51³Ô¹ÏÍø

  • Postgraduate taught
  • MSc

Geotechnical Engineering with Offshore Renewables

Gain specialist skills in soil behaviour, laboratory testing, numerical modelling and geotechnical design, and apply them to the investigation and development of offshore infrastructure.

Course key facts

Minimum entry standard

  • 2:1 in Civil Engineering, Natural Sciences, Earth Sciences or other numerate disciplines.

View full entry requirements

Course overview

This course provides a rigorous grounding in geotechnical engineering, combining advanced soil mechanics, laboratory testing, numerical modelling and engineering design with specialist knowledge of offshore geotechnics. Through a balanced programme of theoretical study, practical laboratory work and design-based learning, you'll develop the skills needed to investigate, model and solve complex geotechnical engineering problems. 

Building on this strong foundation, the course explores the geotechnical challenges associated with offshore infrastructure. You'll study marine site investigation, the behaviour of seabed soils, offshore foundation systems and their design, alongside the broader engineering principles that underpin civil and offshore infrastructure. 

You'll gain first-hand experience of experimental soil mechanics in our purpose-built laboratories and apply your knowledge through an industry-informed design project and research dissertation supervised by leading academics. 

Whether you're a recent graduate or an experienced engineer, this course will equip you with the advanced technical knowledge and practical skills required for careers in geotechnical consulting, offshore engineering and infrastructure development, or for further study at PhD level. 

Our Geotechnical and Geological courses

We also offer two other courses:

  • MSc Geotechnical Engineering, with specialism options in Advanced Geotechnical Engineering, Geoenvironmental Engineering, Earthquake Engineering, or Data Science.
  • MSc Geological Engineering - gain geological engineering knowledge to better understand and model ground conditions in complex natural environments, including rock slopes and underground works. 

Structure

This page is updated regularly to reflect the latest version of the curriculum. However, this information is subject to change.

Find out more about potential course changes.

Please note: it may not always be possible to take specific combinations of modules due to timetabling conflicts. For confirmation, please check with the relevant department.

You’ll take all of these core modules.

Core modules

During the Summer Term, you will undertake an independent research project under the supervision of leading academics in Geotechnical Engineering. 

Projects may span the full breadth of the discipline, including laboratory and field-based experimentation, advanced numerical modelling, discrete element modelling, data-driven and statistical methods, constitutive and theoretical developments, geotechnical design, offshore and earthquake engineering, geoenvironmental processes, and the development or evaluation of industry guidance standards and codes of practice. 

Professional accreditation

This MSc degree has accreditation pending from the Engineering Council by the (JBM), comprising:

  • Institution of Civil Engineers
  • Institution of Structural Engineers
  • Institute of Highway Engineers
  • Chartered Institution of Highways and Transportation
  • Permanent Way Institution

Registering as a Chartered Engineer will improve your career prospects and provide higher earning potential. It will also help to demonstrate your commitment to professional standards, the engineering profession and sustainable development.

Our accreditation agreement with members of the Joint Board of Moderators is renewed every five years. The current accreditation agreement is due to be renewed in 2026.

Teaching and assessment

Balance of teaching and learning

This is a general guide to how teaching and learning are usually balanced across this course. The methods used may change based on the modules you take.

Key

  • Lectures and seminars
  • Independent study

  • 20% Title 1 goes here
  • 80% Title 2 goes here

Teaching and learning methods

  • Person at lectern giving speech
    Lectures
  • Four students sitting in a tutorial
    Tutorials
  • Laboratory practicals
  • Computer sessions
  • Field trips
  • ID badge for site visit or facility tour
    Site visits
  • Blackboard virtual learning environment
    Virtual learning environment
  • Books for research studies
    Research project

Balance of assessment

This is an example of how assessments are usually divided, based on a typical pathway through the course. The actual breakdown may be different depending on the modules you choose.

Key

  • Coursework and practicals
  • Examinations

  • 30% Title 1 goes here
  • 70% Title 2 goes here

Assessment methods

  • Coursework
  • Group projects and presentations
  • Papers from a written report
    Field trip notes and presentations
  • A person completing a written exam
    Written exams and e-examinations
  • Research project

Entry requirements

We consider all applicants on an individual basis, welcoming students from all over the world.

How to apply

Applications open on Wednesday 30 September 2026

Fees and funding

Home fee (CEE 1YFT + 2YPT)

Full-time

Not set total fee
As a guide, the fee for 2026-27 was £19,400.

Part-time

Not setper year
As a guide, the fee for 2026-27 was £9,700 per year.

Fees are charged by year of entry to the university and not year of study.

Overseas fee (CEE 1YFT + 2YPT)

Full-time

Not set total fee
As a guide, the fee for 2026-27 was £45,000.

Part-time

Not setper year
As a guide, the fee for 2026-27 was £22,500.per year.

Fees are charged by year of entry to the university and not year of study.

How will studying at 51³Ô¹ÏÍø help my career?

Graduates from our Department go on to succeed in a range of sectors such as construction, civil engineering, design engineering, engineering consultancy, sustainability and sustainable design, water resource engineering, environmental engineering, disaster management, structural and architectural design, infrastructure monitoring, materials manufacturing, geotechnical engineering, and renewable energy.

Who do our graduates work for?

Our graduates have worked for companies including Jacobs, Vinci, Mott MacDonald, Atkins, Aecom, Stantec, Foster and Partners, Ramboll, AKTII, WSP.  

What jobs do our graduates do?

Structural Engineer, Civil Engineer, Design Engineer, Product Manger, Environmental Consultant, Construction Manager, Geotechnical Engineer, Graduate Hydrologist, Transport Planner, Carbon Market Analyst.

What about further study?

Many graduates go on to become PhD candidates at leading institutions worldwide.

What careers support does 51³Ô¹ÏÍø offer?

Our Careers Service collaborates with our Department to deliver career planning application talks tailored specifically for Civil and Environmental Engineering students during the course. 

Terms and conditions

There are some important pieces of information you should be aware of when applying to 51³Ô¹ÏÍø. These include key information about your tuition fees, funding, visas, accommodation and more.

Read our terms and conditions

You can find further information about your course, including degree classifications, regulations, progression and awards in the programme specification for your course.

Programme specifications