SlideShare ist ein Scribd-Unternehmen logo
1 von 25
Gandhinagar Institute Of
Technology
Element Of Electrical Engineering
(2110014)
Active Learning Assignment
Topic:
Guided By:
Branch: Division:
Rahish Silavat
Self-Inductance
When the switch is closed, the battery (source
emf) starts pushing electrons around the circuit.
The current starts to rise, creating an increasing
magnetic flux through the circuit.
This increasing flux creates an induced emf in
the circuit.
The induced emf will create a flux to oppose the
increasing flux.
The direction of this induced emf will be opposite the source emf.
This results in a gradual increase in the current rather than an instantaneous one.
The induced emf is called the self-induced emf or back emf.
‱When an electric current is passed
through an insulated conducting coil, it
gives rise to a magnetic field in the coil
so that the coil itself behaves like a
magnet.
‱The magnetic flux produced by the
current in the coil is linked with the coil
itself.
DEFINATION
As the strength of the current in the
coil is changed, the flux linked with the coil
also changes. Under such circumstances an
emf is induced in the coil too. Such emf is
called a self-induced emf and this
phenomenon is known as self-induction.
Conducting coil
Battery
Key/Switch Rheostat
Direction of the Current
Current flows
In anti-clock
Wise direction
Current
flows
In clock
Wise
direction
Mutual induction is the phenomenon
of production of induced emf in one
coil due to a change of current in the
neighboring coil.
At any instant ,
Magnetic Flux linked with the secondary coil ∝ current in the primary coil.
i.e. ᔩ ∝ I
ᔩ=MI
The proportionality constant M is called th mutual inductance or coeffecient of mutual
induction of the two coils.
Any change in the current I sets up and induced emf in the secondary coil which is given
by
E=
âˆ’đ‘‘á”©
𝑑𝑡
= -M −𝑑I
𝑑𝑡
Consider two long co-axial solenoids S1 and S2, with S2 wound over S1 .
Let l= length of each solenoid
r1, r2=radii of the two solenoids
𝐮 = 𝜋r1
2
= area of cross section of inner solenoid S1
N1, N2 = number of turns in the two solenoids
First we pass a time varying current I2 through S2 . The magnet field setup inside S2 due to I2
B2 = ”0 n2 I2
where n2 = N2 /l =number of turns per unit length of S2.
Total magnetic flux linked with the inner solenoid S1 is
Ί1 = B2 A N1 = ”0 n2 I2 A N1
∎ Mutual inductance of coil 1 w.r.t coil 2 is
M12 = Ί1 / I2 = ”0 n2 A N1 = ”0 N2 A N1 / l
We now consider the flux linked with the outer solenoid S2 due to the
current I1 in the inner solenoid S1 . The field B1 due to I1 is constant
inside S1 but zero in the annular region between the two solenoids.
hence.
B1 = ”0 n1 I1
Where n1 = N1 /l = the number of turns per unit length of S1
The total flux linked with the outer solenoid S2 is
Ί2 = B1 A N2 = ”0 n1 I1 A N2 = ”0 N2 A N1 I1 / l
∎ Mutual inductance of coil 2 w.r.t coil 1 is
M21 = Ί2 / I1 = ”0 N2 A N1 / l
Clearly,
M12 = M21 = M
∎M= ”0 N2 A N1 / l
Thus mutual inductance of two coils is the property of their
combination. It does not matter which one of them functions as
primary or secondary coil.
1. Number of Turns : larger the number of turns , larger the
mutual inductance.
2. Larger the common cross-sectional area of two solenoids ,
larger will be their mutual inductance.
3. Larger the distance b/w two solenoids , smaller will be the
magnetic flux linked with the secondary coil due to current
in the primary coil. Hence smaller will be the value of M.
Multiplying equations (15) and (17),
But N1Ί1/i1 = Self induced of coil 1 = L1
N2Ί2/i2 = Self induced of coil 2 = L2
... M2 = k1k2L1L2
... M = √(k1k2) √(L1L2)
Let k = √(k1k2)
... M = k √(L1L2) ............(18)
where k is called coefficient of coupling.
... k = M/(√(L1L2)) .........(19)
self inductance , mutual inductance and coeffecient of coupling
self inductance , mutual inductance and coeffecient of coupling

Weitere Àhnliche Inhalte

Was ist angesagt?

ppt on the Transformer
ppt on the Transformerppt on the Transformer
ppt on the TransformerYuvraj Singh
 
Diode v i characteristic
Diode v i characteristicDiode v i characteristic
Diode v i characteristicUnsa Shakir
 
RESISTORS IN SERIES AND PARALLEL
RESISTORS IN SERIES AND PARALLELRESISTORS IN SERIES AND PARALLEL
RESISTORS IN SERIES AND PARALLELSheeba vinilan
 
Operational Amplifier Part 1
Operational Amplifier Part 1Operational Amplifier Part 1
Operational Amplifier Part 1Mukesh Tekwani
 
Capacitor Presentation
Capacitor PresentationCapacitor Presentation
Capacitor PresentationTayyab Hussain
 
Wheatstone bridge
Wheatstone bridgeWheatstone bridge
Wheatstone bridgeARUNDEVKN
 
Electromagnetic field (emf)
Electromagnetic field (emf)Electromagnetic field (emf)
Electromagnetic field (emf)Shawan Roy
 
Presentation on Electromagnetic Induction
Presentation on Electromagnetic InductionPresentation on Electromagnetic Induction
Presentation on Electromagnetic InductionSaleh Ibne Omar
 
L14 self and mutual inductance
L14   self and mutual inductanceL14   self and mutual inductance
L14 self and mutual inductanceSatyakam
 
Faraday's law's and its applications
 Faraday's law's and its applications Faraday's law's and its applications
Faraday's law's and its applicationsSayan Samanta
 
Presentation on JFET
Presentation on JFETPresentation on JFET
Presentation on JFETMd. Ashraf Uddin
 
Construction & E.M.F. eqn. of transformer
Construction & E.M.F. eqn. of transformerConstruction & E.M.F. eqn. of transformer
Construction & E.M.F. eqn. of transformerJay Baria
 
Schottky diode working and applications
Schottky diode working and applicationsSchottky diode working and applications
Schottky diode working and applicationselprocus
 

Was ist angesagt? (20)

ppt on the Transformer
ppt on the Transformerppt on the Transformer
ppt on the Transformer
 
Diode v i characteristic
Diode v i characteristicDiode v i characteristic
Diode v i characteristic
 
Wheatstone bridge
Wheatstone bridgeWheatstone bridge
Wheatstone bridge
 
RESISTORS IN SERIES AND PARALLEL
RESISTORS IN SERIES AND PARALLELRESISTORS IN SERIES AND PARALLEL
RESISTORS IN SERIES AND PARALLEL
 
Operational Amplifier Part 1
Operational Amplifier Part 1Operational Amplifier Part 1
Operational Amplifier Part 1
 
Transformer
Transformer Transformer
Transformer
 
Capacitor Presentation
Capacitor PresentationCapacitor Presentation
Capacitor Presentation
 
Pn junction diode
Pn junction diodePn junction diode
Pn junction diode
 
Wheatstone bridge
Wheatstone bridgeWheatstone bridge
Wheatstone bridge
 
Electromagnetic field (emf)
Electromagnetic field (emf)Electromagnetic field (emf)
Electromagnetic field (emf)
 
Presentation on Electromagnetic Induction
Presentation on Electromagnetic InductionPresentation on Electromagnetic Induction
Presentation on Electromagnetic Induction
 
Magnetic circuits
Magnetic circuitsMagnetic circuits
Magnetic circuits
 
L14 self and mutual inductance
L14   self and mutual inductanceL14   self and mutual inductance
L14 self and mutual inductance
 
Faraday's law's and its applications
 Faraday's law's and its applications Faraday's law's and its applications
Faraday's law's and its applications
 
Presentation on JFET
Presentation on JFETPresentation on JFET
Presentation on JFET
 
Construction & E.M.F. eqn. of transformer
Construction & E.M.F. eqn. of transformerConstruction & E.M.F. eqn. of transformer
Construction & E.M.F. eqn. of transformer
 
A.c circuits
A.c circuitsA.c circuits
A.c circuits
 
Diodes basics
Diodes   basicsDiodes   basics
Diodes basics
 
Schottky diode working and applications
Schottky diode working and applicationsSchottky diode working and applications
Schottky diode working and applications
 
Transformer construction,types and working
Transformer construction,types and workingTransformer construction,types and working
Transformer construction,types and working
 

Ähnlich wie self inductance , mutual inductance and coeffecient of coupling

Investigatory Project Physics.pdf
Investigatory Project Physics.pdfInvestigatory Project Physics.pdf
Investigatory Project Physics.pdfCrimemaster Gogo
 
Electromagnetic induction and transformer
Electromagnetic induction and transformer Electromagnetic induction and transformer
Electromagnetic induction and transformer Nitish Prajapati
 
Magnetism and AC Fundamentals
Magnetism and AC FundamentalsMagnetism and AC Fundamentals
Magnetism and AC Fundamentalsmaneesh001
 
electromagnetic induction ( part 2 )
electromagnetic induction ( part 2 )electromagnetic induction ( part 2 )
electromagnetic induction ( part 2 )Priyanka Jakhar
 
6 inductance
6 inductance6 inductance
6 inductanceRuben Conde
 
fall2010-28 (1).pdf
fall2010-28 (1).pdffall2010-28 (1).pdf
fall2010-28 (1).pdfSarthakShukla45
 
Faradays law of EMI.pptx
Faradays law of EMI.pptxFaradays law of EMI.pptx
Faradays law of EMI.pptxnivi55
 
Reluctance and inductance
Reluctance and inductanceReluctance and inductance
Reluctance and inductanceSonuKumarBairwa
 
CONTENT CREATION PROBLEM SOLVING DETAILING
CONTENT CREATION  PROBLEM SOLVING DETAILINGCONTENT CREATION  PROBLEM SOLVING DETAILING
CONTENT CREATION PROBLEM SOLVING DETAILINGParkavi S
 
Ch 22 Electromagnetic Induction
Ch 22 Electromagnetic InductionCh 22 Electromagnetic Induction
Ch 22 Electromagnetic InductionScott Thomas
 
Eg1108 transformers
Eg1108 transformersEg1108 transformers
Eg1108 transformersVikram Singh
 
electromagnetism Exam coverage.pptx
electromagnetism Exam coverage.pptxelectromagnetism Exam coverage.pptx
electromagnetism Exam coverage.pptxWalidHassan53
 
Electromagnetic induction
Electromagnetic inductionElectromagnetic induction
Electromagnetic inductionbigboss716
 
Transformer.pptx
Transformer.pptxTransformer.pptx
Transformer.pptxssuser2004c9
 
Unit 1 magnetically coupled circuit
Unit 1 magnetically coupled circuitUnit 1 magnetically coupled circuit
Unit 1 magnetically coupled circuitACE ENGINEERING COLLEGE
 
Electromagnetic induction
Electromagnetic inductionElectromagnetic induction
Electromagnetic inductionnaomizammit2003
 

Ähnlich wie self inductance , mutual inductance and coeffecient of coupling (20)

Investigatory Project Physics.pdf
Investigatory Project Physics.pdfInvestigatory Project Physics.pdf
Investigatory Project Physics.pdf
 
Electromagnetic induction and transformer
Electromagnetic induction and transformer Electromagnetic induction and transformer
Electromagnetic induction and transformer
 
Magnetism and AC Fundamentals
Magnetism and AC FundamentalsMagnetism and AC Fundamentals
Magnetism and AC Fundamentals
 
electromagnetic induction ( part 2 )
electromagnetic induction ( part 2 )electromagnetic induction ( part 2 )
electromagnetic induction ( part 2 )
 
6 inductance
6 inductance6 inductance
6 inductance
 
Lecture 7 bee
Lecture 7 beeLecture 7 bee
Lecture 7 bee
 
chapter32.ppt
chapter32.pptchapter32.ppt
chapter32.ppt
 
fall2010-28 (1).pdf
fall2010-28 (1).pdffall2010-28 (1).pdf
fall2010-28 (1).pdf
 
Faradays law of EMI.pptx
Faradays law of EMI.pptxFaradays law of EMI.pptx
Faradays law of EMI.pptx
 
Reluctance and inductance
Reluctance and inductanceReluctance and inductance
Reluctance and inductance
 
CONTENT CREATION PROBLEM SOLVING DETAILING
CONTENT CREATION  PROBLEM SOLVING DETAILINGCONTENT CREATION  PROBLEM SOLVING DETAILING
CONTENT CREATION PROBLEM SOLVING DETAILING
 
Electromagnetism
ElectromagnetismElectromagnetism
Electromagnetism
 
Ch 22 Electromagnetic Induction
Ch 22 Electromagnetic InductionCh 22 Electromagnetic Induction
Ch 22 Electromagnetic Induction
 
Eg1108 transformers
Eg1108 transformersEg1108 transformers
Eg1108 transformers
 
electromagnetism Exam coverage.pptx
electromagnetism Exam coverage.pptxelectromagnetism Exam coverage.pptx
electromagnetism Exam coverage.pptx
 
Electromagnetic induction
Electromagnetic inductionElectromagnetic induction
Electromagnetic induction
 
Transformer.pptx
Transformer.pptxTransformer.pptx
Transformer.pptx
 
Unit 1 magnetically coupled circuit
Unit 1 magnetically coupled circuitUnit 1 magnetically coupled circuit
Unit 1 magnetically coupled circuit
 
Electromagnetic induction
Electromagnetic inductionElectromagnetic induction
Electromagnetic induction
 
PEE-102A_L-4
PEE-102A_L-4PEE-102A_L-4
PEE-102A_L-4
 

Mehr von saahil kshatriya

Valve Timing Diagram (2161902) ICE
Valve Timing Diagram (2161902) ICEValve Timing Diagram (2161902) ICE
Valve Timing Diagram (2161902) ICEsaahil kshatriya
 
Effectiveness Of Parallel Flow Heat Exchanger (2151909)
Effectiveness Of Parallel Flow Heat Exchanger (2151909)Effectiveness Of Parallel Flow Heat Exchanger (2151909)
Effectiveness Of Parallel Flow Heat Exchanger (2151909)saahil kshatriya
 
DYNAMICS OF MACHINES (2161901)
DYNAMICS OF MACHINES (2161901)DYNAMICS OF MACHINES (2161901)
DYNAMICS OF MACHINES (2161901)saahil kshatriya
 
Double acting cylinder
Double acting cylinderDouble acting cylinder
Double acting cylindersaahil kshatriya
 
Temperature Measurements
Temperature MeasurementsTemperature Measurements
Temperature Measurementssaahil kshatriya
 
Gas Metal Arc Welding (GMAW)
Gas Metal Arc Welding (GMAW)Gas Metal Arc Welding (GMAW)
Gas Metal Arc Welding (GMAW)saahil kshatriya
 
System Of Linear Equations
System Of Linear EquationsSystem Of Linear Equations
System Of Linear Equationssaahil kshatriya
 
the Road Not Taken- Robert Frost
the Road Not Taken- Robert Frostthe Road Not Taken- Robert Frost
the Road Not Taken- Robert Frostsaahil kshatriya
 
FOUR BAR CHAIN AND INVERSIONS
FOUR BAR CHAIN AND INVERSIONSFOUR BAR CHAIN AND INVERSIONS
FOUR BAR CHAIN AND INVERSIONSsaahil kshatriya
 
Laplace transform: UNIT STEP FUNCTION, SECOND SHIFTING THEOREM, DIRAC DELTA F...
Laplace transform: UNIT STEP FUNCTION, SECOND SHIFTING THEOREM, DIRAC DELTA F...Laplace transform: UNIT STEP FUNCTION, SECOND SHIFTING THEOREM, DIRAC DELTA F...
Laplace transform: UNIT STEP FUNCTION, SECOND SHIFTING THEOREM, DIRAC DELTA F...saahil kshatriya
 
Thermodynamic sysytem and control volume and properties
Thermodynamic sysytem and control volume and propertiesThermodynamic sysytem and control volume and properties
Thermodynamic sysytem and control volume and propertiessaahil kshatriya
 

Mehr von saahil kshatriya (14)

Valve Timing Diagram (2161902) ICE
Valve Timing Diagram (2161902) ICEValve Timing Diagram (2161902) ICE
Valve Timing Diagram (2161902) ICE
 
Effectiveness Of Parallel Flow Heat Exchanger (2151909)
Effectiveness Of Parallel Flow Heat Exchanger (2151909)Effectiveness Of Parallel Flow Heat Exchanger (2151909)
Effectiveness Of Parallel Flow Heat Exchanger (2151909)
 
DYNAMICS OF MACHINES (2161901)
DYNAMICS OF MACHINES (2161901)DYNAMICS OF MACHINES (2161901)
DYNAMICS OF MACHINES (2161901)
 
Shuttle valve
Shuttle valveShuttle valve
Shuttle valve
 
Double acting cylinder
Double acting cylinderDouble acting cylinder
Double acting cylinder
 
Temperature Measurements
Temperature MeasurementsTemperature Measurements
Temperature Measurements
 
money, functions
money, functionsmoney, functions
money, functions
 
Gas Metal Arc Welding (GMAW)
Gas Metal Arc Welding (GMAW)Gas Metal Arc Welding (GMAW)
Gas Metal Arc Welding (GMAW)
 
System Of Linear Equations
System Of Linear EquationsSystem Of Linear Equations
System Of Linear Equations
 
the Road Not Taken- Robert Frost
the Road Not Taken- Robert Frostthe Road Not Taken- Robert Frost
the Road Not Taken- Robert Frost
 
FOUR BAR CHAIN AND INVERSIONS
FOUR BAR CHAIN AND INVERSIONSFOUR BAR CHAIN AND INVERSIONS
FOUR BAR CHAIN AND INVERSIONS
 
Laplace transform: UNIT STEP FUNCTION, SECOND SHIFTING THEOREM, DIRAC DELTA F...
Laplace transform: UNIT STEP FUNCTION, SECOND SHIFTING THEOREM, DIRAC DELTA F...Laplace transform: UNIT STEP FUNCTION, SECOND SHIFTING THEOREM, DIRAC DELTA F...
Laplace transform: UNIT STEP FUNCTION, SECOND SHIFTING THEOREM, DIRAC DELTA F...
 
Thermodynamic sysytem and control volume and properties
Thermodynamic sysytem and control volume and propertiesThermodynamic sysytem and control volume and properties
Thermodynamic sysytem and control volume and properties
 
Extinction
ExtinctionExtinction
Extinction
 

KĂŒrzlich hochgeladen

Work Experience-Dalton Park.pptxfvvvvvvv
Work Experience-Dalton Park.pptxfvvvvvvvWork Experience-Dalton Park.pptxfvvvvvvv
Work Experience-Dalton Park.pptxfvvvvvvvLewisJB
 
Application of Residue Theorem to evaluate real integrations.pptx
Application of Residue Theorem to evaluate real integrations.pptxApplication of Residue Theorem to evaluate real integrations.pptx
Application of Residue Theorem to evaluate real integrations.pptx959SahilShah
 
INFLUENCE OF NANOSILICA ON THE PROPERTIES OF CONCRETE
INFLUENCE OF NANOSILICA ON THE PROPERTIES OF CONCRETEINFLUENCE OF NANOSILICA ON THE PROPERTIES OF CONCRETE
INFLUENCE OF NANOSILICA ON THE PROPERTIES OF CONCRETEroselinkalist12
 
Concrete Mix Design - IS 10262-2019 - .pptx
Concrete Mix Design - IS 10262-2019 - .pptxConcrete Mix Design - IS 10262-2019 - .pptx
Concrete Mix Design - IS 10262-2019 - .pptxKartikeyaDwivedi3
 
Software and Systems Engineering Standards: Verification and Validation of Sy...
Software and Systems Engineering Standards: Verification and Validation of Sy...Software and Systems Engineering Standards: Verification and Validation of Sy...
Software and Systems Engineering Standards: Verification and Validation of Sy...VICTOR MAESTRE RAMIREZ
 
computer application and construction management
computer application and construction managementcomputer application and construction management
computer application and construction managementMariconPadriquez1
 
Introduction to Machine Learning Unit-3 for II MECH
Introduction to Machine Learning Unit-3 for II MECHIntroduction to Machine Learning Unit-3 for II MECH
Introduction to Machine Learning Unit-3 for II MECHC Sai Kiran
 
Architect Hassan Khalil Portfolio for 2024
Architect Hassan Khalil Portfolio for 2024Architect Hassan Khalil Portfolio for 2024
Architect Hassan Khalil Portfolio for 2024hassan khalil
 
TechTACÂź CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
TechTACÂź CFD Report Summary: A Comparison of Two Types of Tubing Anchor CatchersTechTACÂź CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
TechTACÂź CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catcherssdickerson1
 
Earthing details of Electrical Substation
Earthing details of Electrical SubstationEarthing details of Electrical Substation
Earthing details of Electrical Substationstephanwindworld
 
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdfCCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdfAsst.prof M.Gokilavani
 
Solving The Right Triangles PowerPoint 2.ppt
Solving The Right Triangles PowerPoint 2.pptSolving The Right Triangles PowerPoint 2.ppt
Solving The Right Triangles PowerPoint 2.pptJasonTagapanGulla
 
Vishratwadi & Ghorpadi Bridge Tender documents
Vishratwadi & Ghorpadi Bridge Tender documentsVishratwadi & Ghorpadi Bridge Tender documents
Vishratwadi & Ghorpadi Bridge Tender documentsSachinPawar510423
 
welding defects observed during the welding
welding defects observed during the weldingwelding defects observed during the welding
welding defects observed during the weldingMuhammadUzairLiaqat
 
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
 
Electronically Controlled suspensions system .pdf
Electronically Controlled suspensions system .pdfElectronically Controlled suspensions system .pdf
Electronically Controlled suspensions system .pdfme23b1001
 

KĂŒrzlich hochgeladen (20)

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
 
Work Experience-Dalton Park.pptxfvvvvvvv
Work Experience-Dalton Park.pptxfvvvvvvvWork Experience-Dalton Park.pptxfvvvvvvv
Work Experience-Dalton Park.pptxfvvvvvvv
 
Application of Residue Theorem to evaluate real integrations.pptx
Application of Residue Theorem to evaluate real integrations.pptxApplication of Residue Theorem to evaluate real integrations.pptx
Application of Residue Theorem to evaluate real integrations.pptx
 
INFLUENCE OF NANOSILICA ON THE PROPERTIES OF CONCRETE
INFLUENCE OF NANOSILICA ON THE PROPERTIES OF CONCRETEINFLUENCE OF NANOSILICA ON THE PROPERTIES OF CONCRETE
INFLUENCE OF NANOSILICA ON THE PROPERTIES OF CONCRETE
 
Concrete Mix Design - IS 10262-2019 - .pptx
Concrete Mix Design - IS 10262-2019 - .pptxConcrete Mix Design - IS 10262-2019 - .pptx
Concrete Mix Design - IS 10262-2019 - .pptx
 
Design and analysis of solar grass cutter.pdf
Design and analysis of solar grass cutter.pdfDesign and analysis of solar grass cutter.pdf
Design and analysis of solar grass cutter.pdf
 
Software and Systems Engineering Standards: Verification and Validation of Sy...
Software and Systems Engineering Standards: Verification and Validation of Sy...Software and Systems Engineering Standards: Verification and Validation of Sy...
Software and Systems Engineering Standards: Verification and Validation of Sy...
 
computer application and construction management
computer application and construction managementcomputer application and construction management
computer application and construction management
 
Introduction to Machine Learning Unit-3 for II MECH
Introduction to Machine Learning Unit-3 for II MECHIntroduction to Machine Learning Unit-3 for II MECH
Introduction to Machine Learning Unit-3 for II MECH
 
Architect Hassan Khalil Portfolio for 2024
Architect Hassan Khalil Portfolio for 2024Architect Hassan Khalil Portfolio for 2024
Architect Hassan Khalil Portfolio for 2024
 
TechTACÂź CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
TechTACÂź CFD Report Summary: A Comparison of Two Types of Tubing Anchor CatchersTechTACÂź CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
TechTACÂź CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
 
POWER SYSTEMS-1 Complete notes examples
POWER SYSTEMS-1 Complete notes  examplesPOWER SYSTEMS-1 Complete notes  examples
POWER SYSTEMS-1 Complete notes examples
 
Earthing details of Electrical Substation
Earthing details of Electrical SubstationEarthing details of Electrical Substation
Earthing details of Electrical Substation
 
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdfCCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
 
Solving The Right Triangles PowerPoint 2.ppt
Solving The Right Triangles PowerPoint 2.pptSolving The Right Triangles PowerPoint 2.ppt
Solving The Right Triangles PowerPoint 2.ppt
 
Vishratwadi & Ghorpadi Bridge Tender documents
Vishratwadi & Ghorpadi Bridge Tender documentsVishratwadi & Ghorpadi Bridge Tender documents
Vishratwadi & Ghorpadi Bridge Tender documents
 
welding defects observed during the welding
welding defects observed during the weldingwelding defects observed during the welding
welding defects observed during the welding
 
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
 
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
 
Electronically Controlled suspensions system .pdf
Electronically Controlled suspensions system .pdfElectronically Controlled suspensions system .pdf
Electronically Controlled suspensions system .pdf
 

self inductance , mutual inductance and coeffecient of coupling

  • 1. Gandhinagar Institute Of Technology Element Of Electrical Engineering (2110014) Active Learning Assignment Topic: Guided By: Branch: Division: Rahish Silavat
  • 2.
  • 3.
  • 4. Self-Inductance When the switch is closed, the battery (source emf) starts pushing electrons around the circuit. The current starts to rise, creating an increasing magnetic flux through the circuit. This increasing flux creates an induced emf in the circuit. The induced emf will create a flux to oppose the increasing flux. The direction of this induced emf will be opposite the source emf. This results in a gradual increase in the current rather than an instantaneous one. The induced emf is called the self-induced emf or back emf.
  • 5. ‱When an electric current is passed through an insulated conducting coil, it gives rise to a magnetic field in the coil so that the coil itself behaves like a magnet. ‱The magnetic flux produced by the current in the coil is linked with the coil itself.
  • 6. DEFINATION As the strength of the current in the coil is changed, the flux linked with the coil also changes. Under such circumstances an emf is induced in the coil too. Such emf is called a self-induced emf and this phenomenon is known as self-induction.
  • 8. Current flows In anti-clock Wise direction Current flows In clock Wise direction
  • 9.
  • 10.
  • 11.
  • 12.
  • 13.
  • 14.
  • 15. Mutual induction is the phenomenon of production of induced emf in one coil due to a change of current in the neighboring coil.
  • 16. At any instant , Magnetic Flux linked with the secondary coil ∝ current in the primary coil. i.e. ᔩ ∝ I ᔩ=MI The proportionality constant M is called th mutual inductance or coeffecient of mutual induction of the two coils. Any change in the current I sets up and induced emf in the secondary coil which is given by E= âˆ’đ‘‘á”© 𝑑𝑡 = -M −𝑑I 𝑑𝑡
  • 17. Consider two long co-axial solenoids S1 and S2, with S2 wound over S1 . Let l= length of each solenoid r1, r2=radii of the two solenoids 𝐮 = 𝜋r1 2 = area of cross section of inner solenoid S1 N1, N2 = number of turns in the two solenoids First we pass a time varying current I2 through S2 . The magnet field setup inside S2 due to I2 B2 = ”0 n2 I2 where n2 = N2 /l =number of turns per unit length of S2. Total magnetic flux linked with the inner solenoid S1 is Ί1 = B2 A N1 = ”0 n2 I2 A N1 ∎ Mutual inductance of coil 1 w.r.t coil 2 is M12 = Ί1 / I2 = ”0 n2 A N1 = ”0 N2 A N1 / l
  • 18. We now consider the flux linked with the outer solenoid S2 due to the current I1 in the inner solenoid S1 . The field B1 due to I1 is constant inside S1 but zero in the annular region between the two solenoids. hence. B1 = ”0 n1 I1 Where n1 = N1 /l = the number of turns per unit length of S1 The total flux linked with the outer solenoid S2 is Ί2 = B1 A N2 = ”0 n1 I1 A N2 = ”0 N2 A N1 I1 / l ∎ Mutual inductance of coil 2 w.r.t coil 1 is M21 = Ί2 / I1 = ”0 N2 A N1 / l Clearly, M12 = M21 = M ∎M= ”0 N2 A N1 / l Thus mutual inductance of two coils is the property of their combination. It does not matter which one of them functions as primary or secondary coil.
  • 19. 1. Number of Turns : larger the number of turns , larger the mutual inductance. 2. Larger the common cross-sectional area of two solenoids , larger will be their mutual inductance. 3. Larger the distance b/w two solenoids , smaller will be the magnetic flux linked with the secondary coil due to current in the primary coil. Hence smaller will be the value of M.
  • 20.
  • 21.
  • 22.
  • 23. Multiplying equations (15) and (17), But N1Ί1/i1 = Self induced of coil 1 = L1 N2Ί2/i2 = Self induced of coil 2 = L2 ... M2 = k1k2L1L2 ... M = √(k1k2) √(L1L2) Let k = √(k1k2) ... M = k √(L1L2) ............(18) where k is called coefficient of coupling. ... k = M/(√(L1L2)) .........(19)