Course Details

Essential Skills in Computational Fluid Dynamics (CFD): From Theory to Practical Applications

Overview

  • Course Date:

    8 Sep 2026 to 11 Sep 2026

    10 Nov 2026 to 13 Nov 2026

  • Registration Period:

    8 Jul 2026 to 18 Aug 2026

    10 Sep 2026 to 20 Oct 2026

  • Duration/Frequency:

    34 hours | 4 days

  • Mode of Training:

    Classroom

What You Will Learn

This course also allows participants to appreciate advanced tools used to conduct Virtual Fluid Dynamics Testing for various industry applications.

Additionally, learning materials include laboratory practical testing to further teach the best practices and insights, while conducting Computational Fluid Dynamics (CFD) analysis. This includes the real-world work processes of how CAD models can be developed and used for simulation packages.

By end of this course, participants will be able to:

  1. Explain the Basic Theory for Computational Fluid Dynamics (CFD) Analysis.
  2. Perform CFD analysis, including geometry preparation, meshing, setting up the solver, running the simulation and post-processing.
  3. Define General Procedure involved in CFD Analysis.
  4. Explain the validation approach to ensure result accuracy from CFD Analysis.

Topics to be covered
  • Computation Fluid Dynamics Basics
  • Postprocessing Fluid Simulations and Working with Parameters
  • Solving and other Physics
  • Experiment and Simulation

More Information

​​This course introduces participants to Computational Fluid Dynamics (CFD) analysis using ANSYS Fluent software and its application. Physical testing will be conducted to validate case study CFD simulation results obtained from hands-on workshop. ​ 

This course also allows participants to appreciate advanced tools used to conduct Virtual Fluid Dynamics Testing for various industry applications.

Additionally, learning materials include laboratory practical testing to further teach the best practices and insights, while conducting Computational Fluid Dynamics (CFD) analysis. This includes the real-world work processes of how CAD models can be developed and used for simulation packages.