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Transformer Basic
-B. Prasad
Chartered
Engineer
amieclub@gmai
l.com
working principle
 
A transformer
works on the
Faraday,s
law
of
electromagne
tic induction.
A transformer
consists of a
laminated
magnetic
Transformerparts
Winding
Type of transformer
 Distribution
 Power.
 Control.
 Auto.
 Isolation.
 Instrument potential.
 Instrument current
 Indoor
 Outdoor
 Oil type
 Dry type
 Core type
 Shell type
 Natural cool
 Forced air/water
cool
Distribution transformer
Primary
voltage
Secondary
voltage
Capacity
(KVA)
Construction Impedance
range
3-11 380-440 25,40,63 Dry type 3-7%
100,150,250 Dry type
300,400,500 Oil/dry type
630,750,1000 Oil type
1250,1600 Oil type
2000,2500 Oil type
Star delta connection
Star delta diagram
Star delta voltage current
 Line voltage on Primary side = √3 X Phase voltage on
Primary side. So
 Phase voltage on Primary side = Line voltage on Primary
side / √3
 Transformation Ration (K) = Secondary Phase Voltage /
Primary Phase Voltage
 Secondary Phase Voltage = K X Primary Phase Voltage.
 As Secondary  in delta connected:
 Line voltage on Secondary side = Phase voltage on
Secondary side.
 Secondary Phase Voltage = K X Primary Phase Voltage.
=K X (Line voltage on Primary side / √3)
Advantages of StarDelta Connection
 The Y-D connection has no problem with third
harmonic components
 fewer numbers of turns are required
 The neutral available on the primary can be
earthed to avoid distortion.
 Neutral point allows both types of loads
(single phase or three phases) to be met
 Large unbalanced loads can be handled
satisfactory
Disadvantages of star delta
 The secondary voltage is not in phase with the
primary
 If secondary of this transformer should be
paralleled with secondary of another transformer
without phase shift, there would be a problem
Application:
 commonly employed for power supply
transformers.
 Y connection on the HV side reduces insulation
costs the neutral point on the HV side can be
grounded.
Tap changer
It is a device fitted in
the transformer,
which is used to
vary the voltage
transformation
ratio.
 Off load tap
changer
 Onloadtap
changer(OLTC)
BUSHING
Transformer Bushings
are specially designed
electrical terminals for
taking out winding
ends (leads) through
the openings provided
on the top cover or
wall of the of
transformer tank and
connecting to the
incoming and
outgoing lines.
CT =CURRENT
TRANSFORMER
Typical specification fora 11
kV CT
 System voltage:11 KV
 Insulation level voltage (ILV) :
12/28/75 kV
 Ratio: 200/1 - 1 - 0.577 A
 Core 1: 1A, metering, 15
VA/class 1, ISF<10
 Core 2: 5A, protection, 15
VA/5P10
 Short time rating:20 kA for 1
second
PT=POTENTIAL
TRANSFORMER
Typical specification fora 11 kV VT
 System voltage: 11 KV
 Insulation level voltage (ILV) : 12 /
28/75 kV
 Number of phases: Three
 Vector Group: Star / Star
 Ratio: 11 kV/ 110 V
 Burden: 100 VA
 Accuracy: Class 0.5
 Voltage Factor: 1.2 continuous and
1.5 for 30 seconds With provision for
fuse
Condition ForParallel Operation Of
Transformers
 Same voltage and Turns Ratio (both primary and
secondary voltage rating is same)
 Same Percentage Impedance and X/R ratio
 Identical Position of Tap changer
 Same KVA ratings
 Same Phase angle shift (vector group are same)
 Same Frequency rating
 Same Polarity
 Same Phase sequence
TRANSFORMER OIL
FILTRATION
Impedance Levels
 Based kVA Minimum Impedance, %
0 – 150 Manufacturer’s standard
151 – 300 4
301 – 600 5
601 – 2,500 6
2,501 – 5,000 6.5
5,001 – 7,500 7.5
7,501 – 10,000 8.5
Above 10,000 9.5
Oil and winding temperature indication
Description Setting, degree C
Fan start 85
Fan stop 75
Pump start 90
Pump stop 80
Oil temperature alarm 85
Oil temperature trip 95
Winding temperature
alarm
100
Winding temperature trip 110
Transformer protection–
  Overcurrent & Short circuit (51):
The relay used is CDAG 51.
 Earth Fault (51N): The relay used is CAG 14.
 TransformerDifferential (87T): The relay used is
DTH 31, 11/6.6KV transformers.
  WTI (49WTX/49WAX): protected against increase
in winding temperature. The relay used is VAA 34.
 OTI (49TX/49AX): protected against increase in oil
temperature. The relay used is VAA 34.
  Buchholz (63TX/63AX): protected against internal.
The relay used is VAA 34.
ACT FAST AND INITIATE
FIRST
 बड़ा    सोचो
        तेजी से सोचो व
    सबसे पहले सोचो
 िवचारो     पर िकसी का
      एकािधकार नही होता.
  ----  धीरभाई अमबानी
THANK YOU

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Transformer basic

  • 2. working principle   A transformer works on the Faraday,s law of electromagne tic induction. A transformer consists of a laminated magnetic
  • 5. Type of transformer  Distribution  Power.  Control.  Auto.  Isolation.  Instrument potential.  Instrument current  Indoor  Outdoor  Oil type  Dry type  Core type  Shell type  Natural cool  Forced air/water cool
  • 6. Distribution transformer Primary voltage Secondary voltage Capacity (KVA) Construction Impedance range 3-11 380-440 25,40,63 Dry type 3-7% 100,150,250 Dry type 300,400,500 Oil/dry type 630,750,1000 Oil type 1250,1600 Oil type 2000,2500 Oil type
  • 9. Star delta voltage current  Line voltage on Primary side = √3 X Phase voltage on Primary side. So  Phase voltage on Primary side = Line voltage on Primary side / √3  Transformation Ration (K) = Secondary Phase Voltage / Primary Phase Voltage  Secondary Phase Voltage = K X Primary Phase Voltage.  As Secondary  in delta connected:  Line voltage on Secondary side = Phase voltage on Secondary side.  Secondary Phase Voltage = K X Primary Phase Voltage. =K X (Line voltage on Primary side / √3)
  • 10. Advantages of StarDelta Connection  The Y-D connection has no problem with third harmonic components  fewer numbers of turns are required  The neutral available on the primary can be earthed to avoid distortion.  Neutral point allows both types of loads (single phase or three phases) to be met  Large unbalanced loads can be handled satisfactory
  • 11. Disadvantages of star delta  The secondary voltage is not in phase with the primary  If secondary of this transformer should be paralleled with secondary of another transformer without phase shift, there would be a problem Application:  commonly employed for power supply transformers.  Y connection on the HV side reduces insulation costs the neutral point on the HV side can be grounded.
  • 12. Tap changer It is a device fitted in the transformer, which is used to vary the voltage transformation ratio.  Off load tap changer  Onloadtap changer(OLTC)
  • 13. BUSHING Transformer Bushings are specially designed electrical terminals for taking out winding ends (leads) through the openings provided on the top cover or wall of the of transformer tank and connecting to the incoming and outgoing lines.
  • 14. CT =CURRENT TRANSFORMER Typical specification fora 11 kV CT  System voltage:11 KV  Insulation level voltage (ILV) : 12/28/75 kV  Ratio: 200/1 - 1 - 0.577 A  Core 1: 1A, metering, 15 VA/class 1, ISF<10  Core 2: 5A, protection, 15 VA/5P10  Short time rating:20 kA for 1 second
  • 15. PT=POTENTIAL TRANSFORMER Typical specification fora 11 kV VT  System voltage: 11 KV  Insulation level voltage (ILV) : 12 / 28/75 kV  Number of phases: Three  Vector Group: Star / Star  Ratio: 11 kV/ 110 V  Burden: 100 VA  Accuracy: Class 0.5  Voltage Factor: 1.2 continuous and 1.5 for 30 seconds With provision for fuse
  • 16. Condition ForParallel Operation Of Transformers  Same voltage and Turns Ratio (both primary and secondary voltage rating is same)  Same Percentage Impedance and X/R ratio  Identical Position of Tap changer  Same KVA ratings  Same Phase angle shift (vector group are same)  Same Frequency rating  Same Polarity  Same Phase sequence
  • 18. Impedance Levels  Based kVA Minimum Impedance, % 0 – 150 Manufacturer’s standard 151 – 300 4 301 – 600 5 601 – 2,500 6 2,501 – 5,000 6.5 5,001 – 7,500 7.5 7,501 – 10,000 8.5 Above 10,000 9.5
  • 19. Oil and winding temperature indication Description Setting, degree C Fan start 85 Fan stop 75 Pump start 90 Pump stop 80 Oil temperature alarm 85 Oil temperature trip 95 Winding temperature alarm 100 Winding temperature trip 110
  • 20. Transformer protection–   Overcurrent & Short circuit (51): The relay used is CDAG 51.  Earth Fault (51N): The relay used is CAG 14.  TransformerDifferential (87T): The relay used is DTH 31, 11/6.6KV transformers.   WTI (49WTX/49WAX): protected against increase in winding temperature. The relay used is VAA 34.  OTI (49TX/49AX): protected against increase in oil temperature. The relay used is VAA 34.   Buchholz (63TX/63AX): protected against internal. The relay used is VAA 34.
  • 21. ACT FAST AND INITIATE FIRST  बड़ा    सोचो         तेजी से सोचो व     सबसे पहले सोचो  िवचारो     पर िकसी का       एकािधकार नही होता.   ----  धीरभाई अमबानी