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Training catalog

Our courses by level

Courses are organised by level: initial courses to get started, intermediate courses to consolidate a working practice, advanced courses to go further on specific topics. Each course lists its upcoming sessions, with the location, the language and the satisfaction rate of past sessions.

Our initial courses

4 courses
  • code_aster and Salomé applied to civil engineering

    Discover code_aster’s civil engineering features, from structural analysis to seismic analysis, through a step-by-step approach combining theory and practical exercises based on real-world case studies.

  • code_aster and Salomé applied to mechanics

    Discover the fundamentals of mechanical simulation with Salomé and code_aster through a step-by-step training course, illustrated with real-world industrial case studies.

    Upcoming sessions

  • code_saturne and Salomé: CFD simulation

    Discover the fundamentals of computational fluid dynamics (CFD) with code_saturne, from mesh generation to the analysis of results, through a step-by-step approach based on real-world industrial cases.

  • openTELEMAC: free-surface hydraulic simulation

    Discover the fundamentals of free-surface hydraulics with openTELEMAC, from building the mesh to simulating a realistic flood, through a step-by-step approach based on real geographic data.

Our advanced courses

4 courses
  • code_aster and MFront: modelling complex mechanical behaviour

    Master MFront in conjunction with code_aster to develop, validate and integrate your own behaviour models, in order to simulate non-linear materials and behaviour in industrial studies.

    Upcoming sessions

  • code_aster and Salomé applied to advanced civil engineering

    Go further with code_aster in civil engineering: soil-structure interaction and dynamic impedances, spectral modal analysis, non-linear modelling of reinforced concrete and non-linear pseudo-static analysis, on real building cases.

    Upcoming sessions

  • code_aster: non-linearity, fatigue and multiphysics couplings

    Develop your expertise in code_aster to solve advanced industrial problems, by carrying out non-linear calculations, fatigue analyses and multiphysics couplings.

  • code_saturne: thermo-hydraulics and heat transfer

    Develop your expertise in code_saturne to model flows involving heat transfer and address industrial thermo-hydraulic challenges.

Calendar 2026
2027
Jan
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Sep
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Dec
code_aster and Salomé applied to civil engineeringcode_saturne and Salomé: CFD simulationopenTELEMAC: free-surface hydraulic simulationcode_aster and Salomé applied to mechanicsopenTELEMAC: free-surface hydraulic simulationcode_aster and MFront: modelling complex mechanical behaviourcode_aster and Salomé applied to mechanicscode_aster and Salomé applied to civil engineeringcode_aster and Salomé applied to mechanicscode_saturne and Salomé: CFD simulationopenTELEMAC: free-surface hydraulic simulationcode_saturne and Salomé: CFD simulationcode_aster: non-linearity, fatigue and multiphysics couplingscode_aster and Salomé applied to civil engineeringcode_saturne: thermo-hydraulics and heat transferopenTELEMAC: free-surface hydraulic simulation

Frequently asked questions

Who can attend inter-company training sessions?

Our sessions are primarily aimed at:

  • Calculation, R&D, or design engineers working in the field of numerical simulation.
  • Individuals with a background in finite elements and CFD (meshing, boundary conditions, post-processing).
  • Users wishing to structure their use of openTELEMAC and its ecosystem (QGIS & Q4TS, Salomé, ParaView, etc.).
Who can participate in these training sessions for academics?

Our sessions are primarily intended for:

  • Faculty members and researchers
  • Doctoral students and postdoctoral researchers
How many employees from the same company can register?

Our inter-company sessions are ideal for training 1 to 5 employees. For 6 or more people, we recommend switching to in-house training. This format allows us to customize the examples according to your specific business issues.

What are the hardware and software prerequisites?

Hardware requirements

A personal computer with at least 8 GB of RAM (16 GB recommended) and a recent processor is sufficient to complete all the hands-on exercises. No dedicated graphics card is required.

Software requirements

The training course uses the openTELEMAC suite, QGIS, and Salomé, all of which are available for free on the open-simulation-center.org website as Docker images, Singularity images, or MSI files (Salomé and openTELEMAC only). Detailed installation instructions, tailored to each operating system (Linux, Windows), will be sent to you before the training so that you can arrive with your environment up and running.

Note for institutional users: On some lab or university computers, administrative permissions may restrict software installation. We recommend that you check the installation process with your IT department before the training.

Backup solution

If you encounter an installation problem despite following the guide, Simvia can provide preconfigured computers for the duration of the training. Please let us know no later than the day before the session so that we can make the necessary arrangements.

What are the hardware and software requirements?

Hardware requirements

A personal computer with at least 8 GB of RAM (16 GB recommended) and a recent processor is sufficient to complete all the hands-on exercises. No dedicated graphics card is required.

Software requirements

The training course uses the Salomé-Meca suite (which includes Salomé, code_aster, and ParaVis), available for free on the open-simulation-center.org website, as well as VSCode and the Simvia VSCode_aster extension. Detailed installation instructions, tailored to each operating system (Linux, Windows), will be sent to you before the training so that you can arrive with your environment up and running.

Note for institutional users: On some lab or university computers, administrative permissions may restrict software installation. We recommend that you check the installation process with your IT department before the training.

Fallback solution

If you encounter an installation problem despite following the instructions, Simvia can provide preconfigured computers for the duration of the training. Please let us know no later than the day before the session so that we can make the necessary arrangements.

Who are the trainers?

Our training courses are led by engineers and PhDs in numerical simulation, who are experts in the daily use of openTELEMAC at Simvia. As advanced users and contributors, they don't just stick to theory: they share best practices, troubleshooting tips, and feedback from the industrial field with you.

Will I receive a certificate upon completion of the training?

Yes. Each participant receives an official training certificate. This document certifies your active participation in the training and details all the modules and technical skills acquired (fundamentals, meshing, data interpolation, resolution, post-processing).

Does a specialisation module exist after this training?

Absolutely. Our offer is designed to support your long-term skills development.

Stay tuned to find out the dates of the next advanced sessions!

Can you adapt the content to my specific cases?

To ensure a solid foundation for everyone, inter-company sessions follow an optimized standard program. If you want to work directly on your geometries, your own business cases, or your internal workflows, we recommend intra-company training. We will then work with you to build a program that specifically addresses the challenges of your industry.

Qualiopi, certified process, French Republic

Qualiopi-certified training provider

La certification qualité a été délivrée au titre de la catégorie d’actions suivante : actions de formation.

Certificate no. CERT_S0626_0919 issued on 19 August 2026, valid until 18 August 2029.

View the certificate (PDF)