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  • 1. hpAMReX (100%)

    3-gen-2024 12.50.01

    hpAMReX High Performance Computing, Adaptive Mesh Refinement, Discontinuous Galerkin Methods, Aerospace Engineering, Unipa hpAMReX is a collection of software libraries for applications that require hp Adaptive Mesh Refinement algorithms, may run on massively parallel architectures and target eXascale computing. hpAMReX is based on the software framework AMReX. VINCENZO GULIZZI

  • 2. 138 bando_prin 2022__dott. gulizzi_en (40%)

    19-mar-2024 9.40.23

    - Department of Engineering -Title: Development of discontinuous Galerkin methods on high ... of the Board, relating to the activation of the grant entitled: “Development of discontinuous Galerkin methods on high performance computing machines for problems with multi-physics coupling

  • 3. ING-IND/04 - Aerospace Structures (33%)

    8-giu-2019 17.32.43

    -architectured materials to support the development of additive manufacturing technologies. Discontinuous Galerkin methods for fluid-structure interactions. Main recent projects: 2015 - PON Ricerca

  • 4. ING-IND /04 - Aerospace Structures (33%)

    8-giu-2019 17.31.13

    -architectured materials to support the development of additive manufacturing technologies. Discontinuous Galerkin methods for fluid-structure interactions. Main recent projects: 2015 - PON Ricerca

  • 5. Software (33%)

    23-set-2022 14.22.34

    hpAMReX High Performance Computing, Adaptive Mesh Refinement, Discontinuous Galerkin Methods, Aerospace Engineering, Unipa hpAMReX is a collection of software libraries for applications that require hp Adaptive Mesh Refinement algorithms, may run on massively parallel architectures and target eXascale computing. hpAMReX is based on the software framework AMReX VINCENZO GULIZZI PySCo PySCo, Python, Scientific Computing, Aerospace Engineering, Unipa PySCo is a collection of software libraries

  • 6. ING-IND/06 – Fluidodinamica (33%)

    28-nov-2023 17.11.55

    -IND/06, Computational methods, Aeroacoustics, Aeroelasticity, Discontinuous Galerkin methods

  • 7. ING-IND/06 – Fluid dynamics (33%)

    28-nov-2023 17.16.21

    methods, Aeroacoustics, Aeroelasticity, Discontinuous Galerkin methods, Boundary Element methods, High

  • 8. 138 bando_prin2022_dott. gulizzi_it (28%)

    19-mar-2024 9.40.23

    : Development of discontinuous Galerkin methods on high performance computing machines for problems