Resilient Energy System Infrastructure
The energy transition faces many uncertainties, while planning tools are often deterministic. This project will develop the first planning tool for energy infrastructure across multiple sectors that represents this uncertain environment, at regional, national, and European levels.
The project builds on the existing widely-used, open-source, sector-coupled energy planning tool for Europe, PyPSA-Eur, and adds stochastic optimisation capabilities as well as a deeper representation of industry transformation, e-fuel conversion, biomass and carbon capture infrastructure. We will look at uncertainties that include the cost of fuels and technologies, hydrogen availability, network expansion delays for electricity, hydrogen and carbon dioxide, value chain restructuring in industry, imports of e-fuels and secondary materials, renewables build-out and social acceptance. We will examine novel computational techniques to address stochastic problems in a performant way. For this project, we have assembled a team of leading academic researchers and need-owners from the industry who are at the cutting edge of energy system modelling. We will demonstrate the capabilities of our planning tool in several case studies for resilient infrastructure planning, together with our need-owners in France, Germany, Sweden and Finland. We plan several workshops and training events with a broader circle of need owners and stakeholders to ensure a wide uptake of our innovative project results.
Summary
Project name
RESILIENT
Status
Active
RISE role in project
Koordinator
Project start
Duration
3 år
Total budget
2 907 250
Partner
Chalmers tekniska högskola, Stockholm Exergi
Funders
Energimyndigheten Clean Energy Transition (CETPartnership)
External press
Nature Energy: Diversity of biomass usage pathways to achieve emissions targets in the European energy systemNature Energy: Biomass exclusion must be weighed against benefits of carbon supply in European energy systemEnvironmental Research Letters: Accounting for carbon capture solvent cost and energy demand in the energy systemNews item