Aeronautical Engineering BEng/MEng
Aircraft Vibration and Aeroelasticity 4 ENG4023
- Academic Session: 2026-27
- School: School of Engineering
- Credits: 10
- Level: Level 4 (SCQF level 10)
- Typically Offered: Semester 2
- Available to Visiting Students: Yes
- Collaborative Online International Learning: No
- Curriculum For Life: No
Short Description
This course will foster the students' interest in aeroelasticity and structural dynamics, introduce them to aeroelastic concepts such as "the flexible aircraft", provide them with a wide range of tools to model problems in aeroelasticity and discuss modern methods and challenges in this field.
Timetable
2 lectures per week
Rooms where video & audio recording is possible are requested for the lectures in this course to explore the "flipped-classroom" approach and to offer this course online in the future.
Excluded Courses
None
Co-requisites
None
Assessment
35% Final Written Exam
25% Mid Term Exam - to be administered in one of the booked Lab sessions; will include the use of a computer and notes from class.
40% Project work: Analytical and numerical implementation of concepts derived in class.
Main Assessment In: April/May
Course Aims
The aims of this course are to:
■ foster student interest in aeroelasticity and to introduce them to aeroelastic concepts such as "the flexible aircraft" and structural dynamic/aerodynamic interaction and stability;
■ provide an understanding of complex structural dynamics and aeroelasticity by use of simple Lagrangian models of aircraft wing, fuselage, and rotor systems;
■ give the student a wide range of tools to model the structural dynamics of aircraft wings;
■ demonstrate the diverse nature of aeroelasticity problems by bringing together aspects of previous courses, such as dynamics, structures, mathematics and aerodynamics;
■ provide the student with a phenomenological understanding of aeroelastic problems such as control reversal, divergence and flutter;
■ provide an understanding of the binary flutter problem.
■ provide an introduction to modern numerical methods in structural dynamics and aeroelasticity
Intended Learning Outcomes of Course
By the end of this course students will be able to:
■ apply Lagrange's method and the principle of virtual displacement to model and analyse dynamic behaviour of flexible aircraft structures
■ apply assumed modes to generate binary and ternary structural-dynamic approximations of flexible aircraft and calculate the modes of simple aircraft models.
■ evaluate the concepts of wing elastic axis, inertial axis and aerodynamic centre, and demonstrate how the relative positioning of these axes may affect the structural-dynamic/aeroelastic stability of the wing;
■ critically analyse the concepts of aeroelastic flutter and divergence on lifting surfaces
■ Select and evaluate suitable methods, including numerical tools, for structural dynamics and aeroelastic analysis of aircraft configurations, providing justification in a technical report referencing appropriate technical literature.