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Electrical Machines LSEGG216A 9080V.

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Presentation on theme: "Electrical Machines LSEGG216A 9080V."— Presentation transcript:

1 Electrical Machines LSEGG216A 9080V

2 Transformer Operation
Week 2

3 Introduction Basic operation AS/NZS symbols
Types Step-up, Step-down, Isolation

4 Transformer Operation
CIVIL V+ Voltage Current Magnetic Flux

5 Transformer Operation
Induced Voltage V’2 V’1 V1 Induced Voltage in Secondary Applied Voltage IM Resultant Current

6 Induced Voltage Φmax =Maximum instantaneous flux F = Frequency
N = Number of turns Bmax = Maximum permissible flux density in Wb A = CSA of core in m2

7 Transformer Operation
Ie V1 Ie= Iron loss current Io = No load current Io IM

8 Transformer Operation
V’2 V’1 V1 I’1 Io I1

9 Transformer Operation
V’2 V’1 V1 I’2 I’1 Io I1

10 Therefore the voltage can be varied by changing the number of turns
Transformation Ratio Magnetic flux is common coils Therefore the voltage can be varied by changing the number of turns

11 Transformation Ratio V1= N1 = k = Transformation Ratio V2= N2

12 Transformation Ratio V1x I1 = V2 x I2 N1 I2 = N2 I1

13 Transformation Ratio kVA VA Power In Power Out V2 x I2 V1x I1

14 Transformation Ratio K = 2 200V 100V V2 x I2 V1x I1 800 200

15 Transformer Basic Tests
Open Circuit Test Short Circuit Test Oil Tests Electrical Insulation Polarity Continuity

16 Open Circuit Test Used to determine Iron Losses Supply = Rated Voltage

17 Open Circuit Test Ie V1 Wattmeter reading Supply Voltage
Ammeter reading Io IM

18 Supply Adjusted = Rated Secondary Current
Short Circuit Test Used to determine Copper Losses Supply Adjusted = Rated Secondary Current


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