SlideShare a Scribd company logo
1 of 25
Sub :ELEMENTS OF ELECTRICAL DESIGN
TOPIC : DESIGN OF CHOKE COIL
1
GROUP NAME :
1) Ankit patil(150990109009)
2) Ravijeet vashi(150990109010)
3) Raviraj solanki (150990109011)
Guided by : Mr.Sourav choubey
Introduction of Choke
A coil of copper wire
wound on laminated iron
core has negligible
resistance is known as
choke coil.
When an ac voltage is
applied to the purely
inductive coil, an emf
known as self-induced emf
is induced in the coil due to
self-inductance of the coil
which opposes the applied
voltage.
In the case of tube light, the
sudden stop of current through
the choke produces voltage of
several hundreds volts (approx.
900 to 1000V) across it, because
of self inductance of coil.
The high voltage starts flow of
electrons from one filament to
the other through the gas filled
inside the tube.
Design Procedure of choke(No air- gap)
The Design Procedure of choke coil is similar to the single phase small
transformer design.
Similar terms are use in this case also.
The only different is that , it has only one winding support on the iron
core.
Therefore, the Turns per volt is found on the basis of 2 output VA this
means if voltage V is applied across choke and I current through the
choke, then is taken to find Tefrom the reference table.
VI
Steps in designing the choke
EMF equation E = 4.44Φmf
N
m mB is given. If not take B = 1Wb/m2
Stacking factor Ks=0.9 is assumed
Gross area Ai /0.9
2
VI
2
VA Q
= = 2 ,find Tefor this value from the table.
Bm
mAi 
.
Square section is used. Width of central limb A =
For winding, Turns T=V x Te
δ is given = 2.5A/mm2Area of the conductor wire =I/δ
From this area (a) = π/4 d2
From above equation find d.
Refer standard conductor size table and find the matching size d of conductor and
with insertion diameter d1
Space in window for winding = and
Increase the space area by 20% to accommodate former insulation, packing etc.
The total area required = 1.2
Ag
Sf
T a
d1 
 d 
2
Sf 0.8
Sf
T a
2
Design of variable air-gap single phase and 3
phase choke coil
In this section we have
study design procedure
of choke operating on (I)
single phase (II)Three
phase with adjustable air-
gap between limbs of
iron core.
Construction
Iron core
variable by
of one
rotating
part
wheel
and one part is fixed.
Copper coils with N/2
turns.
Rotating wheel to adjust air-
gap.
In circuit
R= Resistance of coil
L= Inductance of
coil
N=Number of turns of
coil
V=voltage with frequency f
According to basic equation, dt
V  iR  L
di
dt
L  N
dand
dt
v  iR  dtN
 iR  N
d
Step in Designing a Variable choke
A. For Magnetic part
B. For Electric part
C. Mechanical dimension
D. To find R,L,Z of the coil
For Magnetic part
1. To find constant k
K  Bg.Ai 
0VphIph
2fLg
where µ0=Permeability
f= frequency
Vph=phase voltage in r.m.s
Iph=phase voltage current in r.m.s
2. Knowing the relation
Bg
2
Ai 
K
Bg
2
.Ai  K
Bg
K
Ai 
3. Assume staking factor Ks=0.9
Agi
Ks 
Ai
 0.9
Agi 
Ai

Ai
; Agi  Ai
Ks 0.9
4. AT is Amp.Turns (m.m.f) for the air gap lg.
(lg is total length of each air gap
if lg’ is the length of each air
gap
for single phase chokethen lg= 2 lg’
and lg= 1.5 lg’ for 3 phase values
AT required for iron part = ATi
ATi << ATg
ATi = 10 to 20 % of ATg
so that ATtotal= ATi + ATg
0
ATg 
Bg.lg
For Electric part
1. Number of Turn per
coil = AT/I where I= current
There are 2 coil of N/2 turns for single phase variable choke
There are 3 coil each of N turns for a 3-phase variable choke.
thus number of turns for the coil are decided.
2. Current density (δ)
Generally enameled copper conductors are used for the choke
winding.
δ=2.3 to 2.5 Amp/mm2
for single phase choke current is I
for 3-phase choke current is taken i.e. Iph
3. To find diameter (d) of bare conductor
C.S. area of bare conductor
Hence
4
a = 
d 2
4.a

d 
4. Use of standard size conductor tables
From these table exact or nearest size of conductor is selected.
(d and a )
d’ = diameter of insulated
conductor So, area of insulated conductor
a’ =

d1
2
4
mm2
Mechanical dimension
these is for single phase choke
Window area for single phase choke
Window area for 3-phase choke
 
 d1
 d 
2
Aw'
1. Window size
average value of space factor sf=0.8
sf= active area/gross area
2 
N
a'
2
sf
Aw'
N a'
Aw'
2 N a'
sf
coil to be2. Depth df and height hf of
accommodated in the window space.
hf=actual height of coil
2
Aw
Ww 
hf’ =available height
df =actual depth of coil
df’ =depth of coil
Window area AAww
=H2wW. Ww
2 w
Some clearance on both side 10+10=20mm be kept
for formar etc. as shown in the figure.
Available height for winding hf’=Hw-20mm
Height wise turns per larger Nh=
Depth wise turns per layer Nd=
Actual depth of coil, df=df’+5mm
Actual height of coil, hf= hf’+
hf'
Nh
d1
N
3. To find and distance between the two coils in the
window (dc) and overall dimension.
dc=Ww-2df
D =
D = Ww+ A
Total width = D+A
= Ww+2A
Distance (D) betweenoftwo lines.
Ww  AA
2 2
To find R,L,Z of the coil
•
where
•
• Reactance XLof coil = Ω
AND XL= 2πfL Ω
L= Henry
R 
l

Iph
a=C.S area of conductor
Impedance of coil with maximum air-gap Z 
Vph

Z2
 R2
Xl
2f
a
=Resistivity of copper = 1.73 x10-8
Thank You….

More Related Content

What's hot

ppt on the Transformer
ppt on the Transformerppt on the Transformer
ppt on the TransformerYuvraj Singh
 
Electromagnetic field (emf)
Electromagnetic field (emf)Electromagnetic field (emf)
Electromagnetic field (emf)Shawan Roy
 
Electrical safety precautions and Electric shocks
Electrical safety precautions and Electric shocksElectrical safety precautions and Electric shocks
Electrical safety precautions and Electric shocksRiddhi Patel
 
presentation on power grid system
presentation on power grid systempresentation on power grid system
presentation on power grid systemrahul123gupta
 
Transformer bpt students in physiotherapy
Transformer  bpt students in physiotherapy Transformer  bpt students in physiotherapy
Transformer bpt students in physiotherapy Vishalsahu61
 
Types Of Capacitors And Their Applications
Types Of Capacitors And Their ApplicationsTypes Of Capacitors And Their Applications
Types Of Capacitors And Their Applicationselprocus
 
Basic electricity
Basic electricityBasic electricity
Basic electricitySreeraj S R
 
Electromagnetic Induction
Electromagnetic InductionElectromagnetic Induction
Electromagnetic InductionShafie Sofian
 
Types of currents in Electrotherapy.pptx
Types of currents in Electrotherapy.pptxTypes of currents in Electrotherapy.pptx
Types of currents in Electrotherapy.pptxJamia Millia Islamia
 
Capacitor Presentation
Capacitor PresentationCapacitor Presentation
Capacitor PresentationTayyab Hussain
 

What's hot (20)

Capacitor
CapacitorCapacitor
Capacitor
 
ppt on the Transformer
ppt on the Transformerppt on the Transformer
ppt on the Transformer
 
Electromagnetic field (emf)
Electromagnetic field (emf)Electromagnetic field (emf)
Electromagnetic field (emf)
 
Electrical safety precautions and Electric shocks
Electrical safety precautions and Electric shocksElectrical safety precautions and Electric shocks
Electrical safety precautions and Electric shocks
 
presentation on power grid system
presentation on power grid systempresentation on power grid system
presentation on power grid system
 
Transformer bpt students in physiotherapy
Transformer  bpt students in physiotherapy Transformer  bpt students in physiotherapy
Transformer bpt students in physiotherapy
 
Types Of Capacitors And Their Applications
Types Of Capacitors And Their ApplicationsTypes Of Capacitors And Their Applications
Types Of Capacitors And Their Applications
 
Transformer
TransformerTransformer
Transformer
 
Basic electricity
Basic electricityBasic electricity
Basic electricity
 
Elasticity
ElasticityElasticity
Elasticity
 
Magnetism
MagnetismMagnetism
Magnetism
 
Rectifiers
RectifiersRectifiers
Rectifiers
 
Electromagnetic Induction
Electromagnetic InductionElectromagnetic Induction
Electromagnetic Induction
 
Transformers
TransformersTransformers
Transformers
 
Types of currents in Electrotherapy.pptx
Types of currents in Electrotherapy.pptxTypes of currents in Electrotherapy.pptx
Types of currents in Electrotherapy.pptx
 
inductance
 inductance inductance
inductance
 
Alternating current
Alternating  currentAlternating  current
Alternating current
 
Capacitor Presentation
Capacitor PresentationCapacitor Presentation
Capacitor Presentation
 
Alternating Current and Direct Current
Alternating Current and Direct CurrentAlternating Current and Direct Current
Alternating Current and Direct Current
 
Rectifier
RectifierRectifier
Rectifier
 

Similar to design of chock coil

Design of transformer and chock coil
Design of transformer and chock coilDesign of transformer and chock coil
Design of transformer and chock coilShubham Champaneri
 
EC8252 NOTES 3rd to 5th unit_compressed.pdf
EC8252 NOTES 3rd to 5th unit_compressed.pdfEC8252 NOTES 3rd to 5th unit_compressed.pdf
EC8252 NOTES 3rd to 5th unit_compressed.pdfkabileshsk2
 
Concept of general terms pertaining to rotating machines
Concept of general terms pertaining to rotating machinesConcept of general terms pertaining to rotating machines
Concept of general terms pertaining to rotating machinesvishalgohel12195
 
Incomplete PPT on first topic.pptx [Autosaved] [Autosaved].ppt
Incomplete PPT on first topic.pptx [Autosaved] [Autosaved].pptIncomplete PPT on first topic.pptx [Autosaved] [Autosaved].ppt
Incomplete PPT on first topic.pptx [Autosaved] [Autosaved].pptShubhobrataRudr
 
transformer_design.pdf
transformer_design.pdftransformer_design.pdf
transformer_design.pdfNerupaSharma
 
Unit III Design of Electrical Machines
Unit III Design of Electrical MachinesUnit III Design of Electrical Machines
Unit III Design of Electrical Machinesnganesh90
 
Electrical System Design transformer 4.pptx
Electrical System Design transformer 4.pptxElectrical System Design transformer 4.pptx
Electrical System Design transformer 4.pptxGulAhmad16
 
12695 solid state m icrowave devices
12695 solid state m icrowave devices12695 solid state m icrowave devices
12695 solid state m icrowave devicesMohit Vyas
 
Alternator Basics.pdf
Alternator Basics.pdfAlternator Basics.pdf
Alternator Basics.pdfbhupesh Dave
 
Ac circuits
Ac circuitsAc circuits
Ac circuitsEkeeda
 
3. a. c. circits
3. a. c. circits 3. a. c. circits
3. a. c. circits Ekeeda
 
Ac circuits
Ac circuitsAc circuits
Ac circuitsEkeeda
 
Alternator / Synchronous Generator
Alternator / Synchronous GeneratorAlternator / Synchronous Generator
Alternator / Synchronous GeneratorRidwanul Hoque
 
Design of Synchronous machine.pdf
Design of Synchronous machine.pdfDesign of Synchronous machine.pdf
Design of Synchronous machine.pdfMaulikPandya25
 
diseño y conocimineto sobre los transformadores electricos
diseño y conocimineto sobre los transformadores electricosdiseño y conocimineto sobre los transformadores electricos
diseño y conocimineto sobre los transformadores electricosdibujante32
 

Similar to design of chock coil (20)

Design of transformer and chock coil
Design of transformer and chock coilDesign of transformer and chock coil
Design of transformer and chock coil
 
EC8252 NOTES 3rd to 5th unit_compressed.pdf
EC8252 NOTES 3rd to 5th unit_compressed.pdfEC8252 NOTES 3rd to 5th unit_compressed.pdf
EC8252 NOTES 3rd to 5th unit_compressed.pdf
 
Concept of general terms pertaining to rotating machines
Concept of general terms pertaining to rotating machinesConcept of general terms pertaining to rotating machines
Concept of general terms pertaining to rotating machines
 
Incomplete PPT on first topic.pptx [Autosaved] [Autosaved].ppt
Incomplete PPT on first topic.pptx [Autosaved] [Autosaved].pptIncomplete PPT on first topic.pptx [Autosaved] [Autosaved].ppt
Incomplete PPT on first topic.pptx [Autosaved] [Autosaved].ppt
 
transformer_design.pdf
transformer_design.pdftransformer_design.pdf
transformer_design.pdf
 
Dc generator
Dc generatorDc generator
Dc generator
 
Transformer Design
Transformer DesignTransformer Design
Transformer Design
 
Designing variable choke coil
Designing variable choke coilDesigning variable choke coil
Designing variable choke coil
 
Unit III Design of Electrical Machines
Unit III Design of Electrical MachinesUnit III Design of Electrical Machines
Unit III Design of Electrical Machines
 
Electrical System Design transformer 4.pptx
Electrical System Design transformer 4.pptxElectrical System Design transformer 4.pptx
Electrical System Design transformer 4.pptx
 
12695 solid state m icrowave devices
12695 solid state m icrowave devices12695 solid state m icrowave devices
12695 solid state m icrowave devices
 
Alternator Basics.pdf
Alternator Basics.pdfAlternator Basics.pdf
Alternator Basics.pdf
 
Ac circuits
Ac circuitsAc circuits
Ac circuits
 
3. a. c. circits
3. a. c. circits 3. a. c. circits
3. a. c. circits
 
Ac circuits
Ac circuitsAc circuits
Ac circuits
 
Alternator / Synchronous Generator
Alternator / Synchronous GeneratorAlternator / Synchronous Generator
Alternator / Synchronous Generator
 
Exposición de física
Exposición de físicaExposición de física
Exposición de física
 
Design of Synchronous machine.pdf
Design of Synchronous machine.pdfDesign of Synchronous machine.pdf
Design of Synchronous machine.pdf
 
Unit 2.doc
Unit 2.docUnit 2.doc
Unit 2.doc
 
diseño y conocimineto sobre los transformadores electricos
diseño y conocimineto sobre los transformadores electricosdiseño y conocimineto sobre los transformadores electricos
diseño y conocimineto sobre los transformadores electricos
 

More from Raviraj solanki

Selection Of Circuit Breaker
Selection Of Circuit BreakerSelection Of Circuit Breaker
Selection Of Circuit BreakerRaviraj solanki
 
TBEA ENERGY (INDIA) PVT LTD
TBEA ENERGY (INDIA) PVT LTDTBEA ENERGY (INDIA) PVT LTD
TBEA ENERGY (INDIA) PVT LTDRaviraj solanki
 
TBEA ENERGY (INDIA) PVT LTD
 TBEA   ENERGY (INDIA) PVT LTD TBEA   ENERGY (INDIA) PVT LTD
TBEA ENERGY (INDIA) PVT LTDRaviraj solanki
 
DISTANCE PROTECTION RELAY
DISTANCE PROTECTION RELAYDISTANCE PROTECTION RELAY
DISTANCE PROTECTION RELAYRaviraj solanki
 
Simulation of Boost Converter Using MATLAB SIMULINK.
Simulation of  Boost Converter Using MATLAB SIMULINK.Simulation of  Boost Converter Using MATLAB SIMULINK.
Simulation of Boost Converter Using MATLAB SIMULINK.Raviraj solanki
 
Inter Connected Power System(Turbine Speed Governing Mechanism )
Inter Connected Power System(Turbine Speed Governing Mechanism)Inter Connected Power System(Turbine Speed Governing Mechanism)
Inter Connected Power System(Turbine Speed Governing Mechanism )Raviraj solanki
 
Engineering Economics and Management
Engineering Economics and Management Engineering Economics and Management
Engineering Economics and Management Raviraj solanki
 
Switch Gear & Protection (conventional circuit breaker)
Switch Gear & Protection	(conventional circuit breaker)Switch Gear & Protection	(conventional circuit breaker)
Switch Gear & Protection (conventional circuit breaker)Raviraj solanki
 
continuity equation and relaxation time
continuity equation and relaxation timecontinuity equation and relaxation time
continuity equation and relaxation timeRaviraj solanki
 
types of winding dc machine
 types of winding dc machine types of winding dc machine
types of winding dc machineRaviraj solanki
 

More from Raviraj solanki (14)

Selection Of Circuit Breaker
Selection Of Circuit BreakerSelection Of Circuit Breaker
Selection Of Circuit Breaker
 
TBEA ENERGY (INDIA) PVT LTD
TBEA ENERGY (INDIA) PVT LTDTBEA ENERGY (INDIA) PVT LTD
TBEA ENERGY (INDIA) PVT LTD
 
TBEA ENERGY (INDIA) PVT LTD
 TBEA   ENERGY (INDIA) PVT LTD TBEA   ENERGY (INDIA) PVT LTD
TBEA ENERGY (INDIA) PVT LTD
 
DISTANCE PROTECTION RELAY
DISTANCE PROTECTION RELAYDISTANCE PROTECTION RELAY
DISTANCE PROTECTION RELAY
 
Simulation of Boost Converter Using MATLAB SIMULINK.
Simulation of  Boost Converter Using MATLAB SIMULINK.Simulation of  Boost Converter Using MATLAB SIMULINK.
Simulation of Boost Converter Using MATLAB SIMULINK.
 
Inter Connected Power System(Turbine Speed Governing Mechanism )
Inter Connected Power System(Turbine Speed Governing Mechanism)Inter Connected Power System(Turbine Speed Governing Mechanism)
Inter Connected Power System(Turbine Speed Governing Mechanism )
 
Engineering Economics and Management
Engineering Economics and Management Engineering Economics and Management
Engineering Economics and Management
 
FACT devices
FACT devicesFACT devices
FACT devices
 
Switch Gear & Protection (conventional circuit breaker)
Switch Gear & Protection	(conventional circuit breaker)Switch Gear & Protection	(conventional circuit breaker)
Switch Gear & Protection (conventional circuit breaker)
 
continuity equation and relaxation time
continuity equation and relaxation timecontinuity equation and relaxation time
continuity equation and relaxation time
 
time response analysis
time response analysistime response analysis
time response analysis
 
1 phase semiconverter
1 phase semiconverter1 phase semiconverter
1 phase semiconverter
 
Design engineering
Design engineering  Design engineering
Design engineering
 
types of winding dc machine
 types of winding dc machine types of winding dc machine
types of winding dc machine
 

Recently uploaded

Thermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - VThermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - VDineshKumar4165
 
data_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdfdata_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdfJiananWang21
 
Hostel management system project report..pdf
Hostel management system project report..pdfHostel management system project report..pdf
Hostel management system project report..pdfKamal Acharya
 
Double Revolving field theory-how the rotor develops torque
Double Revolving field theory-how the rotor develops torqueDouble Revolving field theory-how the rotor develops torque
Double Revolving field theory-how the rotor develops torqueBhangaleSonal
 
2016EF22_0 solar project report rooftop projects
2016EF22_0 solar project report rooftop projects2016EF22_0 solar project report rooftop projects
2016EF22_0 solar project report rooftop projectssmsksolar
 
VIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 BookingVIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 Bookingdharasingh5698
 
Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...
Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...
Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...roncy bisnoi
 
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXssuser89054b
 
Call Girls In Bangalore ☎ 7737669865 🥵 Book Your One night Stand
Call Girls In Bangalore ☎ 7737669865 🥵 Book Your One night StandCall Girls In Bangalore ☎ 7737669865 🥵 Book Your One night Stand
Call Girls In Bangalore ☎ 7737669865 🥵 Book Your One night Standamitlee9823
 
Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...
Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...
Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...Arindam Chakraborty, Ph.D., P.E. (CA, TX)
 
A Study of Urban Area Plan for Pabna Municipality
A Study of Urban Area Plan for Pabna MunicipalityA Study of Urban Area Plan for Pabna Municipality
A Study of Urban Area Plan for Pabna MunicipalityMorshed Ahmed Rahath
 
UNIT - IV - Air Compressors and its Performance
UNIT - IV - Air Compressors and its PerformanceUNIT - IV - Air Compressors and its Performance
UNIT - IV - Air Compressors and its Performancesivaprakash250
 
DC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equationDC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equationBhangaleSonal
 
Minimum and Maximum Modes of microprocessor 8086
Minimum and Maximum Modes of microprocessor 8086Minimum and Maximum Modes of microprocessor 8086
Minimum and Maximum Modes of microprocessor 8086anil_gaur
 
ONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdf
ONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdfONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdf
ONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdfKamal Acharya
 
Introduction to Serverless with AWS Lambda
Introduction to Serverless with AWS LambdaIntroduction to Serverless with AWS Lambda
Introduction to Serverless with AWS LambdaOmar Fathy
 
KubeKraft presentation @CloudNativeHooghly
KubeKraft presentation @CloudNativeHooghlyKubeKraft presentation @CloudNativeHooghly
KubeKraft presentation @CloudNativeHooghlysanyuktamishra911
 

Recently uploaded (20)

Thermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - VThermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - V
 
data_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdfdata_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdf
 
Hostel management system project report..pdf
Hostel management system project report..pdfHostel management system project report..pdf
Hostel management system project report..pdf
 
Double Revolving field theory-how the rotor develops torque
Double Revolving field theory-how the rotor develops torqueDouble Revolving field theory-how the rotor develops torque
Double Revolving field theory-how the rotor develops torque
 
2016EF22_0 solar project report rooftop projects
2016EF22_0 solar project report rooftop projects2016EF22_0 solar project report rooftop projects
2016EF22_0 solar project report rooftop projects
 
VIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 BookingVIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 Booking
 
Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...
Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...
Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...
 
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
 
Call Girls In Bangalore ☎ 7737669865 🥵 Book Your One night Stand
Call Girls In Bangalore ☎ 7737669865 🥵 Book Your One night StandCall Girls In Bangalore ☎ 7737669865 🥵 Book Your One night Stand
Call Girls In Bangalore ☎ 7737669865 🥵 Book Your One night Stand
 
Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...
Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...
Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...
 
(INDIRA) Call Girl Aurangabad Call Now 8617697112 Aurangabad Escorts 24x7
(INDIRA) Call Girl Aurangabad Call Now 8617697112 Aurangabad Escorts 24x7(INDIRA) Call Girl Aurangabad Call Now 8617697112 Aurangabad Escorts 24x7
(INDIRA) Call Girl Aurangabad Call Now 8617697112 Aurangabad Escorts 24x7
 
A Study of Urban Area Plan for Pabna Municipality
A Study of Urban Area Plan for Pabna MunicipalityA Study of Urban Area Plan for Pabna Municipality
A Study of Urban Area Plan for Pabna Municipality
 
UNIT - IV - Air Compressors and its Performance
UNIT - IV - Air Compressors and its PerformanceUNIT - IV - Air Compressors and its Performance
UNIT - IV - Air Compressors and its Performance
 
(INDIRA) Call Girl Bhosari Call Now 8617697112 Bhosari Escorts 24x7
(INDIRA) Call Girl Bhosari Call Now 8617697112 Bhosari Escorts 24x7(INDIRA) Call Girl Bhosari Call Now 8617697112 Bhosari Escorts 24x7
(INDIRA) Call Girl Bhosari Call Now 8617697112 Bhosari Escorts 24x7
 
DC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equationDC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equation
 
Minimum and Maximum Modes of microprocessor 8086
Minimum and Maximum Modes of microprocessor 8086Minimum and Maximum Modes of microprocessor 8086
Minimum and Maximum Modes of microprocessor 8086
 
ONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdf
ONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdfONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdf
ONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdf
 
Introduction to Serverless with AWS Lambda
Introduction to Serverless with AWS LambdaIntroduction to Serverless with AWS Lambda
Introduction to Serverless with AWS Lambda
 
Call Girls in Netaji Nagar, Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
Call Girls in Netaji Nagar, Delhi 💯 Call Us 🔝9953056974 🔝 Escort ServiceCall Girls in Netaji Nagar, Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
Call Girls in Netaji Nagar, Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
 
KubeKraft presentation @CloudNativeHooghly
KubeKraft presentation @CloudNativeHooghlyKubeKraft presentation @CloudNativeHooghly
KubeKraft presentation @CloudNativeHooghly
 

design of chock coil

  • 1. Sub :ELEMENTS OF ELECTRICAL DESIGN TOPIC : DESIGN OF CHOKE COIL 1 GROUP NAME : 1) Ankit patil(150990109009) 2) Ravijeet vashi(150990109010) 3) Raviraj solanki (150990109011) Guided by : Mr.Sourav choubey
  • 2. Introduction of Choke A coil of copper wire wound on laminated iron core has negligible resistance is known as choke coil. When an ac voltage is applied to the purely inductive coil, an emf known as self-induced emf is induced in the coil due to self-inductance of the coil which opposes the applied voltage.
  • 3. In the case of tube light, the sudden stop of current through the choke produces voltage of several hundreds volts (approx. 900 to 1000V) across it, because of self inductance of coil. The high voltage starts flow of electrons from one filament to the other through the gas filled inside the tube.
  • 4. Design Procedure of choke(No air- gap) The Design Procedure of choke coil is similar to the single phase small transformer design. Similar terms are use in this case also. The only different is that , it has only one winding support on the iron core. Therefore, the Turns per volt is found on the basis of 2 output VA this means if voltage V is applied across choke and I current through the choke, then is taken to find Tefrom the reference table. VI
  • 5. Steps in designing the choke EMF equation E = 4.44Φmf N m mB is given. If not take B = 1Wb/m2 Stacking factor Ks=0.9 is assumed Gross area Ai /0.9 2 VI 2 VA Q = = 2 ,find Tefor this value from the table. Bm mAi  .
  • 6. Square section is used. Width of central limb A = For winding, Turns T=V x Te δ is given = 2.5A/mm2Area of the conductor wire =I/δ From this area (a) = π/4 d2 From above equation find d. Refer standard conductor size table and find the matching size d of conductor and with insertion diameter d1 Space in window for winding = and Increase the space area by 20% to accommodate former insulation, packing etc. The total area required = 1.2 Ag Sf T a d1   d  2 Sf 0.8 Sf T a
  • 7. 2
  • 8. Design of variable air-gap single phase and 3 phase choke coil In this section we have study design procedure of choke operating on (I) single phase (II)Three phase with adjustable air- gap between limbs of iron core.
  • 9. Construction Iron core variable by of one rotating part wheel and one part is fixed. Copper coils with N/2 turns. Rotating wheel to adjust air- gap.
  • 10. In circuit R= Resistance of coil L= Inductance of coil N=Number of turns of coil V=voltage with frequency f According to basic equation, dt V  iR  L di dt L  N dand dt v  iR  dtN  iR  N d
  • 11. Step in Designing a Variable choke A. For Magnetic part B. For Electric part C. Mechanical dimension D. To find R,L,Z of the coil
  • 12. For Magnetic part 1. To find constant k K  Bg.Ai  0VphIph 2fLg where µ0=Permeability f= frequency Vph=phase voltage in r.m.s Iph=phase voltage current in r.m.s
  • 13. 2. Knowing the relation Bg 2 Ai  K Bg 2 .Ai  K Bg K Ai 
  • 14. 3. Assume staking factor Ks=0.9 Agi Ks  Ai  0.9 Agi  Ai  Ai ; Agi  Ai Ks 0.9
  • 15. 4. AT is Amp.Turns (m.m.f) for the air gap lg. (lg is total length of each air gap if lg’ is the length of each air gap for single phase chokethen lg= 2 lg’ and lg= 1.5 lg’ for 3 phase values AT required for iron part = ATi ATi << ATg ATi = 10 to 20 % of ATg so that ATtotal= ATi + ATg 0 ATg  Bg.lg
  • 16. For Electric part 1. Number of Turn per coil = AT/I where I= current There are 2 coil of N/2 turns for single phase variable choke There are 3 coil each of N turns for a 3-phase variable choke. thus number of turns for the coil are decided.
  • 17. 2. Current density (δ) Generally enameled copper conductors are used for the choke winding. δ=2.3 to 2.5 Amp/mm2 for single phase choke current is I for 3-phase choke current is taken i.e. Iph
  • 18. 3. To find diameter (d) of bare conductor C.S. area of bare conductor Hence 4 a =  d 2 4.a  d 
  • 19. 4. Use of standard size conductor tables From these table exact or nearest size of conductor is selected. (d and a ) d’ = diameter of insulated conductor So, area of insulated conductor a’ =  d1 2 4 mm2
  • 20. Mechanical dimension these is for single phase choke Window area for single phase choke Window area for 3-phase choke    d1  d  2 Aw' 1. Window size average value of space factor sf=0.8 sf= active area/gross area 2  N a' 2 sf Aw' N a' Aw' 2 N a' sf
  • 21. coil to be2. Depth df and height hf of accommodated in the window space. hf=actual height of coil 2 Aw Ww  hf’ =available height df =actual depth of coil df’ =depth of coil Window area AAww =H2wW. Ww 2 w
  • 22. Some clearance on both side 10+10=20mm be kept for formar etc. as shown in the figure. Available height for winding hf’=Hw-20mm Height wise turns per larger Nh= Depth wise turns per layer Nd= Actual depth of coil, df=df’+5mm Actual height of coil, hf= hf’+ hf' Nh d1 N
  • 23. 3. To find and distance between the two coils in the window (dc) and overall dimension. dc=Ww-2df D = D = Ww+ A Total width = D+A = Ww+2A Distance (D) betweenoftwo lines. Ww  AA 2 2
  • 24. To find R,L,Z of the coil • where • • Reactance XLof coil = Ω AND XL= 2πfL Ω L= Henry R  l  Iph a=C.S area of conductor Impedance of coil with maximum air-gap Z  Vph  Z2  R2 Xl 2f a =Resistivity of copper = 1.73 x10-8