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MSc Aeronautical Engineering
University of South Wales

Student rating
(4.1)

Find out more about studying MSc Aeronautical Engineering at University of South Wales? We've gathered all the key details, entry requirements, modules, fees, and more. Take the next step by booking an open day to explore it for yourself.

Different course options

DATA SOURCE:
UNISTATS, UCAS
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Qualification

MSc - Master of Science

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Location

Treforest Campus

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Study mode

Full Time

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Start date

Sep 2026

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Duration

1 Year

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Course info

The MSc Aeronautical Engineering meets the academic requirements for Chartered Engineer (CEng) status with the Institution of Mechanical Engineering (IMechE) and the Royal Aeronautical Society (RAeS). Progression to management is key to the careers of postgraduate engineers, so as part of the aeronautical engineering programme you will develop relevant managerial skills, as well as an awareness of the wider issues that affect the aeronautical industry.

Modules

Modules (Year 1)
Advanced Aircraft Design

You will develop an integrated understanding of the taught aeronautical engineering postgraduate modules, through a design and synthesis perspective. This module will provide you with the tools and methods to conceptually create, simulate and optimise an aircraft design.

Advanced Materials and Manufacture

This module will enable the student to gain knowledge and analytical skills on a range of modern engineering materials, subsequently develop a critical awareness on the selection criteria for aeronautical and mechanical engineering applications. You will also develop knowledge on a range of manufacturing processes, methods and techniques.

Advanced Propulsion

This will provide the skills required to perform detail analysis of components of aircraft engines. You will develop a working knowledge and critical awareness of aircraft engine performance, analysing techniques, component, system design and associated technologies

Aeroelasticity

This module provides the student with an integrated understanding of the interaction among aerodynamic, inertia and elastic forces and how this interaction affects the design of an aircraft. You will learn how to predict, analyse and assess aeroelastic phenomena on an aircraft.

Dissertation (60 credits)

The dissertation is the final component and the culmination of the MSc programme. The knowledge and skills of the taught elements of the MSc programme provide the foundation for this comprehensive research project along with additional guidance on research methodology. The dissertation represents a substantial piece of work, which brings the taught elements of the programme into context within a research or industrial based project work. The dissertation allows the students to undertake a substantial piece of investigative research work on an appropriate engineering topic and further develop the students skills in research, critical analysis and development of solutions using appropriate techniques

Fatigue and Fracture

The aim of this module is to enable students to carry out appropriate analysis to apply to designs where failure due to fatigue may be an issue. The analysis of cracks in structures allows the students to make informed decisions as to appropriate actions that can be taken to prevent unwanted catastrophic failure.

Further Computational Fluid Dynamics

This will provide students with a practical understanding of the numerical methods which underlie computational fluid dynamics analysis.

Further Finite Element Analysis

This will enable the student to assess the suitability of finite element analysis to solve a range of engineering analysis with an understanding of the limitations of the analysis. You will learn how to carry out appropriate finite element analysis using a range of modelling techniques and to critically analyse the results obtained from finite element software.

Professional Engineering Management

This module will enable learners to develop knowledge of strategic leadership within the context of an engineering business. Learners will develop the skills to critically analyse leadership and management theories and how these shape the strategic direction and effectiveness of an organisation. The learners will develop understanding of application of this knowledge to individual leadership skills in relation to professional engineering, using the Engineering Council UK-Spec document as a framework for good practice.

Research Methods for Engineers

This will provide the students with the ability to determine the most appropriate methods to collect, analyse and interpret information relevant to an area of engineering research. You will develop the ability to critically reflect on your own and others' work.

DATA SOURCE:
UCAS/IDP Connect
Tuition fees
Student living
£11,060 per year
Students from Domestic

The bursary is for £500 to support students with travel and living costs

DATA SOURCE:
UCAS / IDP Connect

Uni info

Student rating
(4.1)
View reviews
CUG ranking 91st
University of South Wales
Llantwit RdPontypriddSouth WalesCardiffCF37 1DLUnited Kingdom