Course Information

Course Information
Course Title Code Semester L+U Hour Credits ECTS
- ELK1206 2. Semester 3 + 1 4.0 5.0
Prerequisites None
Language of Instruction Turkish
Course Level Associate
Course Type
Mode of delivery Face to Face
Course Coordinator Lect. Hakan ÜŞENTİ
Instructor(s) Hakan ÜŞENTİ
Assistants
Goals DA To understand the structure and working principles of machines. DA Engines to start, speed control methods to comprehend. To be able to comprehend electrical braking methods in DC machines. To understand the structure and working principles of transformers. To be able to calculate equivalent circuit and efficiency in transformers. Ability to recognize different connection groups in three-phase transformers
Course Content Working principles and structure of DC machines, structure and working principles of one and three phase transformers, voltage induced in DC machines, torque calculation, working of transformers in idle, short circuit and load. DA Feeders in the machines, armature reaction and commutation, equivalent circuit and efficiency in transformers, DA Dynamos basic concepts, behaviors, three-phase transformer different connection groups, DA Motor start, speed control and braking.
Learning Outcomes - Understand the structure and working principles of DA Machines
- Calculates the voltage and torque induced in DC machines
- Feeding forms in DA Machines. comprehends the measures to be taken against armature reaction and commitation
- Understand the basic concepts and behaviors of DA Dynamo
- Comprehends starting, speed control and braking methods of DC motors
- Understand the structure and working principles of one and three phase transformers
- Understand the basic concepts and behaviors of transformers
- Understands the calculation of short circuit and percentage, power and efficiency by using equivalent circuit and equivalent circuit elements in transformers.
- Recognizes different connection groups in three phase transformers
Weekly Topics (Content)
Week Topics Learning Methods
1. Week Working principles and structure of DC Machines Preparation, After Class Study Course Hours
2. Week Voltage, moment calculation induced in DC machines Course Hours Preparation, After Class Study
3. Week Voltage, moment calculation induced in DC machines experiments Preparation, After Class Study Course Hours
4. Week Feeding forms, armature reaction and commutation in DC machines Preparation, After Class Study Course Hours
5. Week Basic concepts and behaviors of DA Dynamo Preparation, After Class Study Course Hours
6. Week Basic concepts and behavior experiments of DA Dynamo Preparation, After Class Study Course Hours
7. Week Starting DC motors, speed control and braking Preparation, After Class Study Course Hours
8. Week Structure and working principles of one and three phase transformers Preparation, After Class Study Course Hours
9. Week Transformers at idle, short circuit and load operation Course Hours Preparation, After Class Study
10. Week Experiments of Transformers at idle, short circuit and load operation Preparation, After Class Study Course Hours
11. Week Equivalent circuit and efficiency in transformers Preparation, After Class Study Course Hours
12. Week Equivalent circuit and efficiency in transformers Course Hours Preparation, After Class Study
13. Week Different connection groups in three phase transformers Course Hours Preparation, After Class Study
14. Week Different connection groups experiments in three phase transformers Preparation, After Class Study Course Hours
Recommended Sources
Instructor's Course Notes
Relations with Education Attainment Program Course Competencies
Program Requirements Contribution Level DK1 DK2 DK3 DK4 DK5 DK6 DK7 DK8 DK9 Measurement Method
PY1 5 5 5 5 5 5 5 5 5 5 40,60
PY11 5 5 5 5 5 5 5 5 5 5 40,60
*DK = Course's Contrubution.
0 1 2 3 4 5
Course's Level of contribution None Very Low Low Fair High Very High
Method of assessment/evaluation Written exam Oral Exams Assignment/Project Laboratory work Presentation/Seminar
ECTS credits and course workload
Event Quantity Duration (Hour) Total Workload (Hour)
Course Hours 14 4 56
Preparation, After Class Study 14 1 14
Research 14 1 14
Other Activities 7 1 7
Midterm 1 1 1 1
Homework 1 14 2 28
Final 1 8 8
Total Workload 128
ECTS Credit of the Course 5.0