto hydro-dynamic technology
Magneto hydro-dynamic technology
 
140120119240 2181910
140120119240 2181910140120119240 2181910
140120119240 2181910
 
100006310_230718_175122.pdf
100006310_230718_175122.pdf100006310_230718_175122.pdf
100006310_230718_175122.pdf
 
209344301-Magneto-Hydro-Dynamic-Power-Generation-Mhd.pptx
209344301-Magneto-Hydro-Dynamic-Power-Generation-Mhd.pptx209344301-Magneto-Hydro-Dynamic-Power-Generation-Mhd.pptx
209344301-Magneto-Hydro-Dynamic-Power-Generation-Mhd.pptx
 
Mhd by nikhil samudre
Mhd by nikhil samudreMhd by nikhil samudre
Mhd by nikhil samudre
 
Presentation1
Presentation1Presentation1
Presentation1
 
140120119187 2181910
140120119187 2181910140120119187 2181910
140120119187 2181910
 
Magneto Hydro Dynamic & Thermo Electric Generators.pptx
Magneto Hydro Dynamic & Thermo Electric Generators.pptxMagneto Hydro Dynamic & Thermo Electric Generators.pptx
Magneto Hydro Dynamic & Thermo Electric Generators.pptx
 
MHD Power Plant
MHD Power Plant MHD Power Plant
MHD Power Plant
 
Recent Trends In Power Generation
Recent Trends In Power GenerationRecent Trends In Power Generation
Recent Trends In Power Generation
 
magneto-hydro-dynamic-power-generation.pptx
magneto-hydro-dynamic-power-generation.pptxmagneto-hydro-dynamic-power-generation.pptx
magneto-hydro-dynamic-power-generation.pptx
 
mhd%20upload.pptx
mhd%20upload.pptxmhd%20upload.pptx
mhd%20upload.pptx
 
Magneto hydrodynamics power generation
Magneto hydrodynamics power generationMagneto hydrodynamics power generation
Magneto hydrodynamics power generation
 
Cycle analysis of magneto hydro dynamic
Cycle analysis of magneto hydro dynamicCycle analysis of magneto hydro dynamic
Cycle analysis of magneto hydro dynamic
 
performance evaluation of mhd renewable energy source for electric power gene...
performance evaluation of mhd renewable energy source for electric power gene...performance evaluation of mhd renewable energy source for electric power gene...
performance evaluation of mhd renewable energy source for electric power gene...
 
Unit i ppe
Unit   i ppeUnit   i ppe
Unit i ppe
 

Dernier

CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdf
CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdfCCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdf
CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdfAsst.prof M.Gokilavani
 
Risk Assessment For Installation of Drainage Pipes.pdf
Risk Assessment For Installation of Drainage Pipes.pdfRisk Assessment For Installation of Drainage Pipes.pdf
Risk Assessment For Installation of Drainage Pipes.pdfROCENODodongVILLACER
 
lifi-technology with integration of IOT.pptx
lifi-technology with integration of IOT.pptxlifi-technology with integration of IOT.pptx
lifi-technology with integration of IOT.pptxsomshekarkn64
 
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdfCCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdfAsst.prof M.Gokilavani
 
Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)
Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)
Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)dollysharma2066
 
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube ExchangerStudy on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube ExchangerAnamika Sarkar
 
computer application and construction management
computer application and construction managementcomputer application and construction management
computer application and construction managementMariconPadriquez1
 
An experimental study in using natural admixture as an alternative for chemic...
An experimental study in using natural admixture as an alternative for chemic...An experimental study in using natural admixture as an alternative for chemic...
An experimental study in using natural admixture as an alternative for chemic...Chandu841456
 
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionSachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionDr.Costas Sachpazis
 
Earthing details of Electrical Substation
Earthing details of Electrical SubstationEarthing details of Electrical Substation
Earthing details of Electrical Substationstephanwindworld
 
Correctly Loading Incremental Data at Scale
Correctly Loading Incremental Data at ScaleCorrectly Loading Incremental Data at Scale
Correctly Loading Incremental Data at ScaleAlluxio, Inc.
 
Past, Present and Future of Generative AI
Past, Present and Future of Generative AIPast, Present and Future of Generative AI
Past, Present and Future of Generative AIabhishek36461
 
Vishratwadi & Ghorpadi Bridge Tender documents
Vishratwadi & Ghorpadi Bridge Tender documentsVishratwadi & Ghorpadi Bridge Tender documents
Vishratwadi & Ghorpadi Bridge Tender documentsSachinPawar510423
 
Call Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile serviceCall Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile servicerehmti665
 
Why does (not) Kafka need fsync: Eliminating tail latency spikes caused by fsync
Why does (not) Kafka need fsync: Eliminating tail latency spikes caused by fsyncWhy does (not) Kafka need fsync: Eliminating tail latency spikes caused by fsync
Why does (not) Kafka need fsync: Eliminating tail latency spikes caused by fsyncssuser2ae721
 
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor CatchersTechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catcherssdickerson1
 

Dernier (20)

CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdf
CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdfCCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdf
CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdf
 
Risk Assessment For Installation of Drainage Pipes.pdf
Risk Assessment For Installation of Drainage Pipes.pdfRisk Assessment For Installation of Drainage Pipes.pdf
Risk Assessment For Installation of Drainage Pipes.pdf
 
lifi-technology with integration of IOT.pptx
lifi-technology with integration of IOT.pptxlifi-technology with integration of IOT.pptx
lifi-technology with integration of IOT.pptx
 
young call girls in Rajiv Chowk🔝 9953056974 🔝 Delhi escort Service
young call girls in Rajiv Chowk🔝 9953056974 🔝 Delhi escort Serviceyoung call girls in Rajiv Chowk🔝 9953056974 🔝 Delhi escort Service
young call girls in Rajiv Chowk🔝 9953056974 🔝 Delhi escort Service
 
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdfCCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
 
9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf
9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf
9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf
 
Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)
Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)
Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)
 
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube ExchangerStudy on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
 
computer application and construction management
computer application and construction managementcomputer application and construction management
computer application and construction management
 
POWER SYSTEMS-1 Complete notes examples
POWER SYSTEMS-1 Complete notes  examplesPOWER SYSTEMS-1 Complete notes  examples
POWER SYSTEMS-1 Complete notes examples
 
An experimental study in using natural admixture as an alternative for chemic...
An experimental study in using natural admixture as an alternative for chemic...An experimental study in using natural admixture as an alternative for chemic...
An experimental study in using natural admixture as an alternative for chemic...
 
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionSachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
 
Earthing details of Electrical Substation
Earthing details of Electrical SubstationEarthing details of Electrical Substation
Earthing details of Electrical Substation
 
Correctly Loading Incremental Data at Scale
Correctly Loading Incremental Data at ScaleCorrectly Loading Incremental Data at Scale
Correctly Loading Incremental Data at Scale
 
Past, Present and Future of Generative AI
Past, Present and Future of Generative AIPast, Present and Future of Generative AI
Past, Present and Future of Generative AI
 
Vishratwadi & Ghorpadi Bridge Tender documents
Vishratwadi & Ghorpadi Bridge Tender documentsVishratwadi & Ghorpadi Bridge Tender documents
Vishratwadi & Ghorpadi Bridge Tender documents
 
Call Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile serviceCall Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile service
 
Why does (not) Kafka need fsync: Eliminating tail latency spikes caused by fsync
Why does (not) Kafka need fsync: Eliminating tail latency spikes caused by fsyncWhy does (not) Kafka need fsync: Eliminating tail latency spikes caused by fsync
Why does (not) Kafka need fsync: Eliminating tail latency spikes caused by fsync
 
🔝9953056974🔝!!-YOUNG call girls in Rajendra Nagar Escort rvice Shot 2000 nigh...
🔝9953056974🔝!!-YOUNG call girls in Rajendra Nagar Escort rvice Shot 2000 nigh...🔝9953056974🔝!!-YOUNG call girls in Rajendra Nagar Escort rvice Shot 2000 nigh...
🔝9953056974🔝!!-YOUNG call girls in Rajendra Nagar Escort rvice Shot 2000 nigh...
 
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor CatchersTechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
 

Magneto hydro dynamic power generation (mhd power generation)

  • 1. A PRESENTATION ON MAGNETO HYDRO DYNAMIC POWER GENERATION (MHD POWER GENERATION) A SEMINAR IN PARTIAL FULFILLMENT OF THE REQUIREMENT FOR THE AWARD OF THE DEGREE OF BACHELOR OF TECHNOLOGY IN ELECTRICAL ENGINEERING FROM BABU BANARASI DAS NATIONAL INSTITUTE OF TECHNOLOGY & MANAGEMENT (LUCKNOW) AFFILIATED WITH APJ AKTU SUBMITTED BY SUBMITTED TO MRINALINI SRIVASTAVARISHASBH DEV SINGH
  • 2. CONTENTS o INTRODUCTION o PRINCIPLE o WORKING o VARIOUS SYSTEM o ADVANTAGES o LIMITATIONS o PROBLEMS ENCOUNTERED o CONCLUSION
  • 3. INTRODUCTION MHD power generation is a new system of electric power generation which is said to be of high efficiency and low pollution. As its name implies, Magneto Hydro Dynamics (MHD) concerned with the flow of a conducting fluid in the presence of magnetic and electric field. The fluid may be gas at elevated temperatures or liquid metals like sodium or potassium. Magnetohydrodynamics (MHD) (magneto fluid dynamics or hydromagnetics) is the study of the dynamics of electrically conducting fluids. Examples of such fluids include plasmas, liquid metals, and salt water or electrolytes. The field of MHD was initiated by Hannes Alfven, for which he received the Noble Prize in Physics in 1970.
  • 4. PRINCIPLES OF MHD POWER GENERATION When an conductor moves across a magnetic field, a voltage is induced in it which produces an electric current. This is the principle of the conventional generator where the conductors consist of copper strips. In MHD generator, the solid conductors are replaced by a gaseous conductor, an ionized gas. If such a gas is passed at a high velocity through a powerful magnetic field, a current is generated and can be extracted by placing electrodes in suitable position in the stream. The principle can be explained as follows: An conductor moving through a magnetic field experiences a retarding force as well as an induced electric field and current
  • 5. PRINCIPLE OF MHD POWER GENERATION The flow direction is right angles to the magnetic fields direction. An electromotive force (or electric voltage) is induced in the direction at right angles to both flow and field directions.
  • 6. WORKING OF MHD POWER GENERATION
  • 7. WORKING OF MHD POWER GENERATION • The conducting flow fluid is forced between the plates with a kinetic energy and pressure differential sufficient to over come the magnetic induction force. • An ionized gas is employed as the conducting fluid. • Ionization is produced either by thermal means I.e. by an elevated temperature or by seeding with substance like cesium or potassium vapors which ionizes at relatively low temperatures. • The atoms of seed element split off electrons. The presence of the negatively charged electrons makes the gas an electrical conductor. • The end view drawing illustrates the construction of the flow channel.
  • 8. VARIOUS MHD SYSTEMS The MHD systems are broadly classified into two types. • OPEN CYCLE SYSTEM • CLOSED CYCLE SYSTEM • Seeded inert gas system • Liquid metal system
  • 9. OPEN CYCLE SYSTEM • The fuel used maybe oil through an oil tank or gasified coal through a coal gasification plant. • The fuel (coal, oil or natural gas) is burnt in the combustor or combustion chamber. • The hot gases from combustor is then seeded with a small amount of ionized alkali metal (cesium or potassium) to increase the electrical conductivity of the gas. • The seed material, generally potassium carbonate is injected into the combustion chamber, the potassium is then ionized by the hot combustion gases at temperature of roughly 2300’ c to 2700’c.
  • 10. OPEN CYCLE SYSTEM • To attain such high temperatures, the compressed air is used to burn the coal in the combustion chamber, must be adequate to at least 1100’c. • The hot pressurized working fluid living in the combustor flows through a convergent divergent nozzle. In passing through the nozzle, the random motion energy of the molecules in the hot gas is largely converted into directed, mass of energy. Thus , the gas emerges from the nozzle and enters the MHD generator unit at a high velocity.
  • 11.
  • 12. CLOSED CYCLE SYSTEM • Two general types of closed cycle MHD generators are being investigated. • Seeded Inert Gas System • Liquid Metal System
  • 14. SEEDED INERT GAS SYSTEM • In a closed cycle system the carrier gas operates in the form of Brayton cycle. In a closed cycle system the gas is compressed and heat is supplied by the source, at essentially constant pressure, the compressed gas then expands in the MHD generator, and its pressure and temperature fall. • After leaving this generator heat is removed from the gas by a cooler, this is the heat rejection stage of the cycle. Finally the gas is recompressed and returned for reheating.
  • 15. LIQUID METAL SYSTEM • When a liquid metal provides the electrical conductivity, it is called a liquid metal MHD system. • The carrier gas is pressurized and heated by passage through a heat exchanger within combustion chamber. The hot gas is then incorporated into the liquid metal usually hot sodium or Lithium to form the working fluid. • The working fluid is introduced into the MHD generator through a nozzle in the usual ways. The carrier gas then provides the required high direct velocity of the electrical conductor.
  • 16. ADVANTAGES • The conversion efficiency of a MHD system can be around 50% much higher compared to the most efficient steam plants. • Large amount of power is generated. • It has no moving parts, so more reliable. • The closed cycle system produces power, free of pollution. • It has ability to reach the full power level as soon as started. • The size of the plant is considerably smaller than conventional fossil fuel plants.
  • 17. LIMITATIONS • The metallic vapours are poor electrical conductors. • High velocities cannot be obtained by expansion in the system while it is much easier to achieve a high fluid velocity . • employing a gas and a nozzle. This is because the liquids are practically in compressible. • The overall conversions efficiencies obtainable with liquid metal system are quite below to that of plasma system.
  • 18. APPLICATIONS • Laser power MHD Generators. • Plasma physics applications. • Power generation in space crafts. • Hypersonic wind tunnel experiments. • Defense applications.
  • 19. CONCLUSION This power resource play a minor role presently and its use on a vast scale is yet to be confirmed as it is in its childhood stage. These systems permit better fuel utilization. The reduced fuel consumption would offer additional economic and special benefits and would also lead to conservation of energy resources. The magneto hydro dynamic power generation is one of the examples of a new unique method of generation of electricity.
  • 20. REFERANCES • http://www.wikipedia.org • Faraday, M. (1832). "Experimental Researches in Electricity." First Series, Philosophical Transactions of the Royal Society, pp. 125–162. • Sutton, George W., and Sherman, Arthur (1965) Engineering Magnetohydrodynamics, McGraw-Hill Book Company, New York, OCLC 537669 • Popa, C. and Sritharan, S. S. (2003) "Fluid-magnetic splitting methods for magneto-hydrodynamics" Mathematical Methods and Models in Applied Sciences 13(6): pp. 893–917. • Roberts, Paul H. (1967) An Introduction to Magnetohydrodynamics Longmans Green, London, OCLC 489632043 • Rosa, Richard J. (1987) Magnetohydrodynamic Energy Conversion (2nd edition) Hemisphere Publishing, Washington, D.C., ISBN 0-89116-690-4