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OperaHPC

OPEn HPC theRmomechanical tools for the development of eAtf fuels

Informazioni Generali

Coordinatore:
CEA - COMMISSARIAT A L'ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES (Francia)
Responsabile ENEA:
CERVONE ANTONIO - NUC-ENER-SIC (BO-VIA DEI MILLE)
Ruolo ENEA:
PARTNER

Descrizione e Attività

Descrizione Generale

Increasing further the safety of light water nuclear reactors in the new operating conditions induced by their integration in a more varied energy mix brings many new challenges for fuel development. This calls for effective and validated tools enabling one to capture the complexity of the behaviour of fuel elements under various operation conditions from nominal to design basis accident ones.. The objective of the OperaHPC proposal is to develop open tools using High Performance Computing (HPC) enabling a full 3D high-fidelity thermo-mechanical simulation of the fuel element including the material microstructure. This will contribute to the design of so-called fuel element digital twins. This development includes an ambitious basic research program devoted to the investigation of non-linear mechanical behaviour of irradiated fuel using multiscale experiments and simulations from the atomic scale up to the material law. This will yield the detailed description of the in-pile behaviour of the fuel element and the materials data necessary for the simulation. The tools developed will be assessed against state-of-the-art 1D/3D fuel performance codes for verification, definition of boundary conditions and coupling with neutronic, thermochemical and thermohydraulic codes. Validation and uncertainty analyses will also be performed through the comparison of the results of the 3D simulations with the experimental data available from irradiation programs. The knowledge from these advanced simulations will be transferred to industrial fuel performance codes thanks to the application of new methods based on reduced order and meta models, including Artificial Intelligence. The HPC tools will finally be applied to the detailed evaluation of innovative fuel element concepts, including (enhanced) accident tolerant fuels, under transient conditions in several light water reactor designs.

Attività svolta da ENEA

ENEA è coinvolta dei seguenti Work Package:
• WP4 - Development of 3D HPC simulation tools for the thermomechanical behavior of fuel elements under irradiation
• WP5 - Verification and validation, uncertainties and sensitivity analyses
• WP6 - Development of improved models for industrial fuel performance codes
• WP7 – Simulation of fuel element behavior in operating and accidental transient conditions
• WP8 – Education and training, exploitation, dissemination and communication

Programmi Europei

Programma:
Euratom2027 → Euratom fissione (RIA - Research and Innovation Action)

Dati Finanziari (in euro)

Costo Eleggibile

Progetto:
4.515.552,00
ENEA:
262.000,00

Contributo

Al progetto:
2.846.944,00
A ENEA:
170.300,00

Durata del Progetto

Anno di stipula e Durata:
2022 - 54 mesi
Periodo:
01-11-2022 → 30-04-2027

Numero di Partner (18)

Ruolo Tipologia Nome Nazione
Istituti di ricerca VTT - TEKNOLOGIAN TUTKIMUSKESKUS VTT OY Finlandia
Università UNIV. PISA (UNIPI) Italia
Università KTH - ROYAL INSTITUTE OF TECHNOLOGY Svezia
Istituti di ricerca CIEMAT - CENTRO DE INVESTIGACIONES ENERGETICAS, MEDIOAMBIENTALES Y TECNOLOGICAS Spagna
Istituti di ricerca UJV REZ a.s. - USTAV JADERNEHO VYZKUMU REZ A.S. Repubblica Ceca
Istituti di ricerca JRC COMMISSION OF THE EUROPEAN COMMUNITIES Organ. Internazionali
Istituti di ricerca LEI - LITHUANIAN ENERGY INSTITUTE Lituania
Società di consulenza SINTEC SRL Italia
Università POLITECNICO DI MILANO (POLIMI) Italia
Società di consulenza NINE - NUCLEAR AND INDUSTRIAL ENGINEERING SRL Italia
Istituti di ricerca FRAMATOME ANP SAS Francia
Industrie EDF - ELECTRICITE DE FRANCE SA Francia
ASSOC Organismi pubblici NO ricerca NNL - NATIONAL NUCLEAR LABORATORY LIMITED Regno Unito
ASSOC Università UNIV. BANGOR Regno Unito
ASSOC Università EPFL - ECOLE POLYTECHNIQUE FEDERALE DE LAUSANNE Svizzera
ASSOC Istituti di ricerca PSI - PAUL SCHERRER INSTITUTE Svizzera
COORD Istituti di ricerca CEA - COMMISSARIAT A L'ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES Francia
PARTNER Istituti di ricerca ENEA Italia

Keyword associate al progetto dal database di CORDIS (2)

Keyword Argomento Macro
NUCLEAR FISSION Energy NUCLEAR FISSION
SAFETY Protecting Man and his Environment SAFETY

Altre Keyword non presenti nel database di CORDIS (1)

Keyword
Hpc