The subsurface has a critical role to play in addressing global warming. Not only does the subsurface provide sources of low-carbon energy, for example, geothermal, but it also enables the storage of energy, including hydrogen, and the permanent sequestration of CO₂ in geological formations such as depleted oil and gas reservoirs. By studying this programme you will gain the engineering skills you need to launch your career in subsurface energy production and storage.
The MSc Subsurface Energy Engineering programme builds on the University of Aberdeens long track record of...
The subsurface has a critical role to play in addressing global warming. Not only does the subsurface provide sources of low-carbon energy, for example, geothermal, but it also enables the storage of energy, including hydrogen, and the permanent sequestration of CO₂ in geological formations such as depleted oil and gas reservoirs. By studying this programme you will gain the engineering skills you need to launch your career in subsurface energy production and storage.<br/><br/>The MSc Subsurface Energy Engineering programme builds on the University of Aberdeens long track record of teaching and research in energy, to provide advanced training in the design and use of available subsurface resources in conjunction with low-carbon energy sources for achieving a sustainable energy future.<br/><br/>You will learn the fundamentals of fluid transport processes in the subsurface with applications to hydrogen transportation and storage, geothermal resources and Carbon Capture, Utilisation and Storage (CCUS). Unlike other engineering programmes, we also cover the important area of sustainable mining for critical energy transition metals, such as lithium and zinc, as well as the subsequent processing, recycling and reuse of these materials. Also, we look at sustainability tools, management systems and standards around the management of quality, environment, energy, safety and life cycle assessment.<br/><br/>This MSc will provide you with a thorough understanding of subsurface transport processes and how to apply the latest computational and modelling techniques to analyse and evaluate the subsurface for various energy related purposes. You will therefore be able to pursue a career not only in sustainable energy sector, but also in related areas such as petroleum engineering, contaminant transport, hydrology and environmental engineering.<br/><br/>The programme syllabus draws on much of the ground-breaking research being conducted within the Centre for Energy Transition (CET), in areas such as geothermal energy, carbon capture and storage, and critical materials for the energy transition.
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Course Details
Information
Study Mode
Full-time
Duration
12 Months
Start Date
15/09/2025
Campus
Main Site
Application deadline
Provider Details
Codes/info
Course Code
Unknown
Institution Code
A20
Points of Entry
Unknown
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