Undergraduate
Vocational School of Technical Sciences
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Main Page / Program Curriculum / ENERGY SYSTEM DESIGN

ENERGY SYSTEM DESIGN

Course CodeSemester Course Name LE/RC/LA Course Type Language of Instruction ECTS
TAE4003 4 ENERGY SYSTEM DESIGN 3/0/0 CC 3
Course Goals
 In the studies on energy, it is aimed to gain practical knowledge in the application and realization phase.
Prerequisite(s) -
Corequisite(s) -
Special Requisite(s) -
Instructor(s) LecturerSavaş Alkan
Course Assistant(s) Textbook, supplementary book and other resources
Schedule Monday 13:00 - 14:50 - CATS Meetings
Office Hour(s)
Teaching Methods and Techniques It has been planned as Digital Distance Education up to 40% and will be supported by sectoral E-Webinars that will be given with a digital method enriched as 100% Asynchronous and Synchronous in the Spring Semester with CATs V3.0 interface.
Principle Sources -
Other Sources -
Course Schedules
Week Contents Learning Methods
1. Week Introduction Digital Education
2. Week General concepts Digital Education
3. Week System definitions Digital Education
4. Week System hierarchy Digital Education
5. Week System Models Digital Education
6. Week System Models Digital Education
7. Week System Models Digital Education
8. Week Exam Exam
9. Week System analysis Digital Education
10. Week System analysis - design Digital Education
11. Week Example applications Digital Education
12. Week Example applications Digital Education
13. Week Example applications Digital Education
14. Week Example applications Digital Education
15. Week Final exam Final exam
16. Week
17. Week
Assessments
Evaluation tools Quantity Weight(%)
Midterm(s) 1 50
Final Exam 1 50


Program Outcomes
PO-1Have knowledge about the structure, operation and maintenance of geothermal power plants.
PO-2Gains knowledge of hybrid systems
PO-3Gain knowledge about the operation, maintenance and repair of Nuclear Power Plants.
PO-4Gains knowledge of energy storage systems
PO-5With the awareness of the necessity of lifelong learning, it follows the technological and scientific developments in its field and constantly renews itself.
PO-6Gains knowledge of how to produce electricity with solar energy.
PO-7Gains knowledge of the relationship between energy and environmental economy.
PO-8Have the necessary and sufficient basic mathematical knowledge. Makes mathematical calculation, analysis and evaluation related to his profession.
PO-9Become aware of project management and workplace applications related to Energy Systems.
PO-10Knows the basic electrical concepts. Circuit solutions related to electrical circuits are realized.
PO-11By learning the concepts related to thermodynamics, makes the necessary analysis and calculations.
PO-12Gains knowledge of biomass and energy production.
PO-13Understands the importance of renewable energy sources
PO-14Have knowledge about the production, maintenance and repair of solar panels and explain the method of generating electrical energy from solar energy.
PO-15Knows the basic laws and units of physics. It can perform transformations between energies using these rules.
PO-16Gains knowledge of the structure, maintenance and repair of wind turbines. Explain the method of electrical energy produced by wind turbines.
PO-17Knows the method of generating energy from hydrogen energy and knows the necessary steps for energy production.
PO-18Gains knowledge of semiconductor circuit elements used in the field of power electronics.
PO-19Having the necessary information regarding energy management strategies in Turkey and the world.
Learning Outcomes
LO-1Analyzing current energy studies
LO-2Following the current and setting up a new system
LO-3Creating a new system
LO-4Analysis and development of the work done
Course Assessment Matrix:
Program Outcomes - Learning Outcomes Matrix
 PO 1PO 2PO 3PO 4PO 5PO 6PO 7PO 8PO 9PO 10PO 11PO 12PO 13PO 14PO 15PO 16PO 17PO 18PO 19
LO 1
LO 2
LO 3
LO 4