Open Access
Issue |
E3S Web of Conf.
Volume 562, 2024
BuildSim Nordic 2024
|
|
---|---|---|
Article Number | 03002 | |
Number of page(s) | 13 | |
Section | Simulation at Urban Scale | |
DOI | https://doi.org/10.1051/e3sconf/202456203002 | |
Published online | 07 August 2024 |
- European Comission, 2050 long-term strategy (2023), accessed 05 October 2023, https://climate.ec.europa.eu/eu-action/climate-strategies-targets/ 2050-long-term-strategy_en [Google Scholar]
- United Nations Environment Programme, resreport, United Nations, Nairobi (2022), https://www.unep.org/resources/publication/ 2022-global-status-report-buildings-and-construction [Google Scholar]
- M.J.S. Zuberi, K. Narula, S. Klinke, J. Chambers, K.N. Streicher, M.K. Patel, Potential and costs of decentralized heat pumps and thermal networks in Swiss residential areas, INTERNATIONAL JOURNAL OF ENERGY RESEARCH 45, 15245 (2021), num Pages: 20 Place: Hoboken Publisher: Wiley Web of Science ID: WOS:000647322000001. 10.1002/er.6801 [CrossRef] [Google Scholar]
- S. Moser, J. Mayrhofer, R.R. Schmidt, R. Tichler, Socioeconomic cost-benefit-analysis of seasonal heat storages in district heating systems with industrial waste heat integration, Energy 160, 868 (2018). 10.1016/j.energy.2018.07.057 [CrossRef] [Google Scholar]
- J. Formhals, F. Feike, H. Hemmatabady, B. Welsch, I. Sass, Strategies for a transition towards a solar district heating grid with integrated seasonal geothermal energy storage, Energy 228, 120662 (2021). 10.1016/j.energy.2021.120662 [CrossRef] [Google Scholar]
- G. Mavromatidis, K. Orehounig, L. Andrew Bollinger, M. Hohmann, J.F. Marquant, S. Miglani, B. Morvaj, P. Murray, C. Waibel, D. Wang et al., Ten questions concerning modeling of distributed multi-energy systems, Building and Environment 165, 106372 (2019), wOS:000494993200008. 10.1016/j.buildenv.2019.106372 [Google Scholar]
- L. Andrew Bollinger, J. Marquant, M. Sulzer, Optimization-based planning of local energy systems -bridging the research-practice gap, IOP Conference Series: Earth and Environmental Science 323, 012077 (2019). 10.1088/1755-1315/323/1/012077 [CrossRef] [Google Scholar]
- S. Wehkamp, L. Schmeling, L. Vorspel, F. Roelcke, K.L. Windmeier, District Energy Systems: Challenges and New Tools for Planning and Evaluation, ENERGIES 13, 2967 (2020), num Pages: 20 Place: Basel Publisher: MDPI Web of Science ID: WOS:000545401100294. 10.3390/en13112967 [CrossRef] [Google Scholar]
- Umweltbundesamt (UBA), Entwicklung der spezifischen Treibhausgas-Emissionen des deutschen Strommix in den Jahren 1990 – 2022 (2023), accessed: 05 October 2023, https://www.umweltbundesamt.de/publikationen/ entwicklung-der-spezifischen-treibhausgas-9 [Google Scholar]
- M. Geidl, G. Koeppel, P. Favre-Perrod, B. Klöckl, G. Andersson, K. Fröhlich, The Energy Hub: A Powerful Concept for Future Energy Systems (Electrical & Computer Engineering, 2007), accepted: 2019-08-15T09:52:39Z, https://www. research-collection.ethz.ch/handle/20.500.11850/3133 [Google Scholar]
- G. Mavromatidis, R. Evins, K. Orehounig, V. Dorer, J. Carmeliet, Multi-objective optimization to simultaneously address energy hub sizing, layout and scheduling using a linear formulation., in Engineering Optimization IV (Taylor & Francis, 2014), pp. 603–608, ISBN 978-1-138-02725-1, accepted: 2017-06-11T15:50:54Z, https://www.research-collection.ethz.ch/handle/20.500.11850/97303 [Google Scholar]
- B. Morvaj, R. Evins, J. Carmeliet, Optimising urban energy systems: Simultaneous system sizing, operation and district heating network layout, Energy 116, 619 (2016). 10.1016/j.energy.2016.09.139 [CrossRef] [Google Scholar]
- nPro Energy GmbH (nPro), nPro: Design tool for district energy systems with heat networks (n.d.), https://www.npro.energy/main/en/ [Google Scholar]
- K. Helin, S. Syri, B. Zakeri, Improving district heat sustainability and competitiveness with heat pumps in the future Nordic energy system, in 16TH INTERNATIONAL SYMPOSIUM ON DISTRICT HEATING AND COOLING, DHC2018, edited by I. Weidlich (Elsevier Science Bv, Amsterdam, 2018), Vol. 149, pp. 455–464, iSSN: 1876-6102 Num Pages: 10 Series Title: Energy Procedia Web of Science ID: WOS:000482873900048, https://www.webofscience.com/api/gateway?GWVersion=2&SrcAuth= DOISource&SrcApp=WOS&KeyAID=10.1016%2Fj.egypro.2018.08.210& DestApp=DOI&SrcAppSID=EUW1ED0A2FT7k6Gbx5FoSNJ8Cx0An&SrcJTitle= 16TH+INTERNATIONAL+SYMPOSIUM+ON+DISTRICT+HEATING+AND+COOLING%2C+DHC2018&DestDOIRegistrantName=Elsevier [Google Scholar]
- M. Peters, T. Steidle, H. Hebisch, J. Skok, A. Berg, D. Graef, F. Anders, Technikkatalog Kommunale Wärmeplanung Version 1.0 (2023). [Google Scholar]
- International Renewable Energy Agency (IRENA), Electricity storage and renewables: Costs and markets to 2030 (2017). [Google Scholar]
- C. Bauer, S. Hirschberg, Y. Bäuerle, S. Biollaz, A. Calbry-Muzyka, B. Cox, T. Heck, M. Lehnert, A. Meier, H.M. Prasser et al., Potentials, costs and environmental assessment of electricity generation technologies (2017). [Google Scholar]
- D. Radov, P. Klevnäs, A. Hanif, M. Abu-Ebid, N. Barker, J. Stambaugh, The UK Supply Curve for Renewable Heat: Study for the Department of Energy and Climate Change (2009). [Google Scholar]
- Joint Activity Scenarios and Modelling (JASM), Dezentralised energy conversion technologies (2019), https://sccer-jasm.ch/ [Google Scholar]
- Deutsche Vereinigung für Wasserwirtschaft Abwasser und Abfall e.V. (DWA), Merkblatt DWA-M 114: Abwasserwärmenutzung (2020). [Google Scholar]
- G. Schlömer, Dissertation, Gottfried Wilhelm Leibniz Universität, Hannover (2017), https://www.repo.uni-hannover.de/bitstream/handle/123456789/9113/1007490438.pdf?sequence=1&isAllowed=y [Google Scholar]
- J. Scheffler, Verteilnetze auf dem Weg zum Flächenkraftwerk: Rechtlicher Rahmen, Erzeuger, Netze (Springer-Verlag Berlin Heidelberg, 2016) [CrossRef] [Google Scholar]
- K. Heuck, K.D. Dettmann, D. Schulz, Elektrische Energieversorgung: Erzeugung, Übertragung und Verteilung elektrischer Energie für Studium und Praxis (Springer Vieweg, 2013) [Google Scholar]
- Bundesministerium der Justiz, Gesetz zur Einsparung von Energie und zur Nutzung erneuerbarer Energien zur Wärmeund Kälteerzeugung in Gebäuden: Gebäudeenergiegesetz GEG (08.08.2020) [Google Scholar]
- Bundesnetzagentur, Monitoringbericht 2022 (2022). [Google Scholar]
- A. Kemmler, A. Kirchner, A. auf der Maur, Energiewirtschaftliche Projektionen und Folgeabschätzungen 2030/2050: Gesamtdokumentation der Szenarien (2021). [Google Scholar]
- B. Greiner, H. Hermann, Sektorale Emissionspfade in Deutschland bis 2050 Stromerzeugung (2016). [Google Scholar]
- G. Luderer, C. Kost, D. Sörgel, Deutschland auf dem Weg zur Klimaneutralität 2045: Szenarien und Pfade im Modellvergleich (2021). [Google Scholar]
- P. Sterchele, J. Brandes, J. Heilig, D. Wrede, C. Kost, Schlegl, A. Bett, H.M. Henning, Studie: Wege zu einem klimaneutralen Energiesystem Die deutsche Energiewende im Kontext gesellschaftlicher Verhaltensweisen (2020). [Google Scholar]
- C. Stolte, T. Bründlinger, O. Krieger, Gebäudestudie: Szenarien für eine marktwirtschaftliche Klima-und Ressourcenschutzpolitik 2050 im Gebäudesektor (2017). [Google Scholar]
- P. Dossow, T. Kern, S. von Roon, Entwicklungsrahmen der Haushaltsstrompreise in Deutschland (2021). [Google Scholar]
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