Training

The Computational Design for Structural Engineers course.

This course is designed to strengthen your skill set and elevate your engineering workflows. It covers the core principles and fundamentals you need, giving you practical knowledge you can directly apply to your own projects. The training is structured into 9 courses comprising 14 modules in total, taking you step by step from foundational concepts to more advanced, real-world applications.

  1. 01

    Data enhanced Rhino

    Enhance Rhino and Grasshopper to be capapble to hold data beyond geometry.

    1 module1 h
  2. 02

    Structural systems with Grasshopper

    Build reusable structural systems parametrically. From truss structures to simple parametric models of buildings.

    2 modules3 h
  3. 03

    Parametric geometry with physics

    Scripts combined with parametric physics. Scale designs confidently from concept sketches to full-scale models.

    1 module1 h
  4. 04

    Parametric analyses

    Parametric analyses and optimization with available tools.

    1 module1 h
  5. 05

    Revit Inside.Rhino

    Build scripts to extract geometry and all data from Revit model. Bake clean models from parametric scripts. Update existing models. Create sheets add dimensioning and more.

    3 modules6 h
  6. 06

    Interoperability

    Exract from various source. Restructure your information. Bake it to alternative models.

    2 modules3 h
  7. 07

    Clean geometries

    Systematic data safe cleaning of geometries, to ensure workflows safe many hours.

    2 modules3 h
  8. 08

    Visualize

    Visualization of complex data.

    1 module1 h
  9. 09

    AI

    Learn how to excel the AI chatbot with your models.

    1 module1 h

The creators

The people behind the course.

A team of structural engineers and computational design experts who build the tools they needed and want to show to teach you for you project.

Tobias Teschemacher

Structural Engineer · R&D Lead

Tobias spent several years at the Technical University of Munich and the University of Queensland researching and implementing computational engineering methodologies and numerical methods. In industry, he successfully led the computational design department for the Middle East region for an international consulting company, leveraging the skills of engineers across multiple disciplines. He has developed workflows that significantly advance both the speed and quality of project delivery.

Interested?

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