Regionalization of a national integrated energy system model:A case study of the northern Netherlands

Integrated energy system modeling tools predominantly focus on the (inter)national or local scales. The intermediate level is important from the perspective of regional policy making, particularly for identifying the potentials and constraints of various renewable resources. Additionally, distribution variations of economic and social sectors, such as housing, agriculture, industries, and energy infrastructure, foster regional energy demand differences. We used an existing optimization-based national integrated energy system model, Options Portfolio for Emission Reduction Assessment or OPERA,... Mehr ...

Verfasser: Sahoo, Somadutta
van Stralen, Joost N.P.
Zuidema, Christian
Sijm, Jos
Yamu, Claudia
Faaij, André
Dokumenttyp: Artikel
Erscheinungsdatum: 2022
Reihe/Periodikum: Sahoo , S , van Stralen , J N P , Zuidema , C , Sijm , J , Yamu , C & Faaij , A 2022 , ' Regionalization of a national integrated energy system model : A case study of the northern Netherlands ' , Applied Energy , vol. 306 , 118035 . https://doi.org/10.1016/j.apenergy.2021.118035
Schlagwörter: Built environment / District heating / Industries / Optimization / Regionalization / Renewable energy potentials
Sprache: Englisch
Permalink: https://search.fid-benelux.de/Record/base-29192312
Datenquelle: BASE; Originalkatalog
Powered By: BASE
Link(s) : https://hdl.handle.net/11370/c2410822-5f99-4cfe-9e57-ac973ddcc4ae

Integrated energy system modeling tools predominantly focus on the (inter)national or local scales. The intermediate level is important from the perspective of regional policy making, particularly for identifying the potentials and constraints of various renewable resources. Additionally, distribution variations of economic and social sectors, such as housing, agriculture, industries, and energy infrastructure, foster regional energy demand differences. We used an existing optimization-based national integrated energy system model, Options Portfolio for Emission Reduction Assessment or OPERA, for our analysis. The modeling framework was subdivided into four major blocks: the economic structure, the built environment and industries, renewable energy potentials, and energy infrastructure, including district heating. Our scenario emphasized extensive use of intermittent renewables to achieve low greenhouse gas emissions. Our multi-node, regionalized model revealed the significant impacts of spatial parameters on the outputs of different technology options. Our case study was the northern region of the Netherlands. The region generated a significant amount of hydrogen (H 2 ) from offshore wind, i.e. 620 Peta Joule (PJ), and transmitted a substantial volume of H 2 (390 PJ) to the rest of the Netherlands. Additionally, the total renewable share in the primary energy mix of almost every northern region is ∼90% or more compared to ∼70% for the rest of the Netherlands. The results confirm the added value of regionalized modeling from the perspective of regional policy making as opposed to relying solely on national energy system models. Furthermore, we suggest that the regionalization of national models is an appropriate method to analyze regional energy systems.