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Financement de l’UE (6 015 690 €) : Conception intégrée des composants du système énergétique pour planifier l’adoption des sources d’énergie renouvelables : une boîte à outils open source Hor14/09/2023 Programme de recherche et d'innovation de l'UE « Horizon »

Texte

Conception intégrée des composants du système énergétique pour planifier l’adoption des sources d’énergie renouvelables : une boîte à outils open source

Gathering 22 partners from the EU, Norway, Switzerland and Ukraine, iDesignRES aims to provide public authorities and network operators with open-source toolboxes allowing to plan and to optimise the uptake of low and zero emission energy sources at regional, national and European scales. With these open-source tools, iDesignRES provides latest multi-physics component energy models, comprehensive energy system modelling (in particular assembling of component models), long-term multi-carrier grid planning and optimisation of investment and operation. iDesignRES embraces a new degree of openness, transparency and accessibility to use energy system models and their components. It delivers a harmonized data structure compatible with all modelling approaches (i.e., standardized in a common modelling language). iDesignRES relies on an already built database compliant with these standardized data formats. Based on this modelling and data infrastructure, iDesignRES will develop a unique and innovative cloud-hub platform to run any energy system model online. This will facilitate research collaboration (easier software testing and version control), and increase computational performance (open licenses, cloud services and supercomputing) for average users. To demonstrate and validate the tools, iDesignRES has five real-life cases: two macro region cases (North Sea area and South East Europe), two industrial clusters (Basque and Lombardy regions), and one expansion case in Ukraine. The models and scenario results are combined in the final iDesignRES visualisation tools aimed to inform policy makers and grid operators. The outcome is that the public and relevant authorities can design a renewable energy system entirely online with easily accessible suite of tools, capable to: model at high spatial-temporal resolutions (sub-hourly NUTS level2 regions), to represent detail energy system physics, and to assemble models with a high degree of modularity.


Paul Scherrer Institut ?
Aalborg Universitet 330 846 €
Asociacion Cluster de Industrias Demedio Ambiente de Euskadi 103 164 €
Dimosia Epicheirisi Ilektrismou ΑΕ 123 625 €
Dixi Group LLC 74 213 €
E3-Modelling ΑΕ 562 863 €
Electricite de France 405 313 €
Elektroenergien Sistemen Operator Ead 70 000 €
Euroquality SAS 244 063 €
Fraunhofer Gesellschaft ZUR Forderung DER Angewandten Forschung e. V. 264 375 €
Fundacion Tecnalia Research & Innovation 304 990 €
Independent Power Transmission Operator SA 128 750 €
Institute For Economic Research Andpolicy Consulting Civic Organisation 71 625 €
Internationales Institut Fuer Angewandte Systemanalyse 339 688 €
Lombardy Energy Cleantech Cluster 130 720 €
Ministerie Van Economische Zaken EN Klimaat 100 000 €
Nord Pool AS 117 363 €
Norges Teknisk-Naturvitenskapelige Universitet Ntnu 855 183 €
Sintef Energi AS 725 600 €
Technische Universitaet Wien 261 313 €
Technische Universitat Berlin 453 563 €
Universidad de La Iglesia de Deusto Entidad Religiosa 348 438 €

https://cordis.europa.eu/project/id/101095849

Cette annonce se réfère à une date antérieure et ne reflète pas nécessairement l’état actuel. L’état actuel est présenté à la page suivante : Paul Scherrer Institut, Villigen PSI, Suisse.