Wolf Dynamics - Multiphysics simulations, optimization, and data analytics

OpenFOAM Advanced Training Material

 

OpenFOAM advanced training material

To support and give back to the OpenFOAM and CFD community, we have decided to share for free all the advanced training material (slides and tutorials).

You can download the learning resources at the following links:

Turbulence modeling in OpenFOAM and general CFD - Advanced training

Multiphase flows modeling in OpenFOAM and general CFD - Advanced training

Dynamic meshes in OpenFOAM - Advanced training

Design of experiments, space exploration, and numerical optimization using Dakota and code coupling Dakota-OpenFOAM

Basic solid modeling for CFD using Onshape and mesh generation using OpenFOAM tools

Introduction to the FVM method, discretization techniques, and solution strategies. Standard practices in general CFD with applications to OpenFOAM

 

Please note that the OpenFOAM project is in continuous evolution. Therefore, the training material is always changing.

 

Cite.
All the learning resources are shared using figshare. You can more information about how to cite the work at the links provided.

 

If you would like to get the powerpoint presentations for your personal use or training purposes, or you would like to collaborate improving the training material, please send an email to This email address is being protected from spambots. You need JavaScript enabled to view it.

 

 

Disclaimer
Wolf Dynamics makes no warranty, express or implied, about the completeness, accuracy, reliability, suitability, or usefulness of the information disclosed in this training material. This training material is intended to provide general information only. Any reliance the final user place on this training material is therefore strictly at his/her own risk. Under no circumstances and under no legal theory shall Wolf Dynamics be liable for any loss, damage or injury, arising directly or indirectly from the use or misuse of the information contained in this training material.