CORDIS bietet Links zu öffentlichen Ergebnissen und Veröffentlichungen von HORIZONT-Projekten.
Links zu Ergebnissen und Veröffentlichungen von RP7-Projekten sowie Links zu einigen Typen spezifischer Ergebnisse wie Datensätzen und Software werden dynamisch von OpenAIRE abgerufen.
Leistungen
A web-based calculation tool to support decision-making and investment.
An exploitation strategy for syn.ikia partners and syn.ikia innovations (öffnet in neuem Fenster)An exploitation strategy for synikia partners and synikia innovations
Grey box models of the demonstration cases (öffnet in neuem Fenster)Evaluation of existing business models as well as identification and design of novel business models (report).
Report on stakeholder and user engagement activities (öffnet in neuem Fenster)Guidelines for realizing energy flexibility (öffnet in neuem Fenster)
Architecture Description of syn.ikia ICT Framework Final (öffnet in neuem Fenster)
Architecture description of synikia ICT framework
On the identified measurable benefits syn.ikia and their potential impact (öffnet in neuem Fenster)A report on the identified measurable benefits syn.ikia and their potential impact
Report on design of SPEN in each of the four climatic zones (öffnet in neuem Fenster)Development of the plus energy neighbourhood design by applying the methods of Integrated Energy Design (IED) to develop an integrated design process at the neighbourhood scale. Create scenarios for current and future climates, as well as different scenarios for energy and power costs, operation and maintenance costs, future codes and regulations, user behaviour, etc. Performance prediction of the plus energy design using dynamic computer simulations: i. Indoor climate ii. Energy, iii. Power, iv. CO2 emissions. In this deliverable, we will analyse different scenarios with combinations of state-of-the-art materials, components, technologies and smart control systems with regards to the Key Performance Indicators (KPIs).
An overview of financing opportunities and a strategy to link them to syn.ikia innovations and investors (öffnet in neuem Fenster)An overview of financing opportunities and a strategy to link them to syn.ikia innovations and investors.
Detailed dynamic models for the plus energy buildings of syn.ikia neighbourhoods (öffnet in neuem Fenster)Evaluation of the performance of the plus energy buildings and the neighbourhood scale according to the framework defined in Task 3.1, i.e. indoor climate, energy performance (thermal and electric), power performance (including flexibility), cost effectiveness, social sustainability, and CO2 emissions of the energy use based on design and construction data (dynamic simulations).
Report on the commissioning of plus energy neighbourhoods in the four climatic zones (öffnet in neuem Fenster)Measures and strategies to achieve market uptake of 10% plus energy neighbourhoods within 2030 (öffnet in neuem Fenster)
Report on measures and strategies to achieve market uptake of 10% plus energy neighbourhoods within 2030.
IEDN Integrated energy design planning guidelines for plus energy neighbourhoods (öffnet in neuem Fenster)Integrated energy design planning guidelines for plus energy neighbourhoods
Report on the operation of plus energy neighbourhoods in the four climatic zones (öffnet in neuem Fenster)Analysis of shared infrastructures in plus energy neighbourhoods (öffnet in neuem Fenster)
Final report on stakeholder and user engagement activities (öffnet in neuem Fenster)
Report on stakeholder and user engagement activities
Methodology framework to evaluate Multiple Benefits (öffnet in neuem Fenster)Market analysis of each of the four demonstration cases (öffnet in neuem Fenster)
Policy recommendations at the EU level and four factsheets with recommendations tailored at the city level (öffnet in neuem Fenster)
A report on policy recommendations at the EU level and four factsheets with recommendations tailored at the city level
A methodology report on the required calculations for the quantification and monetisation of benefits (öffnet in neuem Fenster)Barriers and opportunities of plus energy neighbourhoods of the national and local regulatory framework (öffnet in neuem Fenster)
A report on barriers and opportunities of plus energy neighbourhoods of the national and local regulatory framework.
Project Management & Quality Assurance Plan (QAP) (öffnet in neuem Fenster)The Project Management Team will develop a comprehensive Quality Assurance Plan (QAP) in close collaboration with the Work Package Leaders. This will include a standard internal review process for all deliverables within the project to ensure that the standard of excellence for the syn.ikia project is maintained.
Characterization of the thermodynamic properties of the demonstration cases (öffnet in neuem Fenster)A systematic approach to development, registration, and reporting of innovations 12 (öffnet in neuem Fenster)
A systematic approach to development, registration, and reporting of innovations. M12, M24, M36, M48
Publishable Final Report (öffnet in neuem Fenster)This report will be targeted to four types of actors: (i) private owners, (ii) decision-makers for the EE renovation of buildings, (iii) private companies operating in the building construction and housing market, (iv) Financial institutes and ESCOs at national and EU level.
Construction of real-life demonstration project as co-creation hub for testing of novel systems, technologies, and processes to achieve sustainable plus energy houses at the neighbourhood scale.The following materials, components, and systems will be of particular focus: •Design and selection of materials and constructive solutions in order to achieve energy demand reduction for the buildings of the neighbourhood (insulating material in façade and roof, airtight windows and glasses), both in use phase and analysing the global life cycle.•Implementation of passive solutions to ensure the maximum solar gains in winter and to guarantee solar protection in summer by shading controls, for an optimal thermal comfort of the users.•Smart lighting systems by using lighting and presence controls, in order to optimize the use of artificial lighting and maximize the visual comfort.•Design and control of aerothermal heat pumps with heat recovery systems for heating and cooling ensuring the minimum energy consumption and the maximum indoor environmental comfort, in combination with controlled mechanical ventilation systems to achieve maximum air quality in the building.•Evaluation and design of building/neighbourhood systems for energy generation. Design and integration of PV systems, exceeding the building energy needs, in such a way that these solutions cover the buildings’ consumption and contribute with extra energy to be used in other applications. •Planning, design, and implementation of interconnection infrastructure between the buildings of the neighbourhood in order to share the generated energy between the different buildings.•Design and implementation of management systems at building and neighbourhood scale, to ensure the neighbourhood energy balance, minimizing the energy demand, and maximizing the use of on-site renewable energy. •Design and implementation of monitoring systems with user interface systems for all the elements related to the generation and consumption of electricity at dwelling, building, and neighbourhood level, in order to fortes the awareness of the neighbourhood.•Study and design of the electric vehicle (EV) integration and its impact in the neighbourhood at the energy and environmental level. Identification of the requirements and needs for the EV implementation.
Demonstration case of plus energy neighbourhoods in Continental climate (öffnet in neuem Fenster)Construction of real-life demonstration project as co-creation hub for testing of novel systems, technologies, and processes to achieve sustainable plus energy houses at the neighbourhood scale.The following materials, components, and systems will be of particular focus: •Assessment of the current energy and comfort performance of the demo case before the refurbishment (following the methodology developed in T3.1)•Evaluation of the energy and resource need before refurbishment and development of need reduction strategies•Design and control of passive envelope refurbishment solutions including assessment of necessary amount of insulation, performance enhancement of openings, potential shading systems and their controls for optimal energy efficiency and thermal comfort of the users. •Evaluation and design of building/neighbourhood systems for energy generation for improvement on baseline solution. Solutions to be considered: waste heat usage from neighbouring industrial park, air or ground source heat pump system, local micro power plant. (in sync with T3.5)•Design and integration of PV or BIPV and solar thermal systems.•Evaluation of possible implementation of interconnection infrastructure between the buildings of the neighbourhood in order to share the generated energy between the different buildings (in sync with T3.5)•Evaluation of possible heating and ventilation systems in combination with storage systems to provide peak shaving and maximum utilization of renewables, while ensuring a good indoor climate. (in sync with T3.4) •Evaluation of possible electrical systems (lighting and appliances) to allow for optimal energy and power performance and high comfort for users. (in sync with T3.4)•Evaluation of possible management systems at building and neighbourhood scale, to ensure the neighbourhood energy balance, minimizing the energy demand, and maximizing the use of on-site renewable energy. •Design and implementation of monitoring systems with user interface systems for all the elements related to the generation and consumption of electricity at dwelling, building, and neighbourhood level, in order to fortes the awareness of the neighbourhood. (in sync with T3.1)•Study of the electric vehicle (EV) integration and its impact in the neighbourhood at the energy and environmental level. Identification of the requirements and needs for the EV implementation.•Participatory Co-design. Inclusion of building users and stakeholders of the refurbishment process in the evaluation and design of different refurbishment solutions in parallel with the application of Integrated Energy Design. Based on the identified stakeholder value chain the main stakeholders are involved in the design development and decision making process through semi-structured interviews, eco-design workshops and focus group events.
Syn.ikia Cloud Hub (öffnet in neuem Fenster)Demonstration case of plus energy neighbourhoods in Subarctic climate (öffnet in neuem Fenster)
Construction of real-life demonstration project as co-creation hub for testing of novel systems, technologies, and processes to achieve sustainable plus energy houses at the neighbourhood scale.The following materials, components, and systems will be of particular focus: •Design the amount, type, and placement of thermal mass components for building integrated storage in combination with ventilation system design and control. •Design and control of shading systems for peak shaving of heating and cooling loads and maximizing visual comfort. •Design and control of heating and ventilation systems in combination with storage systems to provide peak shaving and maximum utilization of renewables, while ensuring a good indoor climate. •Evaluate the design and control of a ground source heat pump system to maximize use of solar electricity from BIPV system and to minimize life cycle costs versus connecting to the district heating network.•Design of BIPV system to reach the plus energy performance and high architectural quality. •Consider the integration of a building energy management system (OBOS Smart Living) and a user interface to optimize the building performance at the neighbourhood scale, taking into account social sustainability issues.•Implement a system for smart charging of electric vehicles for load shifting, power shaving, and increased self-consumption of solar electricity.
Demonstration case of plus energy neighbourhoods in Marine climate (öffnet in neuem Fenster)Construction of real-life demonstration project as co-creation hub for testing of novel systems, technologies, and processes to achieve sustainable plus energy houses at the neighbourhood scale.The following materials, components, and systems will be of particular focus: •Design the amount, type, and placement of thermal mass components for building integrated storage in combination with ventilation system design and control. •Design and control of shading systems for peak shaving of heating and cooling loads and maximizing visual comfort. •Design and control of active ventilation systems.•Design and control of local buffering strategies using for example domestic hot water.•Design and control of heating and cooling systems in combination with storage systems to provide peak shaving and maximum utilization of renewables, while ensuring good indoor climate. •Design and control of a ground source heat pump system to maximize use of solar electricity from a BIPV system and to minimize life cycle costs. •Design of the BIPV system to reach the plus energy performance and high architectural quality. •Design and control of electrical systems (lighting and appliances) to allow for optimal energy and power performance and high comfort for users. •Design a building energy management system and a user interface system to optimize the building performance at the neighbourhood scale. Develop and test a Vehicle to Home V2H system (TRL 5-7) employing electric car batteries.
Project Newsletters, M6,12,18,24,30,36,42,48
Articles in online media such as the BUILD UP portal and other relevant websites & 3 5-minute podcasts (öffnet in neuem Fenster)Project Visual materials 9 (öffnet in neuem Fenster)
Project Visual materials: M9, M28
Project Visual materials 28 (öffnet in neuem Fenster)Project Visual materials M9 M28
Project Website & Social media channels (öffnet in neuem Fenster)Project Newsletters 24 (öffnet in neuem Fenster)
Project Newsletters M612182430364248
Project Newsletter 6 (öffnet in neuem Fenster)Project Newsletters, M6,12,18,24,30,36,42,48
Project Newsletter 18 (öffnet in neuem Fenster)Project Newsletters, M6,12,18,24,30,36,42,48
Project Newsletter 50 (öffnet in neuem Fenster)Project Newsletters, M6,12,18,24,30,36,42,50
Virtual Community for Stakeholders 2 (öffnet in neuem Fenster)Virtual Community
Project Newsletters 36 (öffnet in neuem Fenster)Project Newsletters M612182430364248
Videos & Infographics about the case studies and reports from the project conferences (öffnet in neuem Fenster)Project Newsletter 30 (öffnet in neuem Fenster)
Project Newsletters M612182430364248
Digital Handbook of the case studies (öffnet in neuem Fenster)Project Newsletter 12 (öffnet in neuem Fenster)
Project Newsletters, M6,12,18,24,30,36,42,48
Veröffentlichungen
Autoren:
Seyed Shahabaldin Tohidi, Henrik Madsen, Georgios Tsaousoglou and Tobias K. S. Ritschel
Veröffentlicht in:
https://ieeexplore.ieee.org/document/10590768, 2024
Herausgeber:
IEEE
Autoren:
Christian Ankerstjerne Thilker, Hjörleifur G Bergsteinsson, Peder Bacher, Henrik Madsen, Davide Calì and Rune G. Junker
Veröffentlicht in:
E3S Web Conf., Ausgabe 246, 2021, ISSN 2267-1242
Herausgeber:
E3S Web Conf.
DOI:
10.1051/e3sconf/202124609005
Autoren:
Daniel Satola, Tonje Healey Trulsrud , Joana Ortiz , Jaume Salom, Abel Magyari, András Reith, Oskar Mair am Tinkhof, Linda Hoes-van Oeffelem, Wouter Borsboom, Wim Kornaat, Inger Andersen, Niki Gaitani
Veröffentlicht in:
International Association of Building Physics, 2024
Herausgeber:
Springer
Autoren:
Kerstens, A. Greco, A. Langley, D.
Veröffentlicht in:
2023
Herausgeber:
Conferentie: 39th EGOS Colloquium: Organizing for the Good Life: Between Legacy and Imagination
Autoren:
Wouter Borsboom, Wim Kornaat, Ruud van der Linden, Behrouz Eslami Mossalam, Wil de Gids
Veröffentlicht in:
2022
Herausgeber:
AIVC
Autoren:
Mia Ala-Juusela, Cristian Pozza, Jaume Salom, Iván Luque Segura, Andreas Tuerk, Roberto Lollini, Niki Gaitani, Annamaria Belleri
Veröffentlicht in:
The 9th Annual Edition of Sustainable Places (SP 2021), 2024, Seite(n) 26
Herausgeber:
MDPI
DOI:
10.3390/environsciproc2021011026
Autoren:
Madsen, H., Tohidi, S.S., Ebrahimy, R., Banaei, M., Ritschel, T.K.S., Mahdavi, N. (2025). Recent Trends in Demand-Side Flexibility. In: Jørgensen, B.N., Ma, Z.G., Wijaya, F.D., Irnawan, R., Sarjiya, S.
Veröffentlicht in:
2024
Herausgeber:
Springer
Autoren:
W A Borsboom, B Eslami Mossallam and R J P van der Linden
Veröffentlicht in:
IOP Conference Series: Earth and Environmental Science, Ausgabe 012007, 2022, Seite(n) 1085
Herausgeber:
IOP Conference Series: Earth and Environmental Science
DOI:
10.1088/1755-1315/1085/1/012007
Autoren:
Victoria Taranu, Sheikh Zuhaib, Sriraj Gokarakonda
Veröffentlicht in:
2024
Herausgeber:
ECEEE 2024
Autoren:
Raquel Alonso Pedrero, Paolo Pisciella, Pedro Crespo del Granado
Veröffentlicht in:
Energy, Ausgabe 295, 2024, Seite(n) 131033, ISSN 0360-5442
Herausgeber:
Pergamon Press Ltd.
DOI:
10.1016/j.energy.2024.131033
Autoren:
Christian Ankerstjerne Thilker, Peder Bacher, Davide Cali, Henrik Madsen
Veröffentlicht in:
Energy and AI, Ausgabe 9, 2024, Seite(n) 100165, ISSN 2666-5468
Herausgeber:
Elsevier BV
DOI:
10.1016/j.egyai.2022.100165
Autoren:
Jaume Salom, Meril Tamm, Inger Andresen, Davide Cali, Ábel Magyari, Viktor Bukovszki, Rebeka Balázs, Paraskevi Vivian Dorizas, Zsolt Toth, Clara Mafé, Caroline Cheng, András Reith, Paolo Civiero, Jordi Pascual, Niki Gaitani
Veröffentlicht in:
Energies, Ausgabe 14/14, 2021, Seite(n) 4314, ISSN 1996-1073
Herausgeber:
Multidisciplinary Digital Publishing Institute (MDPI)
DOI:
10.3390/en14144314
Autoren:
Tonje Healey Trulsrud, Inger Andresen, Niki Gaitani
Veröffentlicht in:
E3S Web of Conferences, Ausgabe 362, 2022, Seite(n) 10004, ISSN 2267-1242
Herausgeber:
EDP Sciences
DOI:
10.1051/e3sconf/202236210004
Autoren:
Christian Ankerstjerne Thilker, Henrik Madsen, John Bagterp Jørgensen
Veröffentlicht in:
Applied Energy, Ausgabe 292, 2021, Seite(n) 116889, ISSN 0306-2619
Herausgeber:
Pergamon Press Ltd.
DOI:
10.1016/j.apenergy.2021.116889
Autoren:
Christian Ankerstjerne Thilker, Peder Bacher, Henrik Madsen
Veröffentlicht in:
E3S Web of Conferences, Ausgabe 362, 2022, Seite(n) 12004, ISSN 2267-1242
Herausgeber:
EDP Sciences
DOI:
10.1051/e3sconf/202236212004
Autoren:
Rongling Li, Andrew J. Satchwell, Donal Finn, Toke Haunstrup Christensen, Michaël Kummert, Jérôme Le Dréau, Rui Amaral Lopes h, Henrik Madsen, Jaume Salom, Gregor Henze, Kim Wittchen
Veröffentlicht in:
Building and Environment, Ausgabe Volume 223, September 2022, 2022, Seite(n) 109461, ISSN 0346-251X
Herausgeber:
Pergamon Press Ltd.
DOI:
10.1016/j.buildenv.2022.109461
Autoren:
Daniela Baer, Bradley Loewen, Caroline Cheng, Judith Thomsen, Annemie Wyckmans, Alenka Temeljotov-Salaj, Dirk Ahlers
Veröffentlicht in:
Sustainability, Ausgabe 13, 2024, Seite(n) 7362, ISSN 2071-1050
Herausgeber:
MDPI Open Access Publishing
DOI:
10.3390/su13137362
Autoren:
Mads E. Hansen, Nystrup Peter, Jan K. Møller, Madsen Henrik
Veröffentlicht in:
Wind Energy, Ausgabe 26, 2023, Seite(n) 615-632, ISSN 1095-4244
Herausgeber:
John Wiley & Sons Inc.
DOI:
10.1002/we.2819
Autoren:
Johannes Brozovsky, Arild Gustavsen, Niki Gaitani
Veröffentlicht in:
Sustainable Cities and Society, Ausgabe 72, 2021, Seite(n) 103013, ISSN 2210-6707
Herausgeber:
Elsevier BV
DOI:
10.1016/j.scs.2021.103013
Autoren:
Ilaria Marotta, Thibault Péan, Francesco Guarino, Sonia Longo, Maurizio Cellura, Jaume Salom
Veröffentlicht in:
Solar, Ausgabe 3, 2025, Seite(n) 253-282, ISSN 2673-9941
Herausgeber:
MDPI AG
DOI:
10.3390/solar3020016
Autoren:
Inger Andresen; Tonje Healey Trulsrud; Luca Finocchiaro; Alessandro Nocente; Meril Tamm; Joana Ortiz; Jaume Salom; Abel Magyari; Linda Hoes-van Oeffelen; Wouter Borsboom; Wim Kornaat; Niki Gaitani
Veröffentlicht in:
Energy and Buildings, Ausgabe 274, 2022, ISSN 0378-7788
Herausgeber:
Elsevier BV
DOI:
10.1016/j.enbuild.2022.112447
Autoren:
Seyed Shahabaldin Tohidi, Henrik Madsen, Davide Calì, Tobias K.S. Ritschel
Veröffentlicht in:
Smart Energy, Ausgabe 17, 2025, Seite(n) 100173, ISSN 2666-9552
Herausgeber:
Elsevier BV
DOI:
10.1016/j.segy.2025.100173
Autoren:
Meril Tamm, Joana Ortiz, Jordi Pascual, Jarek Kurnitski, Martin Thalfeldt, Jaume Salom
Veröffentlicht in:
E3S Web of Conferences, Ausgabe 246, 2021, Seite(n) 13001, ISSN 2267-1242
Herausgeber:
E3S Web of Conferences
DOI:
10.1051/e3sconf/202124613001
Autoren:
Seyed Shahabaldin Tohidi, Davide Cali, Meril Tamm, Joana Ortiz, Jaume Salom, Henrik Madsen
Veröffentlicht in:
E3S Web of Conferences, Ausgabe 362, 2022, Seite(n) 12002, ISSN 2267-1242
Herausgeber:
EDP Sciences
DOI:
10.1051/e3sconf/202236212002
Autoren:
Matteo Favero, Jan Kloppenborg Møller, Davide Calì, Salvatore Carlucci
Veröffentlicht in:
Applied Energy, Ausgabe 325, 2023, Seite(n) 119803, ISSN 0306-2619
Herausgeber:
Pergamon Press Ltd.
DOI:
10.1016/j.apenergy.2022.119803
Autoren:
C Cheng, A Ekambaram
Veröffentlicht in:
IOP Conference Series: Earth and Environmental Science, Ausgabe 1389, 2024, Seite(n) 012008, ISSN 1755-1307
Herausgeber:
IOP Publishing
DOI:
10.1088/1755-1315/1389/1/012008
Autoren:
Christian Ankerstjerne Thilker, John Bagterp Jørgensen, Henrik Madsen
Veröffentlicht in:
Applied Energy, Ausgabe 327, 2022, Seite(n) 120086, ISSN 0306-2619
Herausgeber:
Pergamon Press Ltd.
DOI:
10.1016/j.apenergy.2022.120086
Autoren:
Mikkel L. Sørensen, Peter Nystrup, Mathias B. Bjerregård, Jan K. Møller, Peder Bacher, Henrik Madsen
Veröffentlicht in:
Wiley Interdisciplinary Reviews: Energy and Environment, Ausgabe 465, 2022, ISSN 2041-8396
Herausgeber:
John Wiley and Sons Ltd
DOI:
10.1002/wene.465
Autoren:
Andrea Kerstens, Angela Greco
Veröffentlicht in:
Energies, Ausgabe 16, 2023, Seite(n) 5453, ISSN 1996-1073
Herausgeber:
Multidisciplinary Digital Publishing Institute (MDPI)
DOI:
10.3390/en16145453
Autoren:
Tonje Healey Trulsrud, Janneke van der Leer
Veröffentlicht in:
Energy and Buildings, Ausgabe 318, 2024, Seite(n) 114429, ISSN 0378-7788
Herausgeber:
Elsevier BV
DOI:
10.1016/j.enbuild.2024.114429
Autoren:
Annamaria Belleri, Roberto Lollini, Cristian Pozza, Ivan Luque Segura, RMIT Europe, Lorenza Pistore, Andreas Türk, Mia Ala-Juusela, Hassam Rehman, Jaume Salom, Niki Gaitani
Veröffentlicht in:
2023
Herausgeber:
syn.ikia cultural E and EXCESS projects
Autoren:
Jannika Aalto, Alice Pittini, Ann Kristin Kvellheim, Andreas Tuerk, Angela Greco, Inger Andresen,
Victoria Taranu, Niki Gaitani
Veröffentlicht in:
2024
Herausgeber:
Joint Publication syn.ikia ARV ZEN Centre EXCESS OPEN lab Cultural E and GDFA
Autoren:
Madsen, H., Tsaousoglou, G., Ritschel, T. K. S., Tohidi, S., Binder, H., Frandsen, H. L., & Junker, R. G.
Veröffentlicht in:
2024
Herausgeber:
Danish Utility Regulator
Suche nach OpenAIRE-Daten ...
Bei der Suche nach OpenAIRE-Daten ist ein Fehler aufgetreten
Es liegen keine Ergebnisse vor