11311 modules
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FEEG6004 2025-26
Aeroacoustics
This module covers aerodynamic noise sources and sound propagation in moving media. Aeroacoustics is of great importance in engineering settings involving high speed flows, including transport (aeroplane, aeroengine, automobile, train), industrial processes and the design of consumer devices.
For students from acoustical engineering, this module places the discipline of acoustics in the wider context of fluid mechanics. For students with a background in aerodynamics, this module provides a self-contained introduction to acoustics and its interactions with other aspects of fluid mechanics. -
FEEG6004 2028-29
Aeroacoustics
This module covers aerodynamic noise sources and sound propagation in moving media. Aeroacoustics is of great importance in engineering settings involving high speed flows, including transport (aeroplane, aeroengine, automobile, train), industrial processes and the design of consumer devices.
For students from acoustical engineering, this module places the discipline of acoustics in the wider context of fluid mechanics. For students with a background in aerodynamics, this module provides a self-contained introduction to acoustics and its interactions with other aspects of fluid mechanics. -
SESA2022 2028-29
Aerodynamics
In this module the fundamental concepts of aerodynamics are introduced. The main focus is on inviscid, incompressible flow, but, viscous effects will also be covered. Finally, static stability of an aircraft is introduced. The lectures are complemented by laboratory sessions with relevance to the taught material. -
SESM3040 2029-30
Aerodynamics
From high-speed aircraft and gas turbines to space vehicles and high-performance racing cars, understanding compressible fluid flow is essential for modern aerodynamic design. This module builds on your knowledge of fluid mechanics, introducing the behaviour of flows at high subsonic and supersonic speeds while developing the computational skills used to analyse complex aerodynamic problems.
You will investigate the principles of compressible flow and explore how factors such as Mach number, aerofoil geometry and angle of attack influence aerodynamic performance. Alongside the theoretical foundations, you will gain practical experience of Computational Fluid Dynamics (CFD), using industry-standard software to model and investigate aerodynamic flows through numerical simulation. Throughout the module, you will strengthen your ability to interpret simulation results critically and relate computational predictions to the underlying physical behaviour of fluid flows.
By the end of the module, you will be able to analyse compressible aerodynamic systems using both theoretical and computational methods, developing valuable skills for careers in aerospace, automotive, energy and high-performance engineering. -
SESA2022 2027-28
Aerodynamics
In this module the fundamental concepts of aerodynamics are introduced. The main focus is on inviscid, incompressible flow, but, viscous effects will also be covered. Finally, static stability of an aircraft is introduced. The lectures are complemented by laboratory sessions with relevance to the taught material. -
SESM3040 2030-31
Aerodynamics
From high-speed aircraft and gas turbines to space vehicles and high-performance racing cars, understanding compressible fluid flow is essential for modern aerodynamic design. This module builds on your knowledge of fluid mechanics, introducing the behaviour of flows at high subsonic and supersonic speeds while developing the computational skills used to analyse complex aerodynamic problems.
You will investigate the principles of compressible flow and explore how factors such as Mach number, aerofoil geometry and angle of attack influence aerodynamic performance. Alongside the theoretical foundations, you will gain practical experience of Computational Fluid Dynamics (CFD), using industry-standard software to model and investigate aerodynamic flows through numerical simulation. Throughout the module, you will strengthen your ability to interpret simulation results critically and relate computational predictions to the underlying physical behaviour of fluid flows.
By the end of the module, you will be able to analyse compressible aerodynamic systems using both theoretical and computational methods, developing valuable skills for careers in aerospace, automotive, energy and high-performance engineering. -
SESM3040 2028-29
Aerodynamics
From high-speed aircraft and gas turbines to space vehicles and high-performance racing cars, understanding compressible fluid flow is essential for modern aerodynamic design. This module builds on your knowledge of fluid mechanics, introducing the behaviour of flows at high subsonic and supersonic speeds while developing the computational skills used to analyse complex aerodynamic problems.
You will investigate the principles of compressible flow and explore how factors such as Mach number, aerofoil geometry and angle of attack influence aerodynamic performance. Alongside the theoretical foundations, you will gain practical experience of Computational Fluid Dynamics (CFD), using industry-standard software to model and investigate aerodynamic flows through numerical simulation. Throughout the module, you will strengthen your ability to interpret simulation results critically and relate computational predictions to the underlying physical behaviour of fluid flows.
By the end of the module, you will be able to analyse compressible aerodynamic systems using both theoretical and computational methods, developing valuable skills for careers in aerospace, automotive, energy and high-performance engineering. -
SESA2022 2026-27
Aerodynamics
In this module the fundamental concepts of aerodynamics are introduced. The main focus is on inviscid, incompressible flow, but, viscous effects will also be covered. Finally, static stability of an aircraft is introduced. The lectures are complemented by laboratory sessions with relevance to the taught material. -
SESA6077 2028-29
Aeroelasticity
This module concerns structural dynamics and aeroelastic phenomena that can result in dangerous static and dynamic deformations and instabilities, particularly relevant in the design of modern aircraft and space vehicles. It builds on basic knowledge on free vibration modes of aircraft structures, continuous and multi-degrees of freedom systems, and variational principles in dynamics, introducing students to the concepts and tools used in unsteady aerodynamics. It is intended that the student will become familiar with the important issues and philosophies associated with aeroelastic stability and response, will become conversant in the terminology of aero-servo-elasticity, and will achieve a working understanding of these issues applied to various aeronautical systems. Finally, the student will acquire a solid knowledge and practical skills using professional software tools currently adopted by large aerospace industries.
Pre-requisite module/s: Students who have joined Southampton should possess equivalent knowledge of SESA2022 and SESA3026 -
SESA6077 2029-30
Aeroelasticity
This module concerns structural dynamics and aeroelastic phenomena that can result in dangerous static and dynamic deformations and instabilities, particularly relevant in the design of modern aircraft and space vehicles. It builds on basic knowledge on free vibration modes of aircraft structures, continuous and multi-degrees of freedom systems, and variational principles in dynamics, introducing students to the concepts and tools used in unsteady aerodynamics. It is intended that the student will become familiar with the important issues and philosophies associated with aeroelastic stability and response, will become conversant in the terminology of aero-servo-elasticity, and will achieve a working understanding of these issues applied to various aeronautical systems. Finally, the student will acquire a solid knowledge and practical skills using professional software tools currently adopted by large aerospace industries.
Pre-requisite module/s: Students who have joined Southampton should possess equivalent knowledge of SESA2022 and SESA3026