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Training

Introduction to Computational Fluid Dynamics

7 sep. 2026 - 11 sep. 2026

This course introduces into established numerical methods for Computational Fluid Dynamics in the context of high performance computing. An emphasis is placed on explicit methods for compressible flows, but also numerical methods and considerations for incompressible Navier-Stokes equations are discussed.

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Praktische info:

7 sep. 2026 - 11 sep. 2026
32,5 uur
HLRS, University of Stuttgart - Nobelstraße 19, 70569 Stuttgart, Germany
Engels
Doelgroep: Researchers and engineers with prior CFD experience who want to advance their computational fluid dynamics skills

Inschrijven?

  • Voorwaarden: Basic knowledge of partial differential equations and physics, experience with shell and Unix, Familiarity with discretization schemes of ODEs and Python
  • Prijs: The price ranges from €0 to €1150
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georganiseerd door:

Hands-on sessions will manifest the contents of the lectures and train the use of cluster systems for parallel simulations. In most of these sessions the tools from the APES-Suite will be used. They cover grid generation with Seeder,
visualization with ParaView and the usage of parallel CFD solvers Ateles and Musubi on the local HPC system.

Topics of the course:

  • Compressible flows
  • Incompressible flows
  • Finite element methods
  • Finite volume methods
  • Discontinuous Galerkin method
  • Lattice-Boltzmann method
  • Lattice Generation
  • Turbulence modelling
  • Parallelization
  • Use of high-performance computers

Learning outcomes

After this course, participants will:

  • have gained a basic overview of CFD methods,
  • know and be able to implement different types of flow applications and suitable numerical methods,
  • be able to use HPC systems to perform CFD simulations,
  • be able to estimate and evaluate the performace via important factors of parallel execution.

Handout and course material

Each participant will get the pdf of all slides.

Further course material will be updated during the course at this link.

Slides, exercises and recordings of the spring 2024 ONLINE course are always available at our self-study materials.

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