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CORDIS - Résultats de la recherche de l’UE
CORDIS

Small Modular ReacTor for a European sAfe aNd Decarbonized Energy Mix

CORDIS fournit des liens vers les livrables publics et les publications des projets HORIZON.

Les liens vers les livrables et les publications des projets du 7e PC, ainsi que les liens vers certains types de résultats spécifiques tels que les jeux de données et les logiciels, sont récupérés dynamiquement sur OpenAIRE .

Livrables

Project management toolbox (s’ouvre dans une nouvelle fenêtre)

Deliver to the consortium a Project management toolbox and put in place a validation process for deliverables and monitoring online document workspace GDPR compliancerisk management and monitoring organizing project meetings administrative and financial management

Data Management Plan (s’ouvre dans une nouvelle fenêtre)

The Data Management Plan will outline the conditions for data preservation adherence to FAIR principles publication and clearly make a distinction between potentially sensitive or confidential information and open access data

TANDEM E&T courses structure and syllabus (s’ouvre dans une nouvelle fenêtre)

plan and implement the delivery of the E&T actions in accordance with the structure. Aspects such as: lecturers, delivery dates, venues -where applicable- or Conferences will be planned. Feedback Forms shall be designed in advance to obtain insights from the students. E.g., GRS can give an online course on “Simulation of cogeneration with system codes” based on the results of the simulations performed in Task 2.4 and 4.2.

Communication & Dissemination Plan (s’ouvre dans une nouvelle fenêtre)

Definition of Communication Dissemination Plan

Stakeholder Engagement Plan (s’ouvre dans une nouvelle fenêtre)

Stakeholder EngagementPlan setting out a formal strategy for the TANDEM’s relations with project stakeholders:o Mapping of provisional stakeholders and key messages of relevance to them.Identification of the most relevant tools through which contacts and outreach can beestablished;o Analysis of stakeholders’ needs, and challenges faced by groups of target audience and their strategies defined in high-level documents and as collected via a survey addressing stakeholders in countries participating in the project. The analysis of the survey results will focus on the identification of topics of interest for stakeholders, questions raised which could be clarified in the project final report(s), and areas which require further focused research beyond the project framework;o This will also include a roadmap of activities and actions to facilitate the stakeholderengagements and exploit the project results,

Communication toolkit (website, visuals) (s’ouvre dans une nouvelle fenêtre)

Activities will include Definition of Communication Dissemination Plan by CEA with the support of ENEN Project communication materials logo visualsinfographics templates etc CEA Project specific website CEA Active contribution to selected newsletters and social media by topical articles related to hybrid systems SMRs etc Communication channels of SNETP and Foratom will be used in priority ENEN FORATOM VTT Organisation of dedicatedinformative workshops ENEN to deliver TANDEM outcomes to the general public and key stakeholders Synergies with other major events will be thought Coordination of publication preparation ENEN VTT to centralize and plan the scientific publications by the partners and support the process

Status report on safety analysis in Europe from the operational flexibility and cogeneration viewpoint (s’ouvre dans une nouvelle fenêtre)

Status report on safety analysis in Europe from the operational flexibility and cogeneration viewpoint The aim is to dentify and assess the potentially impacted safety margins of the SMR when integrated in a hybrid energy system with overall coordination by IRSN For this purpose all the participants in particular operators and TSOs will analyse the constraints which would result from SMR adaptation to energy demand and response to transients and abnormal operation of the connected systems eg thermal load and fatigue core power redistribution reactivity control pelletcladding interaction etc The approach will be based on a survey of the best practices developed by the partners in the field of safety assessment of energy production flexibility and cogeneration technical constraints specific safety concerns etc The study will cover feedback from Germany GRS France IRSN and eastern Europe ENERGORISK Then a methodology for assessment of relevant physical parameters and safety margins of the SMR will be established

Description and techno-economic characterization of the hybrid system components (s’ouvre dans une nouvelle fenêtre)

Identifying the hybrid energy system components for the two selected configurations and their characterization. A standard template for data collection will be elaborated for the characterization of each component. Under the coordination of ANSALDO who will build a matrix of hybrid energy system components to be considered for the two typical configurations, the definition and characterisation work will be shared amongst the partners involved.

Intermediate SAC recommendations report (s’ouvre dans une nouvelle fenêtre)

Intermediate Scientific Advisory Committee recommendations report

E&T Gap Analysis in the domain of safety of SMRs and hybrid energy systems (s’ouvre dans une nouvelle fenêtre)

E&T Gap Analysis in the domain of safety of SMRs and hybrid energy systems.The knowledge, skills and competences required by the domainsaddressed in the TANDEM project will be firstly classified and categorized to identify the training needs required to address the core topics. Then, an analysis on what courses are available that may address them will be conducted. This will allow to find areas where new or further E&T would be required on the basis of either low supply coverage (i.e.: few options currently available) and/or partial coverage (i.e.: only a subset of the knowledge, skills and competences are addressed), hereby constituting the gap analysis between the E&T needs and how they can be covered.

Description of techno-economic assessment of energy policies and relations among hybrid energy systems (s’ouvre dans une nouvelle fenêtre)

Identification task for the two hybrid system configurations; the approach will rely on a reasonable deployment timeline as European boundary conditions will certainly evolve. Each partner will provide support in the definition of energy scenarios and in the definition of Figures of Merits.

Project Quality Plan (s’ouvre dans une nouvelle fenêtre)
Definition of case studies for techno-economic analyses including some environmental aspects (s’ouvre dans une nouvelle fenêtre)

All participants contribute to the characterization of the “techno-economics” casestudies associated with the hybrid systems considered in TANDEM in a specific location and context in Europe (Nordic countries, Central and Southern Europe).

Analysis of the key features of the future EU energy market and associated regional/national landscapes (s’ouvre dans une nouvelle fenêtre)

In this task FORATOM will coordinate the analysis of the future European energy scenarios which will characterize the EU energy landscape in the next decades Partners will bring their expertise in their respective areas of experience in order to build a global picture covering key regional trends and needs General knowledge of EU energy and climate context FORATOM with support of the other participants from their own analyses of energy scenarios and potentials for SMR deployment Some regional considerations will be given for Eastern Europe and Ukraine as an example of the EU neighbourhood region ENRGORISK for Central Europe from the Czech Republic energy policyenergy scenarios analysis for possible heat market for SMR in the Czech Republic UJV and for Nordic region heat and electricity market by VTT and FORTUM

Description of selected study cases for safety, techno-economic analysis and optimisation (s’ouvre dans une nouvelle fenêtre)

Identification of the specifications for the energy study cases based on the district heating configuration and energy hub configuration previously selected. The identification will rely on variations of the baseline concept of a case study combining nuclear and other energy sources in support of various downstream applications to match any geographical/economic framework and related timeframes.

Identification of potentially impacted safety margins and methodology for safety analysis of a SMR integrated in a hybrid system (s’ouvre dans une nouvelle fenêtre)

Identification of potentially impacted safety margins and methodology for safety analysis of a SMR integrated in a hybrid system. The study will cover feedback from Germany (GRS), France (IRSN) and eastern Europe (ENERGORISK). Then a methodology for assessment of relevant physical parameters and safety margins of the SMR will be established.

Presentation of dynamic techno-economic analysis for each case study (s’ouvre dans une nouvelle fenêtre)

A dynamic global techno-economic and environmental analysis of thehybrid systems in 2035.The data required for the techno-economicsanalysis of each case study concern: Energy production/ consumption data (hourly energy load profiles, hourly energy production bythe different sources, etc), Technological data (energy efficiencies of controllable production units, storage charge/dischargecapacities, maximum power ramp speed accommodated by SMRs, etc) Economic data (Capex, Opex, replacement, etc) Environmental data (CO2 direct or grey emissions, CO2 sensitivity taxes, etc).

Publications

Nuclear Engineering and Technology (s’ouvre dans une nouvelle fenêtre)

Auteurs: C. Vaglio-Gaudard, M.T. Dominguez Bautista, M. Frignani, M. Fütterer, A. Goicea, E. Hanus, T. Hollands, C. Lombardo, S. Lorenzi, J. Miss, G. Pavel, A. Pucciarelli, M. Ricotti, A. Ruby, C. Schneidesch, S. Sholomitsky, G. Simonini, V. Tulkki, K. Värri, L. Z
Publié dans: Nuclear Engineering and Technology, Numéro 56, 2024, ISSN 1738-5733
Éditeur: Korean Nuclear Society
DOI: 10.1016/j.net.2023.12.015

Numerical Assessment of Nuclear Cogeneration Transients with SMRs Using CATHARE 3–MODELICA Coupling (s’ouvre dans une nouvelle fenêtre)

Auteurs: Alessandro De Angelis, Nicolas Alpy, Paolo Olita, Calogera Lombardo, Walter Ambrosini
Publié dans: Energies, Numéro 18, 2025, ISSN 1996-1073
Éditeur: MDPI AG
DOI: 10.3390/EN18102539

The TANDEM Euratom project: context, objectives and workplan

Auteurs: C. Vaglio-Gaudard, M.T. Dominguez Bautista, M. Frignani, M. Fütterer, A. Goicea, E. Hanus, T. Hollands, C. Lombardo, S. Lorenzi, J. Miss, G. Pavel, A. Pucciarelli, M. Ricotti, A. Ruby, C. Schneidesch, S. Sholomitsky, G. Simonini, V. Tulkki, K. Värri, L. Z
Publié dans: Proceedings of the International Conference ICAPP 2023, Gyeongju, Sàuth Korea, April 23-27, South Korea, 2023
Éditeur: KNS

Preliminary Assessment of CATHARE-MODELICA Codes Coupling for Safety Analyses in Nuclear Cogeneration (s’ouvre dans une nouvelle fenêtre)

Auteurs: Alessandro De Angelis, Paolo Olita, Walter Ambrosini
Publié dans: Volume 6: Thermal-Hydraulics and Safety Analysis, 2024
Éditeur: American Society of Mechanical Engineers
DOI: 10.1115/ICONE31-136017

Technology Review and Safety Assessment of Nuclear-Renewable Hybrid Energy Systems With Light-Water Small Modular Reactors (s’ouvre dans une nouvelle fenêtre)

Auteurs: Alessandro De Angelis, Michele Frignani, Andrea Pucciarelli, Oleksandr Sevbo, Miriam Minchole Lapuente, Christophe Schneidesch, Claire Vaglio-Gaudard, Joachim Miss, Thorsten Hollands, Walter Ambrosini
Publié dans: Volume 4: SMRs, Advanced Reactors, and Fusion, 2024
Éditeur: American Society of Mechanical Engineers
DOI: 10.1115/ICONE31-136037

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