Overcoming the disconnect between energy system and climate modeling

Publication date

2022-07-20

Authors

Craig, Michael
Wohland, Jan
Stoop, Laurens P.ORCID 0000-0003-2756-5653ISNI 0000000492798389
Kies, Alex
Pickering, Bryn
Bloomfield, Hannah
Browell, J.
De Felice, Matteo
Dent, Chris
Deroubaix, Adrien

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

taverne

Abstract

Energy system models underpin decisions by energy system planners and operators. Energy system modeling faces a transformation: accounting for changing meteorological conditions imposed by climate change. To enable that transformation, a community of practice in energy-climate modeling has started to form that aims to better integrate energy system models with weather and climate models. Here, we evaluate the disconnects between the energy system and climate modeling communities, then lay out a research agenda to bridge those disconnects. In the near-term, we propose interdisciplinary activities for expediting uptake of future climate data in energy system modeling. In the long-term, we propose a transdisciplinary approach to enable development of (1) energy-system-tailored climate datasets for historical and future meteorological conditions and (2) energy system models that can effectively leverage those datasets. This agenda increases the odds of meeting ambitious climate mitigation goals by systematically capturing and mitigating climate risk in energy sector decision-making.

Keywords

Taverne, SDG 13 - Climate Action

Citation

Craig, M, Wohland, J, Stoop, L P, Kies, A, Pickering, B, Bloomfield, H, Browell, J, De Felice, M, Dent, C, Deroubaix, A, Frischmuth, F, Gonzalez, P, Grochowicz, A, Gruber, K, Härtel, P, Kittel, M, Kotzur, L, Labuhn, I, Lundquist, J K, Pflugradt, N, van der Wiel, K, Zeyringer, M & Brayshaw, D J 2022, 'Overcoming the disconnect between energy system and climate modeling', Joule, vol. 6, no. 7, pp. 1405-1417. https://doi.org/10.1016/j.joule.2022.05.010