Elisa Santoro
Coupling OpenFOAM and OpenRadioss for Partitioned Fluid-Structure Interaction Frameworks: A Blast Wave-Wall Impact Simulation using the preCICE Library.
Rel. Andrea Ferrero, Dario Giuseppe Pastrone, Markus Klein, Josef Hasslberger. Politecnico di Torino, Corso di laurea magistrale in Ingegneria Aerospaziale, 2026
|
Preview |
PDF (Tesi_di_laurea)
- Tesi
Licenza: Creative Commons Attribution Non-commercial No Derivatives. Download (9MB) | Preview |
Abstract
The research presented in this thesis was conducted as a collaboration between the University of the Bundeswehr Munich (through its Institute of Applied Mathematics and Scientific Computing and Institute of Mechanics and Statics) and the University of Stuttgart (through its Institute for Parallel and Distributed Systems). The aim of this work is to configure and validate partitioned fluid-structure interaction (FSI) frameworks using OpenFOAM (CFD) and OpenRadioss (FEM) through the preCICE coupling library, for which an OpenRadioss adapter had undergone code-level verification but had never been validated against physically relevant test cases prior to this work. Despite extensive documentation of numerous partitioned FSI benchmarks configured through preCICE, no configuration of OpenRadioss as a structural participant had been previously documented in the literature.
In a peer-to-peer library approach, each participating solver is coupled through its own dedicated software interface known as the adapter, responsible for extracting coupling data from internal fields for transmission and imposing the exchanged quantities as boundary conditions and forcing terms upon reception
Relatori
Anno Accademico
Tipo di pubblicazione
Numero di pagine
Corso di laurea
Classe di laurea
Ente in cotutela
Aziende collaboratrici
URI
![]() |
Modifica (riservato agli operatori) |
