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Stefano Lorenzi
Stefano Lorenzi
Postdoctoral fellow, Politecnico di Milano
Verified email at polimi.it
Title
Cited by
Cited by
Year
POD-Galerkin method for finite volume approximation of Navier–Stokes and RANS equations
S Lorenzi, A Cammi, L Luzzi, G Rozza
Computer Methods in Applied Mechanics and Engineering 311, 151-179, 2016
1552016
POD-Galerkin reduced order methods for CFD using Finite Volume Discretisation: vortex shedding around a circular cylinder
G Stabile, S Hijazi, A Mola, S Lorenzi, G Rozza
Communications in Applied and Industrial Mathematics 8 (1), 210-236, 2017
1372017
Development of a multiphysics model for the study of fuel compressibility effects in the Molten Salt Fast Reactor
E Cervi, S Lorenzi, A Cammi, L Luzzi
Chemical Engineering Science 193, 379-393, 2019
582019
Object-oriented modelling and simulation for the ALFRED dynamics
R Ponciroli, A Bigoni, A Cammi, S Lorenzi, L Luzzi
Progress in Nuclear Energy 71, 15-29, 2014
522014
A Monte Carlo-based exploration framework for identifying components vulnerable to cyber threats in nuclear power plants
W Wang, A Cammi, F Di Maio, S Lorenzi, E Zio
Reliability Engineering & System Safety 175, 24-37, 2018
492018
Application of the TRANSURANUS code for the fuel pin design process of the ALFRED reactor
L Luzzi, A Cammi, V Di Marcello, S Lorenzi, D Pizzocri, P Van Uffelen
Nuclear Engineering and Design 277, 173-187, 2014
442014
Results from a multi-physics numerical benchmark for codes dedicated to molten salt fast reactors
M Tiberga, RGG de Oliveira, E Cervi, JA Blanco, S Lorenzi, M Aufiero, ...
Annals of Nuclear Energy 142, 107428, 2020
412020
Development of an SP3 neutron transport solver for the analysis of the Molten Salt Fast Reactor
E Cervi, S Lorenzi, A Cammi, L Luzzi
Nuclear Engineering and Design 346, 209-219, 2019
372019
Multiphysics analysis of the MSFR helium bubbling system: A comparison between neutron diffusion, SP3 neutron transport and Monte Carlo approaches
E Cervi, S Lorenzi, L Luzzi, A Cammi
Annals of Nuclear Energy 132, 227-235, 2019
342019
Preliminary analysis and design of the heat exchangers for the Molten Salt Fast Reactor
A Di Ronco, A Cammi, S Lorenzi
Nuclear Engineering and Technology 52 (1), 51-58, 2020
322020
Development of the ALFRED reactor full power mode control system
R Ponciroli, A Cammi, A Della Bona, S Lorenzi, L Luzzi
Progress in Nuclear Energy 85, 428-440, 2015
322015
On the development of multi-physics tools for nuclear reactor analysis based on OpenFOAMŪ: state of the art, lessons learned and perspectives
C Fiorina, I Clifford, S Kelm, S Lorenzi
Nuclear Engineering and Design 387, 111604, 2022
292022
A reduced order model for investigating the dynamics of the Gen-IV LFR coolant pool
S Lorenzi, A Cammi, L Luzzi, G Rozza
Applied Mathematical Modelling 46, 263-284, 2017
292017
Reduced order modeling approach for parametrized thermal-hydraulics problems: inclusion of the energy equation in the POD-FV-ROM method
L Vergari, A Cammi, S Lorenzi
Progress in Nuclear Energy 118, 103071, 2020
262020
Development of a reduced order model for fuel burnup analysis
C Castagna, M Aufiero, S Lorenzi, G Lomonaco, A Cammi
Energies 13 (4), 890, 2020
242020
Dynamic mode decomposition for the stability analysis of the Molten Salt Fast Reactor core
A Di Ronco, C Introini, E Cervi, S Lorenzi, YS Jeong, SB Seo, IC Bang, ...
Nuclear Engineering and Design 362, 110529, 2020
232020
An adjoint proper orthogonal decomposition method for a neutronics reduced order model
S Lorenzi
Annals of Nuclear Energy 114, 245-258, 2018
232018
Adaptive simulation for failure identification in the advanced lead fast reactor European demonstrator
P Turati, A Cammi, S Lorenzi, N Pedroni, E Zio
Progress in Nuclear Energy 103, 176-190, 2018
232018
Modeling and analysis of nuclear fuel pin behavior for innovative lead cooled FBR
L Luzzi, S Lorenzi, D Pizzocri, D Rozzia, A Aly, A Del Nevo
Report RdS/PAR2013/022, 2014
232014
A preliminary approach to the ALFRED reactor control strategy
R Ponciroli, A Cammi, S Lorenzi, L Luzzi
Progress in Nuclear Energy 73, 113-128, 2014
232014
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