Mastering OpenFOAM CFD (Level 2)

Categories: OpenFOAM
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About Course

This course will take you through all the intermediate skills required in order to simulate CFD problems by mastering OpenFOAM.

Note – CFD results always need to be validated with experimental data before blindly relying on them.

  • Geometry preparation will be covered using Salome.
  • Meshing will be covered using Salome.
  • Solving will be covered using OpenFOAM solvers.
  • Post-processing of results will be covered using Paraview.
  • All these software are available for free without any license costs.

CFD helps to reduce the cost of products by saving time and money in prototype testing phase. Rapid prototype testings can be done by using CFD technology to predict the future behavior of the product. It enables us to foresee any shortcomings in the product and rectify them before the actual manufacturing phase of the product. This is a young technology and can grow substantially in near future.

You will be able to draw CAD models using the dimensions of any given geometry. Then you will understand how to mesh the geometry in Salome to get appropriate results. Mesh size plays an important role in deciding the accuracy of your results. Assumption of boundary conditions is another important aspect in any CFD simulation. Replication of real-life conditions must be correctly implemented in the CFD boundary conditions. Finally good post-processing of the results helps you to deliver your results successfully to the non-technical. All these things will help you move forward in your journey of mastering OpenFOAM.

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What Will You Learn?

  • Turbulent External Aerodynamics Simulation using simpleFoam
  • Conjugate Heat Transfer Simulation using chtMultiRegionSimpleFoam
  • Multiphase Simulation using interFoam
  • Geometry Preparation Using Salome
  • Meshing Using Salome
  • Setting Correct Boundary Conditions in OpenFOAM
  • Post-processing Using Paraview

Course Content

Multiphase Water Flow Through Fountain Using interFoam

  • 1. Introduction and Geometry Preparation
    04:28
  • 2. Mesh Generation Using Salome
    06:23
  • 3. Setting Up the OpenFOAM Case Structure and Importing Mesh
    05:29
  • 4. Setting up Initial Boundary Conditions in 0 Folder
    06:10
  • 5. Setting up constant and system Folder
    02:43
  • 6. Post processing of Results in Paraview
    05:00
  • 7. Advanced Postprocessing Technique and Conclusion
    02:30
  • OpenFOAM Case Files
    00:00
  • OpenFOAM, Salome & Paraview Installation Procedure
    00:00

Conjugate Heat Transfer Analysis of Cold Air Flowing Over Hot Gearbox With Volumetric Heat Source

Air Flow Over Ahmad Body to Calculate Lift and Drag Coefficients With Validation

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