Course detail
Flight Mechanics I
FSI-OMZ-AAcad. year: 2021/2022
Comprehensive explanation of theoretical foundations and methods of determination of flight performance of atmospheric aircraft. The forces acting on the aircraft and the equations of motion are analyzed, the basic characteristics and flight performance of the aircraft being obtained.
Language of instruction
Number of ECTS credits
Mode of study
Guarantor
Department
Offered to foreign students
Learning outcomes of the course unit
Prerequisites
Co-requisites
Planned learning activities and teaching methods
Assesment methods and criteria linked to learning outcomes
Course curriculum
Work placements
Aims
Specification of controlled education, way of implementation and compensation for absences
Recommended optional programme components
Prerequisites and corequisites
Basic literature
Brüning,G.- Hafer,X.- Sachs,G. Flugleistungen. 2.ed. Berlin: Springer Verlag, 1986. 404 s. ISBN 3-540-16982-2. (DE)
Daněk,V. Mechanika letu I - Letové výkony. Brno: Akademické nakladatelství CERM, 2009. 293 str., ISBN 978-80-7204-659-1. (CS)
Ruijgrok, G.J.J. Elements of Airplane Performance. Delft: Delft University Press, 1990. 452 s. ISBN 90-6275-608-5. (EN)
Recommended reading
Brüning,G.- Hafer,X.- Sachs,G. Flugleistungen. 2.ed. Berlin: Springer Verlag, 1986. 404 s. ISBN 3-540-16982-2. (DE)
Daněk,V. Mechanika letu I - Letové výkony. Brno: Akademické nakladatelství CERM, 2009. 293 str., ISBN 978-80-7204-659-1. (CS)
Ruijgrok, G.J.J. Elements of Airplane Performance. Delft: Delft University Press, 1990. 452 s. ISBN 90-6275-608-5. (EN)
Elearning
Classification of course in study plans
Type of course unit
Lecture
Teacher / Lecturer
Syllabus
2. Kinematics of atmospheric aircraft motion. Coordinate systems.
3. Forces acting on the airplane. Load factor.
4. Basic equations of motion.
5. Horizontal flight. Required thrust and power.
6. Characteristic regimes in horizontal flight.
7. Equilibrium diagrams of thrust and power. Flight regimes envelope.
8. Climb and ceiling of aircraft. Barograms and trajectories of flight.
9. Gliding flight. Hodograph diagram.
10. Flight performance in turns. Turn limitations.
11. Range and endurance of the airplane.
12. Take-off and landing performance.
13. CS Performance Requirements.
Exercise
Teacher / Lecturer
Syllabus
2. Calculation of minimum and maximum airspeeds.
3. Equilibrium diagrams of thrust and power.
4. Economical and optimal flight regime - connection to the aerodynamic polar of the airplane.
5. Gliding flight. Hodograph diagram.
6. Influence of operating conditions on the hodograph. Practical use of the hodograph.
7. Calculation of climb performance. Diagram w = f (V). Climb regimes.
8. Effect of height on climb. Calculation of ceiling.
9. Calculation of barograms and flight trajectories.
10. Flight performance in steady horizontal turn.
11. Turn diagrams.
12. Calculation of take-off lengths.
13. Calculation of landing lengths.
Elearning