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Unluturk, Burcu
Publikationer (2 of 2) Visa alla publikationer
Unluturk, B. & Krook-Riekkola, A. (2021). Energy System Models for City Climate Mitigation Plans—Challenges and Recommendations. In: Adriano Bisello, Daniele Vettorato, David Ludlow, Claudia Baranzelli (Ed.), Smart and Sustainable Planning for Cities and Regions: Results of SSPCR 2019—Open Access Contributions. Paper presented at 3rd International Conference on Smart and Sustainable Planning for Cities and Regions (SSPCR 2019), Bolzano, Italy, December 9-13, 2019 (pp. 15-28). Springer
Öppna denna publikation i ny flik eller fönster >>Energy System Models for City Climate Mitigation Plans—Challenges and Recommendations
2021 (Engelska)Ingår i: Smart and Sustainable Planning for Cities and Regions: Results of SSPCR 2019—Open Access Contributions / [ed] Adriano Bisello, Daniele Vettorato, David Ludlow, Claudia Baranzelli, Springer, 2021, s. 15-28Konferensbidrag, Publicerat paper (Refereegranskat)
Abstract [en]

Many cities around the world have adopted climate neutrality targets, and, to reduce their greenhouse gas emissions, they need climate action plans. Energy system optimization models (ESOMs) can be used as tools to support their energy transitions. ESOMs have been in use at the national level for several years and also have recently been used at the city level. Even though several researchers have focused on how city ESOMs can be developed, the literature lacks a discussion of the challenges that are faced in data collection during model development. In this paper, we share the challenges encountered in the model development, as well as in the scenario development and recommend practical solutions for overcoming these challenges. The following three challenges were identified and discussed in the model development process: (a) data availability and quality; (b) communication; and (c) knowledge and background of civil servants and researchers. The main challenges in the scenario development were: (a) parameter selection and (b) complexity. It was found that explanation of the terminology used in ESOMs, presentation of the model structure and preliminary base-year results were crucial actions for overcoming challenges during model development. During the scenario development, collaboration between modelers and civil servants when reviewing parameter combinations and working with preliminary scenario results were decisive strategies for improving the civil servants’ understanding of ESOMs. Complementarily, it was found that continuous communication between the researcher and the civil servant and good comprehension of the model on the municipality's side helped improve the usefulness of ESOMs in cities’ energy transitions.

Ort, förlag, år, upplaga, sidor
Springer, 2021
Serie
Green Energy and Technology, ISSN 1865-3529, E-ISSN 1865-3537
Nyckelord
Climate mitigation plans, Energy transition, Energy system optimization models, Municipalities, Stakeholder engagement
Nationell ämneskategori
Energisystem
Forskningsämne
Energiteknik
Identifikatorer
urn:nbn:se:ltu:diva-83538 (URN)10.1007/978-3-030-57764-3_2 (DOI)2-s2.0-85102638264 (Scopus ID)
Konferens
3rd International Conference on Smart and Sustainable Planning for Cities and Regions (SSPCR 2019), Bolzano, Italy, December 9-13, 2019
Forskningsfinansiär
Energimyndigheten
Anmärkning

ISBN för värdpublikation: 978-3-030-57763-6, 978-3-030-57766-7, 978-3-030-57764-3

Tillgänglig från: 2021-04-09 Skapad: 2021-04-09 Senast uppdaterad: 2025-10-21Bibliografiskt granskad
Krook-Riekkola, A., Unluturk, B., Forsberg, J., Simoes, S., Dias, L. & Pardo Garcia, N. (2018). SureCity Deliverable 3.1 Outline of the City-level modelling framework. Luleå University of Technology
Öppna denna publikation i ny flik eller fönster >>SureCity Deliverable 3.1 Outline of the City-level modelling framework
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2018 (Engelska)Rapport (Övrigt vetenskapligt)
Abstract [en]

This report refers to Work Package 3. Task 3.1 of the SURECITY project. It presents the first part of the generic TIMES-City model in which the users provide input. The model has been developed for this project and to be implemented in three partner cities, namely, Almada, Judenburg and Malmö.

The TIMES-City model represents a generic city energy system; supply technologies and their infrastructure and the demand technologies used in buildings, transportation and industry. The model here presented is the result of the information compiled in Work Package 1 (WP1- User requirements and ICT specification) and Work Package 2 (WP2- Status quo of the demonstration cases). WP1 clarified the needs of the small and medium cities to be modelled and WP2 compiled the available information to be input into the model regarding the status quo of the demonstration sites in terms of energy system and transport infrastructure, usage, GHG emissions and air quality. In this report the existing users and future cities are guided on how to provide input the model. The structure of the files and the data needed for the model are given for the demand sectors mentioned above.

All in all, this report defines the demand and supply technologies used in TIMES-City model and how to populate it with the data. Thus, it is a useful manual for the project’s partner cities and future users.

Ort, förlag, år, upplaga, sidor
Luleå University of Technology, 2018. s. 75
Nyckelord
Energy System Analysis, Energy System Optimization, Energy Transition
Nationell ämneskategori
Energisystem
Forskningsämne
Energiteknik
Identifikatorer
urn:nbn:se:ltu:diva-83927 (URN)
Projekt
ERA-NET Co-fund Smart Cities and Communities Project no: 646453
Forskningsfinansiär
Energimyndigheten, 41204-1EU, Horisont 2020, 646453
Tillgänglig från: 2021-04-27 Skapad: 2021-04-27 Senast uppdaterad: 2025-10-21Bibliografiskt granskad
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