SlideShare a Scribd company logo
Trains that fly on air
 How Maglev works.
 Levitation System’s Power Supply.
 Propulsion system.
 Application Information.
 Maglev Projects.
 Summary.
 Queries.
Support System
•The electromagnets on the
underside of the train pull
it up to the ferromagnetic
stators on the track and
levitate the train.
•The magnets on the side
keep the train from moving
from side to side.

.This means there is no friction
between the train and the track!
- The basic principles involve the use of magnetism to levitate an
object.

-Maglev technology uses the principles of linear induction and
magnetism to propel the train forwards or backwards. Now imagine
the train is levitated by magnetism upwards as well as forwards.


-The combination of repulsive and attractive magnetic forces cause
the train to move towards a region of track. In the same fashion, to
slow down the train while it is moving, we must apply the repulsive
and attractive forces in such a way opposite to which the motion
started.
 Batteries on the train power the system, and
  therefore it still functions without propulsion.
 The batteries can levitate the train for 30 minutes
  without any additional energy.
 Linear generators in the magnets on board the train
  use the motion of the train to recharge the
  batteries.
 Levitation system uses less power than the trains air
  conditioning.
Propulsion System
•The system consists of
aluminum three-phase cable
windings in the stator packs
that are on the guideway
•When a current is supplied
to the windings, it creates a
traveling alternating current
that propels the train
forward by pushing and
pulling.
Magnetic Levitation (Track Side View):

--N---N---N---N---N---N
=================
n---n----n---n----n---n---n


Maglev Propulsion (Top Down View):

n---s----n---s----n---s---n
=================
--N---S---N---S---N---S +++>
=================
n---s----n---s----n---s---n
•An alternating current is ran through electromagnet coils on the
guide walls of the guide way. This creates a magnetic field that
attracts and repels the superconducting magnets on the train and
propels the train forward.
•Braking is accomplished by sending an alternating current in the
reverse direction so that it is slowed by attractive and repulsive
forces.
•When the alternating current is reversed, the train brakes.
•Different speeds are achieved by varying the intensity of the
current.
•Only the section of track where the train is traveling is
electrified.



.
Application Information
Safety
•The trains are virtually impossible to derail because the train is
wrapped around the track.
•Collisions between trains are unlikely because computers are
controlling the trains movements.

Maintenance
• There is very little maintenance because there is no contact
between the parts.
Comfort
•The ride is smooth while not
accelerating..

Economic Efficiency
•The initial investment is similar to
other high speed rail roads. (Maglift is
$20-$40 million per mile and I-279 in
Pittsburg cost $37 million per mile 17
years ago.)
•Operating expenses are half of that of
other railroads.
•A train is composed of sections that
each contain 100 seats, and a train can
have between 2 and 10 sections.
•The linear generators produce electricity for the cabin of the
train.



Speed
•The train can travel at about 400 mph. (Acela can only go 150
mph)
•For trips of distances up to 500 miles its total travel time is
equal to a planes (including check in time and travel to airport.)
•It can accelerate to 200 mph in 3 miles, so it is ideal for short
jumps. (ICE needs 20 miles to reach 200 mph.)
•Noise Pollution
•The train makes little noise because it does not touch the track
and it has no motor. Therefore, all noise comes from moving air.
This sound is equivalent to the noise produced by city traffic.
Environment
•It uses less energy than existing transportation systems. For
every seat on a 300 km trip with 3 stops, the gasoline used per
100 miles varies with the speed. At 200 km/h it is 1 liter, at 300
km/h it is 1.5 liters and at 400 km/h it is 2 liters. This is 1/3 the
energy used by cars and 1/5 the energy used by jets per mile.
•The tracks have less impact on the environment because the
elevated models (50ft in the air) allows all animals to pass, low
models ( 5-10 ft) allow small animals to pass, they use less land
than conventional trains, and they can follow the landscape better
than regular trains since it can climb 10% gradients (while other
trains can only climb 4 gradients) and can handle tighter turns.
Magnetic Field:
•The magnetic field created is low, therefore there are no
adverse effects.
India
   Pune (Pimple Saudagar) –
    Mumbai (Panvel): The
    Indian Ministry is currently
    in the process of reviewing
    a proposal to start a
    Maglev train system in
    India. It has already been
    estimated that the cost to
    complete this process
    would be over $30 Billion.
.U.S.A -The united states Congress is planning to spend
$1 billion for a test project that either connect Pittsburgh’s suburbs
its airport or Baltimore to the Washington international airport .


. GERMANY - A Transrapid connection linking the
city centre of the Bavarian capital Munich to the airport (37 km) had
been planned. It promised to reduce the connection time from
about 40 minutes by the existing S-Bahn (German city railway
system) to 10 minutes.
. Maglev trains use magnets to levitate and
  propel the trains forward.


. Since there is no friction these trains can
  reach high speeds.


. It is a safe and efficient way to travel.
. Only the part of the track that is used will be electrified
so no energy is wasted.

. Linear generators will produce all the electricity needed
in the train’s interior.

.The train is earthquake proof because the greater space
(10 cm) between the track and the train leaves more room
for track deformation
THANK YOU
ANY QUERIES

    ?

More Related Content

What's hot

Science project on Maglev Trains By Ardhendu
Science project on Maglev Trains By ArdhenduScience project on Maglev Trains By Ardhendu
Science project on Maglev Trains By Ardhendu
ardhendu03
 
Maglev train presented by santosh ku jena
Maglev train presented by santosh ku jena Maglev train presented by santosh ku jena
Maglev train presented by santosh ku jena
BPUT kit
 
application of superconductors maglev
application of superconductors maglevapplication of superconductors maglev
application of superconductors maglev
Rajkumar Ajay SK
 
Seminar ppt
Seminar pptSeminar ppt
Seminar ppt
yash. skv
 
maglev train ppt
maglev train pptmaglev train ppt
maglev train ppt
Indra Pal
 
Magnetic levitation
Magnetic levitationMagnetic levitation
Magnetic levitation
uday kiran sikharam
 
MAGLEV TRAIN
MAGLEV TRAINMAGLEV TRAIN
MAGLEV TRAIN
Rafee Dar
 
MAGLEV TRAIN PPT NIKKI.CV
MAGLEV TRAIN PPT NIKKI.CVMAGLEV TRAIN PPT NIKKI.CV
MAGLEV TRAIN PPT NIKKI.CV
Nutan kumar C V
 
Maglev trains ppt
Maglev trains pptMaglev trains ppt
Maglev trains ppt
Lokesh Choudhary
 
@Aman -The Maglev Technology
@Aman -The Maglev Technology@Aman -The Maglev Technology
@Aman -The Maglev Technology
ANNYCHAND
 
Maglev Levitation Train (MLT),Seminar ppt
Maglev Levitation Train (MLT),Seminar pptMaglev Levitation Train (MLT),Seminar ppt
Maglev Levitation Train (MLT),Seminar ppt
Mandip Rana
 
Maglev Basic Introduction
Maglev Basic IntroductionMaglev Basic Introduction
Maglev Basic Introduction
Baba Fooka
 
MAGLEV TRAIN (Train that floats in the air)
MAGLEV TRAIN (Train that floats in the air)MAGLEV TRAIN (Train that floats in the air)
MAGLEV TRAIN (Train that floats in the air)
mokhim
 
Magnetic levitation in trains
Magnetic levitation in trainsMagnetic levitation in trains
Magnetic levitation in trainsgopikahariharan
 
Maglev train
Maglev trainMaglev train
Maglev train
Franz Nichole Salomon
 
MAGLEV TRAINS:SAIKRISHNA EEE
MAGLEV TRAINS:SAIKRISHNA EEEMAGLEV TRAINS:SAIKRISHNA EEE
MAGLEV TRAINS:SAIKRISHNA EEE
SAIKRISHNA KANDHIKATLA
 
Maglav train
Maglav train Maglav train
Maglav train
Popat Gaurav Popat
 
Basic Maglev Train and its Working
Basic Maglev Train and its WorkingBasic Maglev Train and its Working
Basic Maglev Train and its Working
VASAV SHETHNA
 
Maglev Technology
Maglev TechnologyMaglev Technology
Maglev Technology
Vishwanath Neha
 

What's hot (20)

Science project on Maglev Trains By Ardhendu
Science project on Maglev Trains By ArdhenduScience project on Maglev Trains By Ardhendu
Science project on Maglev Trains By Ardhendu
 
Maglev train presented by santosh ku jena
Maglev train presented by santosh ku jena Maglev train presented by santosh ku jena
Maglev train presented by santosh ku jena
 
application of superconductors maglev
application of superconductors maglevapplication of superconductors maglev
application of superconductors maglev
 
Seminar ppt
Seminar pptSeminar ppt
Seminar ppt
 
maglev train ppt
maglev train pptmaglev train ppt
maglev train ppt
 
Magnetic levitation
Magnetic levitationMagnetic levitation
Magnetic levitation
 
MAGLEV TRAIN
MAGLEV TRAINMAGLEV TRAIN
MAGLEV TRAIN
 
MAGLEV TRAIN PPT NIKKI.CV
MAGLEV TRAIN PPT NIKKI.CVMAGLEV TRAIN PPT NIKKI.CV
MAGLEV TRAIN PPT NIKKI.CV
 
Maglev trains ppt
Maglev trains pptMaglev trains ppt
Maglev trains ppt
 
@Aman -The Maglev Technology
@Aman -The Maglev Technology@Aman -The Maglev Technology
@Aman -The Maglev Technology
 
Maglev Levitation Train (MLT),Seminar ppt
Maglev Levitation Train (MLT),Seminar pptMaglev Levitation Train (MLT),Seminar ppt
Maglev Levitation Train (MLT),Seminar ppt
 
Maglev train
Maglev trainMaglev train
Maglev train
 
Maglev Basic Introduction
Maglev Basic IntroductionMaglev Basic Introduction
Maglev Basic Introduction
 
MAGLEV TRAIN (Train that floats in the air)
MAGLEV TRAIN (Train that floats in the air)MAGLEV TRAIN (Train that floats in the air)
MAGLEV TRAIN (Train that floats in the air)
 
Magnetic levitation in trains
Magnetic levitation in trainsMagnetic levitation in trains
Magnetic levitation in trains
 
Maglev train
Maglev trainMaglev train
Maglev train
 
MAGLEV TRAINS:SAIKRISHNA EEE
MAGLEV TRAINS:SAIKRISHNA EEEMAGLEV TRAINS:SAIKRISHNA EEE
MAGLEV TRAINS:SAIKRISHNA EEE
 
Maglav train
Maglav train Maglav train
Maglav train
 
Basic Maglev Train and its Working
Basic Maglev Train and its WorkingBasic Maglev Train and its Working
Basic Maglev Train and its Working
 
Maglev Technology
Maglev TechnologyMaglev Technology
Maglev Technology
 

Viewers also liked

MAGLEV PPT
MAGLEV PPTMAGLEV PPT
MAGLEV PPT
Mani Kanta
 
Train Car Research
Train Car ResearchTrain Car Research
Train Car Researchdepau9827
 
Maglev
MaglevMaglev
Sanchit
SanchitSanchit
Air conditioning in indian railways PEE
Air conditioning in indian railways PEEAir conditioning in indian railways PEE
Air conditioning in indian railways PEE
irkportal
 
Maglev trai
Maglev traiMaglev trai
Maglev trai
jayant patil
 
Training Report on indian railways on AC COACH MAINTANCES
Training Report on indian railways on AC COACH MAINTANCESTraining Report on indian railways on AC COACH MAINTANCES
Training Report on indian railways on AC COACH MAINTANCES
Pawan Sharma
 
Super Conduting Train
Super Conduting Train Super Conduting Train
Super Conduting Train
mbrsalman
 
Maglev
MaglevMaglev
Maglev
Sanjay Nayak
 
Automotive transmission mechanism
Automotive transmission mechanism Automotive transmission mechanism
Automotive transmission mechanism
Darshan H Patel
 
Automotive Powertrain 2
Automotive Powertrain 2Automotive Powertrain 2
Automotive Powertrain 2
Pallav Chatterjee
 

Viewers also liked (14)

MAGLEV PPT
MAGLEV PPTMAGLEV PPT
MAGLEV PPT
 
Train Car Research
Train Car ResearchTrain Car Research
Train Car Research
 
Md Power Trains
Md Power TrainsMd Power Trains
Md Power Trains
 
Maglev
MaglevMaglev
Maglev
 
Sanchit
SanchitSanchit
Sanchit
 
Air conditioning in indian railways PEE
Air conditioning in indian railways PEEAir conditioning in indian railways PEE
Air conditioning in indian railways PEE
 
Maglev trai
Maglev traiMaglev trai
Maglev trai
 
Magnetic levitation
Magnetic levitationMagnetic levitation
Magnetic levitation
 
Training Report on indian railways on AC COACH MAINTANCES
Training Report on indian railways on AC COACH MAINTANCESTraining Report on indian railways on AC COACH MAINTANCES
Training Report on indian railways on AC COACH MAINTANCES
 
Super Conduting Train
Super Conduting Train Super Conduting Train
Super Conduting Train
 
Maglev
MaglevMaglev
Maglev
 
Automotive transmission mechanism
Automotive transmission mechanism Automotive transmission mechanism
Automotive transmission mechanism
 
Automotive Powertrain 2
Automotive Powertrain 2Automotive Powertrain 2
Automotive Powertrain 2
 
Air conditioning system
Air conditioning systemAir conditioning system
Air conditioning system
 

Similar to Maglev trains by sumit sanyal

MAGLEV TRAIN
MAGLEV TRAIN MAGLEV TRAIN
MAGLEV TRAIN
Jemishkumar Parmar
 
Maglev trains
Maglev trainsMaglev trains
Maglev trains
SAQUIB DAUD
 
Maglev trains by deepanshu sharma
Maglev trains by deepanshu sharmaMaglev trains by deepanshu sharma
Maglev trains by deepanshu sharma
Deepanshu Sharma
 
Maglev trains
Maglev trainsMaglev trains
Maglev trains
Samsu Deen
 
Maglev trains
Maglev trainsMaglev trains
Maglev trains
Amal Sajeev
 
Maglev trains
Maglev trainsMaglev trains
Maglev trainshseransan
 
maglev.ppt
maglev.pptmaglev.ppt
maglev.ppt
MahammadAnish1
 
The bullet train
The bullet trainThe bullet train
The bullet train
YASWANTH RAJ JAYAVARAM
 
Innovations in transportation sysytems
Innovations in transportation sysytemsInnovations in transportation sysytems
Innovations in transportation sysytems
Srinath Uthay
 
@Aman- The Maglev Technology
@Aman- The Maglev Technology@Aman- The Maglev Technology
@Aman- The Maglev Technology
ANNYCHAND
 
maglevtrainsppt-150504021928-conversion-gate02 (1).pdf
maglevtrainsppt-150504021928-conversion-gate02 (1).pdfmaglevtrainsppt-150504021928-conversion-gate02 (1).pdf
maglevtrainsppt-150504021928-conversion-gate02 (1).pdf
VishuBaniyan
 
Maglev train
Maglev trainMaglev train
Maglev train
Er Soumyabrata Basak
 
Magnetic levitation
Magnetic levitationMagnetic levitation
Magnetic levitation
Neeraj Singh
 
maglev train
maglev trainmaglev train
maglev train
Rajessh Garhwal
 
maglevtrainsppt-150504021928-conversion-gate02.pptx
maglevtrainsppt-150504021928-conversion-gate02.pptxmaglevtrainsppt-150504021928-conversion-gate02.pptx
maglevtrainsppt-150504021928-conversion-gate02.pptx
divyanshu766683
 
Suit ppt
Suit pptSuit ppt
Suit ppt
Sujit Singh
 
MagLev Train
MagLev TrainMagLev Train
MagLev Train
Ashish Thapa
 

Similar to Maglev trains by sumit sanyal (20)

MAGLEV TRAIN
MAGLEV TRAIN MAGLEV TRAIN
MAGLEV TRAIN
 
Maglev trains
Maglev trainsMaglev trains
Maglev trains
 
Maglev trains by deepanshu sharma
Maglev trains by deepanshu sharmaMaglev trains by deepanshu sharma
Maglev trains by deepanshu sharma
 
Maglev trains
Maglev trainsMaglev trains
Maglev trains
 
Maglev trains
Maglev trainsMaglev trains
Maglev trains
 
Maglev trains
Maglev trainsMaglev trains
Maglev trains
 
Maglev trains
Maglev trainsMaglev trains
Maglev trains
 
maglev.ppt
maglev.pptmaglev.ppt
maglev.ppt
 
The bullet train
The bullet trainThe bullet train
The bullet train
 
Ganesh
GaneshGanesh
Ganesh
 
Innovations in transportation sysytems
Innovations in transportation sysytemsInnovations in transportation sysytems
Innovations in transportation sysytems
 
@Aman- The Maglev Technology
@Aman- The Maglev Technology@Aman- The Maglev Technology
@Aman- The Maglev Technology
 
Bullet train
Bullet trainBullet train
Bullet train
 
maglevtrainsppt-150504021928-conversion-gate02 (1).pdf
maglevtrainsppt-150504021928-conversion-gate02 (1).pdfmaglevtrainsppt-150504021928-conversion-gate02 (1).pdf
maglevtrainsppt-150504021928-conversion-gate02 (1).pdf
 
Maglev train
Maglev trainMaglev train
Maglev train
 
Magnetic levitation
Magnetic levitationMagnetic levitation
Magnetic levitation
 
maglev train
maglev trainmaglev train
maglev train
 
maglevtrainsppt-150504021928-conversion-gate02.pptx
maglevtrainsppt-150504021928-conversion-gate02.pptxmaglevtrainsppt-150504021928-conversion-gate02.pptx
maglevtrainsppt-150504021928-conversion-gate02.pptx
 
Suit ppt
Suit pptSuit ppt
Suit ppt
 
MagLev Train
MagLev TrainMagLev Train
MagLev Train
 

More from Sumit Sanyal

HR - Performance Management | Summer Internship Project
HR - Performance Management | Summer Internship ProjectHR - Performance Management | Summer Internship Project
HR - Performance Management | Summer Internship Project
Sumit Sanyal
 
Business Process Reengineering | Case studies
Business Process Reengineering | Case studiesBusiness Process Reengineering | Case studies
Business Process Reengineering | Case studies
Sumit Sanyal
 
Disney strategic management
Disney strategic managementDisney strategic management
Disney strategic management
Sumit Sanyal
 
ESOP success stories of companies
ESOP success stories of companiesESOP success stories of companies
ESOP success stories of companies
Sumit Sanyal
 
Training And Development
Training And DevelopmentTraining And Development
Training And Development
Sumit Sanyal
 
Top Management Pay
Top Management PayTop Management Pay
Top Management Pay
Sumit Sanyal
 
Industrial Relation Policies of different countries
Industrial Relation Policies of different countriesIndustrial Relation Policies of different countries
Industrial Relation Policies of different countries
Sumit Sanyal
 
OD Intervention At Nokia
OD Intervention At NokiaOD Intervention At Nokia
OD Intervention At Nokia
Sumit Sanyal
 
Human Resource Management
Human Resource ManagementHuman Resource Management
Human Resource Management
Sumit Sanyal
 
HR practices in TCS
HR practices in TCSHR practices in TCS
HR practices in TCS
Sumit Sanyal
 
Book review the power of infinite love and gratitude
Book review the power of infinite love and gratitudeBook review the power of infinite love and gratitude
Book review the power of infinite love and gratitude
Sumit Sanyal
 
Human Resource Accounting at Accenture
Human Resource Accounting at AccentureHuman Resource Accounting at Accenture
Human Resource Accounting at Accenture
Sumit Sanyal
 
Employees State Insurance Law In India
Employees State Insurance Law In IndiaEmployees State Insurance Law In India
Employees State Insurance Law In India
Sumit Sanyal
 
General management quiz
General management quiz General management quiz
General management quiz
Sumit Sanyal
 
Traditional vs E-contract
Traditional vs E-contractTraditional vs E-contract
Traditional vs E-contract
Sumit Sanyal
 
Petrol price hike & its impacts
Petrol price hike & its impactsPetrol price hike & its impacts
Petrol price hike & its impacts
Sumit Sanyal
 

More from Sumit Sanyal (16)

HR - Performance Management | Summer Internship Project
HR - Performance Management | Summer Internship ProjectHR - Performance Management | Summer Internship Project
HR - Performance Management | Summer Internship Project
 
Business Process Reengineering | Case studies
Business Process Reengineering | Case studiesBusiness Process Reengineering | Case studies
Business Process Reengineering | Case studies
 
Disney strategic management
Disney strategic managementDisney strategic management
Disney strategic management
 
ESOP success stories of companies
ESOP success stories of companiesESOP success stories of companies
ESOP success stories of companies
 
Training And Development
Training And DevelopmentTraining And Development
Training And Development
 
Top Management Pay
Top Management PayTop Management Pay
Top Management Pay
 
Industrial Relation Policies of different countries
Industrial Relation Policies of different countriesIndustrial Relation Policies of different countries
Industrial Relation Policies of different countries
 
OD Intervention At Nokia
OD Intervention At NokiaOD Intervention At Nokia
OD Intervention At Nokia
 
Human Resource Management
Human Resource ManagementHuman Resource Management
Human Resource Management
 
HR practices in TCS
HR practices in TCSHR practices in TCS
HR practices in TCS
 
Book review the power of infinite love and gratitude
Book review the power of infinite love and gratitudeBook review the power of infinite love and gratitude
Book review the power of infinite love and gratitude
 
Human Resource Accounting at Accenture
Human Resource Accounting at AccentureHuman Resource Accounting at Accenture
Human Resource Accounting at Accenture
 
Employees State Insurance Law In India
Employees State Insurance Law In IndiaEmployees State Insurance Law In India
Employees State Insurance Law In India
 
General management quiz
General management quiz General management quiz
General management quiz
 
Traditional vs E-contract
Traditional vs E-contractTraditional vs E-contract
Traditional vs E-contract
 
Petrol price hike & its impacts
Petrol price hike & its impactsPetrol price hike & its impacts
Petrol price hike & its impacts
 

Maglev trains by sumit sanyal

  • 2.  How Maglev works.  Levitation System’s Power Supply.  Propulsion system.  Application Information.  Maglev Projects.  Summary.  Queries.
  • 3. Support System •The electromagnets on the underside of the train pull it up to the ferromagnetic stators on the track and levitate the train. •The magnets on the side keep the train from moving from side to side. .This means there is no friction between the train and the track!
  • 4. - The basic principles involve the use of magnetism to levitate an object. -Maglev technology uses the principles of linear induction and magnetism to propel the train forwards or backwards. Now imagine the train is levitated by magnetism upwards as well as forwards. -The combination of repulsive and attractive magnetic forces cause the train to move towards a region of track. In the same fashion, to slow down the train while it is moving, we must apply the repulsive and attractive forces in such a way opposite to which the motion started.
  • 5.  Batteries on the train power the system, and therefore it still functions without propulsion.  The batteries can levitate the train for 30 minutes without any additional energy.  Linear generators in the magnets on board the train use the motion of the train to recharge the batteries.  Levitation system uses less power than the trains air conditioning.
  • 6. Propulsion System •The system consists of aluminum three-phase cable windings in the stator packs that are on the guideway •When a current is supplied to the windings, it creates a traveling alternating current that propels the train forward by pushing and pulling.
  • 7. Magnetic Levitation (Track Side View): --N---N---N---N---N---N ================= n---n----n---n----n---n---n Maglev Propulsion (Top Down View): n---s----n---s----n---s---n ================= --N---S---N---S---N---S +++> ================= n---s----n---s----n---s---n
  • 8. •An alternating current is ran through electromagnet coils on the guide walls of the guide way. This creates a magnetic field that attracts and repels the superconducting magnets on the train and propels the train forward. •Braking is accomplished by sending an alternating current in the reverse direction so that it is slowed by attractive and repulsive forces.
  • 9. •When the alternating current is reversed, the train brakes. •Different speeds are achieved by varying the intensity of the current. •Only the section of track where the train is traveling is electrified. .
  • 10. Application Information Safety •The trains are virtually impossible to derail because the train is wrapped around the track. •Collisions between trains are unlikely because computers are controlling the trains movements. Maintenance • There is very little maintenance because there is no contact between the parts.
  • 11. Comfort •The ride is smooth while not accelerating.. Economic Efficiency •The initial investment is similar to other high speed rail roads. (Maglift is $20-$40 million per mile and I-279 in Pittsburg cost $37 million per mile 17 years ago.) •Operating expenses are half of that of other railroads. •A train is composed of sections that each contain 100 seats, and a train can have between 2 and 10 sections.
  • 12. •The linear generators produce electricity for the cabin of the train. Speed •The train can travel at about 400 mph. (Acela can only go 150 mph) •For trips of distances up to 500 miles its total travel time is equal to a planes (including check in time and travel to airport.) •It can accelerate to 200 mph in 3 miles, so it is ideal for short jumps. (ICE needs 20 miles to reach 200 mph.)
  • 13. •Noise Pollution •The train makes little noise because it does not touch the track and it has no motor. Therefore, all noise comes from moving air. This sound is equivalent to the noise produced by city traffic.
  • 14. Environment •It uses less energy than existing transportation systems. For every seat on a 300 km trip with 3 stops, the gasoline used per 100 miles varies with the speed. At 200 km/h it is 1 liter, at 300 km/h it is 1.5 liters and at 400 km/h it is 2 liters. This is 1/3 the energy used by cars and 1/5 the energy used by jets per mile. •The tracks have less impact on the environment because the elevated models (50ft in the air) allows all animals to pass, low models ( 5-10 ft) allow small animals to pass, they use less land than conventional trains, and they can follow the landscape better than regular trains since it can climb 10% gradients (while other trains can only climb 4 gradients) and can handle tighter turns.
  • 15. Magnetic Field: •The magnetic field created is low, therefore there are no adverse effects.
  • 16. India  Pune (Pimple Saudagar) – Mumbai (Panvel): The Indian Ministry is currently in the process of reviewing a proposal to start a Maglev train system in India. It has already been estimated that the cost to complete this process would be over $30 Billion.
  • 17. .U.S.A -The united states Congress is planning to spend $1 billion for a test project that either connect Pittsburgh’s suburbs its airport or Baltimore to the Washington international airport . . GERMANY - A Transrapid connection linking the city centre of the Bavarian capital Munich to the airport (37 km) had been planned. It promised to reduce the connection time from about 40 minutes by the existing S-Bahn (German city railway system) to 10 minutes.
  • 18. . Maglev trains use magnets to levitate and propel the trains forward. . Since there is no friction these trains can reach high speeds. . It is a safe and efficient way to travel.
  • 19. . Only the part of the track that is used will be electrified so no energy is wasted. . Linear generators will produce all the electricity needed in the train’s interior. .The train is earthquake proof because the greater space (10 cm) between the track and the train leaves more room for track deformation