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Aircraft Technology Main Page / Program Curriculum / HELICOPTER AERODYNAMICS, STRUCTURE AND SYSTEMS

HELICOPTER AERODYNAMICS, STRUCTURE AND SYSTEMS

Course CodeSemester Course Name LE/RC/LA Course Type Language of Instruction ECTS
HUT0001 HELICOPTER AERODYNAMICS, STRUCTURE AND SYSTEMS 2/2/0 DE Türkçe 4
Course Goals
 To provide information about basic helicopter systems within the scope of Module 12 theoretical training.
Prerequisite(s)
Corequisite(s) Course Code Course Name…
Special Requisite(s)
Instructor(s) LecturerUğur Alperen Vural
Course Assistant(s)
Schedule Wednesday, 09:00- 12:50, AK1B0406
Office Hour(s) Wednesday during class
Teaching Methods and Techniques - Lecture, presentation, discussion, etc.
Principle Sources -Module 12 resources
Other Sources -
Course Schedules
Week Contents Learning Methods
1. Week Flight Theory - Rotary Wing/Propeller Aerodynamics Oral lectures, presentations, video and animation demonstrations.
2. Week Flight Control Systems Oral lectures, presentations, video and animation demonstrations.
3. Week Blade Tracking and Vibration Analysis Transfers/Transmissions Oral lectures, presentations, video and animation demonstrations.
4. Week Body Structures Oral lectures, presentations, video and animation demonstrations.
5. Week Air Conditioning (ATA 21) Oral lectures, presentations, video and animation demonstrations.
6. Week Instrument (Device) Systems (ATA 31) Oral lectures, presentations, video and animation demonstrations.
7. Week Avionics Systems, Electrical Power (ATA 24) Oral lectures, presentations, video and animation demonstrations.
8. Week Midterm
9. Week Cabin Equipment and Furnishings (ATA 25) Fire Protection (ATA 26) Oral lectures, presentations, video and animation demonstrations.
10. Week Fuel Systems (ATA 28) Hydraulic Power (ATA 29) Oral lectures, presentations, video and animation demonstrations.
11. Week Ice and Rain Protection (ATA 30) Landing Gear (ATA 32) Oral lectures, presentations, video and animation demonstrations.
12. Week Landing Gear (ATA 32) Pneumatic/Vacuum (ATA 36) Oral lectures, presentations, video and animation demonstrations.
13. Week Integrated Modular Avionics (ATA 42) Onboard Maintenance Systems (ATA 45) Oral lectures, presentations, video and animation demonstrations.
14. Week Information Systems (ATA 44) General review Oral lectures, presentations, video and animation demonstrations.
15. Week Final exam
16. Week
17. Week
Assessments
Evaluation tools Quantity Weight(%)
Midterm(s) 1 40
Final Exam 1 60


Program Outcomes
PO-1Having the knowledge of basic principles, rules and laws of aircraft and aerospace systems.
PO-2The ability of recognizing and using the structural characteristics of the aircraft and the aircraft related maintenanceandtools.
PO-3Applying the knowledge of basic issues related to aircraft electronics.
PO-4Technical drawing and know the rules of civil aviation
PO-5Applying the relevant standards for aircraft maintenance and repairment
PO-6Aircraft automatic control methods
PO-7By performing algorithms and programming to set microcontroller circuits
PO-8Ensuring operatıonal safety of electronic materıal and performing basic measurements
PO-9The ability of analyzing aircraft electrical-electronic systems, materials and failure
PO-10Installing digital, analog and power electronics circuits
PO-11Performıng cyber communıcatıon of control system and settıng sensor systems
PO-12Applyıng standards and assurance of qualıty, abılıty of usıng foreıgn languages
PO-13Values of professıonal ethıcs, usıng communıcatıon technologıes and performıng reseaches
PO-14Performıng first aid /wounded patients İn Case of emergency and protectıng the environment
PO-15Performing matmatıcs applıcatıons
Learning Outcomes
LO-1Obtaining theoretical knowledge about helicopter systems
LO-2Gaining information about aerodynamic systems
LO-3Learning about helicopter control systems
Course Assessment Matrix:
Program Outcomes - Learning Outcomes Matrix
 PO 1PO 2PO 3PO 4PO 5PO 6PO 7PO 8PO 9PO 10PO 11PO 12PO 13PO 14PO 15
LO 1
LO 2
LO 3