code_saturne and Salomé: CFD simulation
March 9-10, 2027

Course summary
See the course pageDo you recognize yourself?
- You want to switch to open-source code for better technological control and a cost advantage, but you don't know where to start.
- You waste time re-running calculations that fail: a poorly defined boundary condition, a mesh that is too coarse, a forgotten density–temperature coupling — and you only find out after hours of simulation.
- You lack a method to read and interpret code_saturne log files: has the calculation actually converged? Are the residuals acceptable? Impossible to decide without solid benchmarks.
- You don't know how to validate your results. Your simulations run, but without comparison against experimental data or reference cases, you are moving forward without a safety net.
Why our training in particular?
Theory revisited, immediate practice
Two days of hands-on practice backed by a review of theoretical fundamentals. Each practical exercise is more demanding than the previous one: you progress in concrete steps, from discovery to industrial-level work — not through slides.
From geometry to post-processing: the complete workflow
You learn to operate and master the tools (Salomé, code_saturne and Paraview) together, as in your day-to-day work. Not just the solver: the entire simulation chain.
Practitioner trainers, in front of you
Our CFD engineers and PhDs use code_saturne daily on industrial projects at Simvia. In person, they share with you live the best practices, the pitfalls to avoid and the troubleshooting tips you won't find in any documentation.
Close-knit supervision
1 trainer for a maximum of 8 trainees during practical work. When you get stuck, an expert is right beside you.
A network, not just a training course
The inter-company format brings together engineers from different sectors and backgrounds around the same CFD challenges. You exchange feedback, compare approaches and leave with a network of peers who share your technical day-to-day.
Audience
- Corporate: engineers and technicians with a basic understanding of the physical and digital aspects covered by the course.
- Academic: researchers, PhD students and students at higher education and research institutions.
Prerequisites
Basics of fluid mechanics.
Detailed programme
Day 1 – Morning: Introduction to CFD and Environment Setup
- CFD Fundamentals
- Navier-Stokes equations
- Finite volume method
- Turbulence modeling
- Tool Overview
- Introduction to code_saturne
- Introduction to SALOME
Workshop 1 – Driven Cavity (Part 1): First Steps
- Study creation
- Mesh generation with code_saturne
- Data setup via the graphical interface
Day 1 – Afternoon: First Simulations and Result Analysis
Workshop 1 – Driven Cavity (Part 2): From Calculation to Analysis
- Running simulations and post-processing with ParaView
- Mesh quality analysis
Workshop 2 – Channel with Branching: Going Further
- Case creation and calculation
- Result analysis with ParaView
- Reading and understanding log files
- Unsteady boundary conditions
- Density-temperature coupling
Day 2 – Morning: Advanced Workflows with Code_Saturne
Workshop 3 – T-Junction: Complete Workflow
- Meshing with SALOME
- Data setup and calculation
- Result analysis with ParaView
- Advanced data customization
- User directory development
- Boundary layer insertion
- Restarting from a different mesh
Day 2 – Afternoon: Advanced Case Study and Comparison with Experiments
Workshop 4 – Sudden Expansion Channel: Industrial Case
- Meshing with SALOME
- Data setup and calculation
- Result analysis with ParaView
- Comparison with experimental results
Closing Session
- Q&A, discussions, and wrap-up
Practical details
- Dates
- March 9-10, 2027
- Duration
- 2 day(s)
- Location
- EDF Lab Paris-Saclay
- Language
- French
- Hours: 9:00 to 12:30 and 14:00 to 17:00.
- On site: EDF Lab Paris-Saclay (Palaiseau), lunches and coffee breaks included. Remote: two days one week apart, to practise in between.
- Language: spoken French with English material (remote sessions in English).
- Each trainer supervises at most 8 trainees during hands-on work.
- Help installing the latest version of the code and certificate of completion.
Performance indicators
- Trained participants
- -
- Attendance rate
- -
- Satisfaction rate
- -
- Success rate
- -
Accessibility
We are committed to making our training accessible to people with disabilities. Every situation is unique, so please contact us before registering so that we can study together the educational, technical or organisational adaptations that can be put in place.
More info
Florian Hermet
Holding a PhD and teaching in fluid mechanics, I practice CFD with one simple conviction: a simulation is only useful if you truly understand what you are doing. Every mesh, every model, every convergence criterion directly influences the results. Between advanced research and industrial projects, I have learned to never take a simulation for granted and to always challenge it against the physics and common sense. In my training courses on code_saturne, I share a pragmatic approach: structuring your methodology, avoiding classic pitfalls, and producing reliable and defensible simulations. My goal is simple: to make you autonomous and confident in your simulations.
Learn morePricing
Included: lunches, coffee breaks, help installing the latest version of the code...