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Savitribai Phule Pune University, Maharashtra (SPPU)
Electrical Engineering
Computer Aided Design of Electrical Machines
Savitribai Phule Pune University, Maharashtra (SPPU), Electrical Engineering Semester 6, Computer Aided Design of Electrical Machines Syllabus
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Unit - 1 Transformer Design: Part 1
Unit 1
Transformer Design Part 1
1.1 Modes of heat dissipation
1.2 Heating and cooling curves
1.3 Calculations of heating and cooling time constants
1.4 Methods of cooling of transformer
1.5 Types and constructional features of core and windings used in transformer
1.6 Transformer auxiliaries such as tap changer pressure release valve breather and conservator
1.7 Specifications of three phase transformers as per IS 2026
1.8 Introduction to computer aided design
Unit - 2 Transformer Design: Part 2
Unit 2
Transformer Design Part 2
2.1 Output equation with usual notations
2.2 Optimum design of transformer for minimum cost and loss
2.3 Design of core estimation of overall dimensions of frame and windings of transformer
2.4 Design of tank with cooling tubes
Unit - 3 Performance Parameters Of Transformer
Unit 3
Performance parameters of Transformer
3.1 Estimation of resistance and leakage reactance of transformer
3.2 Estimation of no load current losses efficiency and regulation of transformer
3.3 Calculation of mechanical forces developed under short circuit conditions measures to overcome this effect
3.4 Computer aided design of transformer generalized flow chart for design of transformer
Unit - 4 Three phase Induction Motor Design:Part1
Unit 4
Three phase Induction Motor Design Part1
4.1 Specification and Constructional features
4.2 Types of AC windings
4.3 Output equation with usual notation
4.4 Specific electrical and magnetic loading
4.5 Ranges of specific loadings
4.6 Turns per phase
4.7 Number of stator slots
Unit - 5 Three phase Induction Motor Design:Part2
Unit 5
Three phase Induction Motor Design Part2
5.1 Suitable combination of stator and rotor slots
5.2 Selection of the length of air gap
5.3 Factors affecting Length of Airgap
5.4 Design of rotor slots
5.5 Size of bars
5.6 End rings for cage rotor
5.7 Conductor size of rotor slots for wound rotor
5.8 Turns and area of rotor slots for wound rotor
Unit - 6 Performance parameters of Three Phase Induction motor
Unit 6
Performance parameters of Three Phase Induction Motor
6.1 Leakage flux and leakage inductance
6.2 Slot leakage
6.3 Toothtip leakage
6.5 Overhang leakage
6.6 Leakage reactance calculation for three phase machines
6.7 MMF calculation for air gap
6.8 Calculation of stator teeth
6.9 Calculation of Stator core
6.10 Calculation of rotor teeth
6.11 Rotor core
6.12 Effect of saturation
6.13 Effect of ducts on calculations of magnetizing current
6.14 Calculation of noload current
6.15 Calculation of losses and efficiency
6.16 Computer aided design of induction motor
6.17 Generalized flow chart for design of induction motor
Download EE Sem 6 syllabus pdf
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Other Subjects of Semester-2
Power system-ii
Control system engineering
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