Course detail
Helicopters
FSI-OV0Acad. year: 2024/2025
The aim of the course is to provide students with knowledge about helicopters to such an extent that they understand the function of individual parts of aircraft with a rotating carrier. Attention is focused mainly on aerodynamics of the supporting and balancing rotor, helicopter parts design and their functions, flight performance and stability and controllability. The list should also include an introduction to the basic calculation procedures in the field of aerodynamics, performance and helicopter components.
Language of instruction
Number of ECTS credits
Mode of study
Department
Entry knowledge
Rules for evaluation and completion of the course
Attendance at lectures is not obligatory. Controlled participation in lessons: Attendance at seminars is obligatory and checked by the teacher.
Aims
Students will acquire knowledge necessary for solving basic computational tasks in the field of helicopter performance and strength of basic airframe parts. They will be able to basically assess the qualities of individual types and will be ready for practical training on a specific type of helicopter.
Study aids
Prerequisites and corequisites
Basic literature
Watkinson,J. The Art of Helicopter. Elsevier Butterworth Heinemann, Great Britain, 2004, ISBN 0 7506 57154
Recommended reading
Elearning
Classification of course in study plans
Type of course unit
Lecture
Teacher / Lecturer
Syllabus
2. Aerodynamics of rotor of helicopter.
3. Aerodynamic forces, movements of rotor blades, restrictions.
4. Balancing reaction moment, multi-rotor helicopters.
5. Rotor structures.
6. Rotor head structures, rotor blade structures.
7. Control systems of helicopters.
8. Fuselage design and structures.
9. Design and structures of transmissions.
10. Design of land gear.
11. Engine mounts.
12. Basics of flight mechanics: flight performances.
13. Basics of flight mechanics: flight properties: stability and controllability.
Exercise
Teacher / Lecturer
Syllabus
2. Aerodynamics of rotor of helicopter.
3. Aerodynamic forces, movements of rotor blades, restrictions.
4. Balancing reaction moment, multi-rotor helicopters.
5. Rotor structures.
6. Rotor head structures, rotor blade structures.
7. Control systems of helicopters.
8. Fuselage design and structures.
9. Design and structures of transmissions.
10. Design of land gear.
11. Engine mounts.
12. Calculation of basic aerodynamic forces.
13. Calculation of basic flight performances of helicopter.
Elearning