Master of Science in Subsurface Energy Systems

Heriot-Watt University - Edinburgh Campus

UK,Scotland

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12 Months

Duration

CAD 29,960/year

Tuition Fee

CAD 0 FREE

Application Fee

Apply Date

UK, Scotland

Type: University

Location Type: Urban

Founded: 1966

Total Students: 31,000 +

Int. Students: 6,200 +

Campus Detail

Main Campus Address

Campus The Avenue, Edinburgh EH14 4AS

Master of Science in Subsurface Energy Systems

Program Overview

At Heriot Watt, we are delivering a new MSc programme in Subsurface Energy Systems (SES) that will edcate you about unlocking energy resources with a low carbon footprint. This will be a stepping stone for your career in industry, government, non-government organisations (NGOs) or academia.

The programme addresses key concepts in subsurface energy and CO2 storage, geothermal energy or transitional gas while integrating geoscience, engineering, political and societal aspects. It will appeal to geoscientists, reservoir engineers, governmental stakeholders and all those interested in the management of subsurface reservoirs used to switch from a fossil fuel-driven economy to a decarbonised one, using natural gas as a transitional energy resource. Its production from unconventional reservoirs comes with environmental risks that we have to assess and control. This degree is delivered jointly by The Lyell Centre and the Institute of GeoEnergy Engineering.

The recent report by the Intergovernmental Panel on Climate Change predicts serious consequences from further emitting CO2 into the atmosphere, thereby accelerating man-made climate change. This requires a drastic decarbonisation of our economies by switching from fossil fuels to renewable energies like wind, solar, hydro, or geothermal or by implementing carbon capture and storage (CCS) at scale. Renewable energies can readily be used in the form of electrical power. When electricity production exceeds the demand, electricity can be stored in grids or batteries at limited capacity. At larger scale, electricity can be stored in the subsurface after conversion to, for example, hydrogen, thermal energy, or compressed air until needed, allowing for back-production within short and longer time scales of hours to years.

In comparison to temporary energy storage, CCS aims at safe and permanent storage. The UK and especially offshore storage sites in Scotland are attractive targets for CCS and considered to extend the lifetime of oil and gas reservoirs significantly, thereby strengthening the related industrial sectors. The combined technologies of geothermal energy production, subsurface energy storage or CCS refer to the geoengineering aspects of subsurface energy systems (SES). In this context, SES rather refers to the integration of geoenergy applications with energy production at the surface as well as economic, societal and policy aspects.

There is a significant demand globally for research and training in these technologies, given that many small and large integrated oil and gas companies are decarbonising their assets, which at the same time, needs to be monitored and regulated by governmental bodies. Councils across the UK and Europe are increasingly looking at the subsurface for storing or producing energy.

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