Master of Engineering in Aeronautics and Astronautics

at University of Southampton - Boldrewood Innovation Campus United Kingdom

Overview

Learn to design future aircraft, race cars, satellites and rockets, and take your engineering passion to new heights. Our astronautics and aeronautics undergraduate degree covers advanced aerospace engineering. You'll learn how to design and manufacture fast-moving aircraft in the Earth’s atmosphere and outer space.

The course looks at the science, engineering and manufacture of aircraft, jet engines, race cars and spacecraft. You'll learn how they operate within our atmosphere and in space. Your degree will be aligned to the UK Space Agency Civil Space Strategy.

You'll study the principles of aerospace engineering including aerodynamics, astronautics and propulsion. You'll also explore the economic, legal and environmental issues around aircraft and spacecraft. You'll get hands-on experience in extensive facilities, which include:

  • Dedicated student design studios and workshops
  • The largest wind tunnel in any UK university
  • State-of-the-art space propulsion facilities
  • Jet laboratory with supersonic ramjet, turbojet and rocket engine
  • Boeing flight simulator
  • Professional manufacturing centre

As part of this astronautics and aeronautics BEng degree you can:

  • Take part in practical design modules in every year of your degree
  • Design, build and test aircraft, spacecraft and their wider components
  • Take part in a flight-testing course, on board a flying laboratory aircraft
  • Showcase your work in our annual Engineering Design Show
  • Attend site visits to experience engineering in practice

You can take this course with an additional year-long, paid placement. Apply with UCAS code H40P for the Industrial Placement Year option.

Read More

30

Application Processing Days

Under Graduate

Program Level

Fact & Figures

Full Time On Campus

Study Mode

48

Duration

University of Southampton - Boldrewood Innovation Campus

Location

Master of Engineering in Aeronautics and Astronautics Assistant Fee

$23720

Tuition Fee

$0

Average Cost of Living

$0

Application Fee

Master of Engineering in Aeronautics and Astronautics Admissions Requirements

  • Minimum Level of Education Required: To be accepted for this program, students must have Standard XII Higher Secondary Certificate.
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Where would you like to study*

Work Permit United Kingdom

There are various options through which a student can get a post study work visa in the UK. 
Tier 1 Graduate Entrepreneur Visa for the graduates with a genuine and credible business idea. 
Tier 2 (General) is the leading immigration visa to work in the UK.
Tier 4 Doctorate Extension Scheme is for students who have completed their Ph.D. and is valid for 12 months for them to work, look for work or set up a business. 
Tier 5 Youth Mobility is for individuals of certain countries like Australia, Canada, Japan, Monaco, Hong Kong, South Korea, Taiwan, and New Zealand aged between 18 -30 who wish to move to the UK. 
Tier 5 GAE is for individuals who want to come to the UK for work experience, training, research or a fellowship. 
UK Ancestry is for individuals who are a citizen of a commonwealth and plan to work in the UK and have a grandparent who was born in the UK.
 

Detailed Program and Facts

30

Application Processing Days

Full Time On Campus

Program Intensity

Under Graduate

Program Level

48

Duration

Study Visa

English Test Requirement

6.5

Minimum Overall Score

92.0

Minimum Overall Score

62.0

Minimum Overall Score

Other Courses by University of Southampton - Boldrewood Innovation Campus,United Kingdom

MEng Aeronautics and Astronautics / Aerodynamics will give you the knowledge and skills to analyse and control aerodynamic behaviour. You'll learn how to design vehicles, wings and propulsion systems. The aerodynamics degree prepares you for a career in the aerospace or Formula 1 industries.

Aeronautics and Astronautics looks at the science, engineering and manufacture of aircraft and spacecraft. You'll learn how they operate within our atmosphere and in space. On this aerodynamics course, you'll focus on vehicles, wings and propulsion systems.

You'll get hands-on experience in extensive facilities, which include:

  • The largest wind tunnel at any UK university. Formula 1 teams and Olympic athletes have used our wind tunnel for high-performance testing
  • Dedicated student design studios and workshops
  • Jet laboratory with supersonic ramjet, turbojet and rocket engine
  • Boeing flight simulator
  • Professional manufacturing centre

As part of this course you can:

  • Take part in practical design modules in every year of your degree
  • Design, build and test aircraft, spacecraft and their wider components
  • Showcase your work in our annual Engineering Design Show
  • Take part in a flight-testing course, on board a flying laboratory aircraft

Our links with employers will enhance your career prospects. This is a BAE Systems preferred course and we have close links with many other key employers.

You can take this course with an additional year-long, paid placement. Apply with UCAS code HH41 for the Industrial Placement Year option.

48 month

Duration

$ 23720

Tuition

Explore the relationships between transport systems, the people who use and operate them, and the wider world, with our MSc Transportation Planning and Engineering: Behaviour. This course offers modules in human factors in transport engineering, and the interactions between transport, energy systems, and the environment. You can study this course on a full-time, part-time or distance-learning basis.

If you want a career in the transport industry or you're an experienced transport professional interested in enhancing your skills, this degree is ideal.

This master’s degree in transportation planning and engineering: behaviour covers everything from the fundamentals of modelling and economics, through to the application of software and planning tools using real life examples from around the world. It’s the perfect way to improve your capabilities and career prospects in the transport sector.

Your course highlights include field trips and a mock public inquiry, where you'll learn about  public engagement and the role of public opinion in the transport planning process.

Your taught learning includes modules on:

  • Transport economics
  • Transport data analysis and techniques
  • Transport planning: policy and governance
  • Transport modelling
  • Human factors in engineering
  • Transport, energy and the environment

You’ll also have the chance to choose from a range of modules including:

  • Highway and traffic engineering
  • Railway engineering and operations
  • Transport management and safety
  • Logistics systems operations

You’ll gain experience using a range of transport-related software and you’ll be able to hear directly from a range of industry guest speakers. You’ll also carry out an individual research project on a topic of your choice.

12 month

Duration

$ 26000

Tuition

On this Marine Engineering and Autonomy MSc degree you'll learn about component and systems engineering for ships. You’ll also gain an understanding of the fixed and offshore structures that help them to function. Learn the skills you need to become a specialist in the marine sector.

On this UK master’s course you’ll gain an advanced understanding of the fundamental principles, methods and applications of maritime engineering science.

This pathway focuses on the analysis and specification of marine engineering and autonomous systems used on board ships and other marine structures. You’ll study topics like electrical theory, thermodynamics, and engine and machine tribology. 
 
You’ll explore the marine engineering systems found on board merchant and naval vessels and their importance to ship design. This includes performance characteristics of diesel engines, steam and gas turbines and electric propulsion. The course covers the dynamic response of the main shaft and associated components. 
 
An introduction to auxiliary systems includes: 

  • Heating
  • Ventilation and air-conditioning
  • Refrigeration
  • The main fuel system

You’ll also learn about propeller-engine matching and a selection of appropriate machinery configurations. 

Your optional study topics include a chance to study the principles of photovoltaics, fuel cells and batteries, where you’ll learn about: 

  • Electrochemical routes to energy conversion
  • The relative merits of batteries, fuel cells and redox flow cells
  • Solar radiation as an energy source
  • Solar cell operation and manufacture
  • Design and operation of a photovoltaic system 

Throughout your studies, you’ll learn how to solve engineering problems by taking account of social, technical, economic and environmental constraints. 

12 month

Duration

$ 26000

Tuition

Gain a Masters-level knowledge of acoustics, sound and vibration and use it to make the world sound better. This acoustical engineering master's will provide fundamental engineering knowledge and a specialist understanding of acoustics. You'll study at the Institute of Sound and Vibration Research, a leading centre for Acoustical Engineering.

MEng Acoustical Engineering looks at how acoustics - the science of sound and vibration - is applied in technology. It has many applications, including:

  • Design of cars
  • 3D-audio systems
  • Designing concert halls
  • Reducing aircraft noise
  • Using ultrasound to fight antimicrobial resistance

This 4-year integrated master's course includes advanced Acoustical Engineering modules. You'll also take a masters-level group design project and apply your engineering knowledge to a design problem.

This course includes practical and lab work throughout. Our projects will allow you to design, build and test components and systems with enhanced acoustic properties. You'll gain the confidence to creatively solve engineering problems.

In your fourth year, you'll take part in a group design project, many of which are industry-led.

You'll have access to our world-class acoustic and engineering facilities, which include:

  • Anechoic and reverberation chambers
  • An aeroacoustic wind tunnel
  • Listening room
  • Virtual acoustics laboratory
  • A professional manufacturing centre

The industrial placement year will further develop your vital professional skills and knowledge, and help you become a professional acoustical engineer after you graduate.

48 month

Duration

$ 23720

Tuition

Discover how to use computers to help model and optimise aeronautic and astronautic designs. MEng Aeronautics and Astronautics / Computational Engineering and Design with teach you how to research and solve new aerospace challenges, with a focus on computational methods.

Aeronautics and Astronautics looks at the science, engineering and manufacture of aircraft and spacecraft. You'll learn how they operate within our atmosphere and in space preparing you to design future aircraft, UAVs, race cars, jet engines, satellites and rockets.

You'll focus on computational engineering, which will provide you with the skills to solve new and emerging aerospace design challenges using advanced computational methods.

You’ll get hands-on experience in extensive facilities, which include:

  • Dedicated student design studios and workshops
  • The largest wind tunnel in any UK university
  • Jet laboratory with supersonic ramjet, turbojet and rocket engine
  • Boeing flight simulator
  • Professional manufacturing centre

As part of this course you can:

  • Showcase your work in our annual Engineering Design Show
  • Learn workshop skills
  • Take a week long flight testing workshop
  • Join the University Formula Student team or the University Air Squadron

You can take this course with an additional year-long, paid placement. Apply with UCAS code H4H1 for the Industrial Placement Year option.

48 month

Duration

$ 23720

Tuition

Learn how to take a product from initial concept, to design and manufacture. Our 4-year master's in Mechanical Engineering with industry placement will put you on the path to becoming a chartered engineer. You'll learn about mechanical design, structures and materials, then select specialist topics to study. Project work throughout the degree provides the opportunity to apply your design skills to real-world problems.

This integrated master's lets you select a specialist theme pathway for years 3 and 4, or stay on in this generalised Mechanical Engineering theme. This general theme lets you take optional modules from the specialised courses in years 3 and 4.

You'll cover the essential principles of engineering, and learn about:

  • Modelling and computing
  • Systems design
  • Law
  • Management

In your third year you'll complete an individual research project and in year 4 you'll take part in a group design project. These projects are often linked to current research or topics that have practical relevance to industry.

As part of this course you can:

  • Use our design workshops and studios
  • Develop your design and computing skills
  • Showcase your work in our annual Engineering Design Show
  • Apply your knowledge to your choice of specialist areas, from automobiles to mechatronics
  • Go on site visits to experience engineering in practice

You can take this course with an additional year-long, paid placement. Apply with UCAS code 30HH for the Industrial Placement Year option.

48 month

Duration

$ 23720

Tuition

Study ocean energy and offshore engineering on this MSc course at the University of Southampton. This master’s degree will give you expert knowledge about the science behind natural energy resources. You’ll be well prepared for a range of offshore engineering specialisms, and will graduate with the skills to move into a career in the maritime sector.

On this pathway you’ll carry out structural and hydrodynamic analyses for offshore engineering of fixed and floating structures. You’ll focus on how to incorporate feasibility analysis of designs and probabilistic theory of the operating climate. 
 
Discover the role of thermo-fluid processes in technologies which use hydrocarbon fuels in a sustainable way. These include clean combustion, carbon capture and storage, and oil and gas recovery. 
 
You'll learn about the development of technology for these applications through physical insight and engineering methods covering: 

  • Heat and mass transport 
  • Chemically reacting flows 
  • Multi-phase flows 
  • Porous media flows 

We’ll teach you about turbines for low and high-head hydroelectric schemes and explain the role of marine energy in the offshore environment. This includes installation and system survivability. Through design and lab assignments, you’ll explore the physics and methods behind assessing device cost-effectiveness.

Optional modules give you the chance to further your understanding of wind, wave and tidal energy. You’ll study these natural resources and the practical methods for extracting cost-effective electrical and other energy conversions. 

12 month

Duration

$ 26000

Tuition

Choosing the correct materials is crucial to the success or failure of an engineering project. On this 4-year, integrated master's, you'll explore the properties and uses of common and new mechanical engineering materials. You'll develop the skills to design materials and surfaces, from the atomic level up to their application. This advanced course will help you find a rewarding career as a Chartered Engineer.

This course focuses on mechanics, structures and materials, and how they are managed. It will inspire you to use your knowledge and skills to address real mechanical and material engineering needs in society, in areas like:

  • Transport
  • Housing
  • Recreation
  • Food processing
  • Medicine

You'll explore material use, including their design and manufacture, and you'll study how they behave throughout their service.

As part of this course you can:

  • Showcase your work in our annual Engineering Design Show
  • Choose from a range of optional modules, including microstructural and surface characterisation, and aircraft structures
  • Put your skills into practice with an individual project and final year group design project
  • Work with students from other engineering specialisms

The course draws on research from the Engineering Materials Research Group, which is actively involved in a broad range of activities in the advanced materials field.

You can take this course with an additional year-long, paid placement. Apply with UCAS code H3H1 for the Industrial Placement Year option.

We're a designated university for the Defence Technical Undergraduate Scheme (DTUS).

48 month

Duration

$ 23720

Tuition

Our MSc Aerodynamics and Computation degree focuses on numerical methods and the physics and computation modelling of turbulence. It will enhance your knowledge of flow physics and your ability to use state-of-the art computational tools to improve industrial designs. This course is ideal if you’re an engineering, maths or science graduate with a strong background in fluid dynamics or aerodynamics.

This degree will prepare you for a career in industrial research and development, or ongoing postgraduate research.

You’ll take part in individual and group practical work as well as a critical research project, developing your expertise in aerodynamics.

You’ll examine current trends and challenges and engage in discussion and research on critical issues in the field. You'll also develop your ability to use experimental and advanced computational methods, such as particle image velocimetry (the measurement of the velocity of fluids), finite volume method and high-order finite difference methods

Research projects are often linked to our current research activities, or supported by industry or government funding bodies. Past students have undertaken research projects such as:

  • The investigation of the installation effects on the noise of Dyson high-spend fans
  • Aerodynamic load estimation from particle image velocimetry
  • Morphing wings aircraft modelling

You’ll benefit from state-of-the-art facilities including high-performance computers and the RJ Mitchell Wind Tunnel, the largest university wind tunnel in the UK. Recent graduates have gone on to work at organisations such as Dyson and Rolls-Royce.

12 month

Duration

$ 26000

Tuition

This Sustainable Energy Technologies MSc offers an introduction to current and modern energy technologies for sustainable power generation. You’ll gain expertise and practical skills in areas of energy research including photovoltaics, fuel cells, energy storage and batteries, combustion, electrical power systems, and wind, wave and tidal energy. 

Sustainable energy technologies need to meet a range of criteria across economic, social and environmental metrics. 

This master’s course will give you an understanding of sustainable energy systems, resources and usage. You’ll learn to design and assess the performance of fuel cells and photovoltaic systems, wind power and hybrid propulsion systems. You’ll also learn how thermo-fluid engineering processes can be used for the production of low-carbon energy. 

You'll also look at other renewable technologies and have the option to undertake a range of specialist modules, covering subjects such as waste resource management to bioenergy. 

Under the guidance of world-class experts, you’ll have the chance to put theoretical and practical skills to the test as you undertake a piece of independent research culminating in a dissertation.

12 month

Duration

$ 26000

Tuition

View All Courses by University of Southampton - Boldrewood Innovation Campus, United Kingdom

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